{
  "lab": {
    "name": "i-Microbiome Lab",
    "taglineZh": "智能微生态与生物制造实验室",
    "taglineEn": "Intelligent Microecology and Bio-Manufacturing Laboratory"
  },
  "hero": {
    "image": "images/plant_image2.jpg",
    "media": [
      {
        "type": "image",
        "src": "images/plant_image2.jpg"
      },
      {
        "type": "image",
        "src": "videos/IMG_5959.webp"
      }
    ]
  },
  "home": {
    "titleZh": "用智能微生态与生物制造，让科学长在土里、写进顶刊",
    "titleEn": "Using smart microbiomes and bio-manufacturing to grow science in the soil and get it published in top journals",
    "introZh": "i-Microbiome Lab 由国家级青年人才项目入选者梁元可教授领衔，依托西南科技大学生命科学与农林学院，聚焦植物-微生物互作、植物再生与损伤响应、AI+多组学驱动的生物制造等前沿方向。我们整合分子生物学、CRISPR 基因编辑、多组学数据分析与合成生物学，系统挖掘根际微生物与植物内生菌资源，构建微生物-作物协同增效与功能产物生物制造的新路径，为作物抗逆育种、高蛋白玉米生物强化与壳聚糖等生物基材料研发提供理论与技术支撑。",
    "introEn": "The i-Microbiome Lab is led by Professor Liang Yuanke, who's part of the national young talent program. Based at the College of Life Science and Agriculture at Southwest University of Science and Technology, we focus on cutting-edge areas like plant-microbe interactions, plant regeneration and stress responses, and AI-driven multi-omics biomanufacturing. We integrate molecular biology, CRISPR gene editing, multi-omics data analysis, and synthetic biology to systematically explore rhizosphere microbes and plant endophytes. Our goal is to create new ways for microbes and crops to work together efficiently and produce functional products, supporting crop stress-resistance breeding, biofortified high-protein corn, and bio-based materials like chitosan.",
    "intro2Zh": "我们既做顶刊里的科学，也做地里能长出来的玉米——从种下一棵玉米开始，把好玩的、有用的、了不起的研究一件一件做出来。",
    "intro2En": "We do science that's in top journals, but we also grow corn in the field—starting from planting a single corn, we tackle fun, useful, and amazing research one by one.",
    "photo": "https://liang-lab.cn/images/site/1784990973538-4875.jpg",
    "photoCapZh": "i-Microbiome Lab 团队合影",
    "photoCapEn": "i-Microbiome Lab · Team"
  },
  "highlights": [
    {
      "icon": "fa-dna",
      "zh": "智能微生物组",
      "en": "Intelligent Microbiome",
      "descZh": "结合多组学与机器学习，解析菌群结构-功能-宿主互作机制。",
      "descEn": "Multi-omics + machine learning to decode microbiome structure-function-host interactions.",
      "image": "images/plant_image2.jpg"
    },
    {
      "icon": "fa-flask",
      "zh": "酶工程与合成生物学",
      "en": "Enzyme & SynBio",
      "descZh": "理性设计+AI 辅助，重编程工业酶与底盘菌株。",
      "descEn": "Rational design + AI-assisted reprogramming of industrial enzymes and chassis strains.",
      "image": "images/plant_image3.jpg"
    },
    {
      "icon": "fa-industry",
      "zh": "生物制造过程放大",
      "en": "Bio-manufacturing Scale-up",
      "descZh": "从摇瓶到 200L 发酵罐的全链条工艺优化与智能控制。",
      "descEn": "End-to-end process optimization and intelligent control from shake-flask to 200L bioreactors.",
      "image": "images/plant_image5.jpg"
    }
  ],
  "research": {
    "pillars": [
      {
        "id": "pillar-microbiome",
        "icon": "fa-dna",
        "zh": "高蛋白玉米的生物强化与微生物增效（重点方向）",
        "en": "Biofortification and Microbial Enhancement of High-Protein Corn (Key Focus)",
        "descZh": "围绕\"如何让玉米自己长出更多优质蛋白\"这一核心问题，系统利用根际微生物与植物内生菌，挖掘能在玉米体内自发产蛋白的功能内生菌资源，构建微生物-玉米协同的高蛋白新路径，为绿色、低成本的作物蛋白强化提供全新方案。",
        "descEn": "Focusing on the core question of 'how to get corn to naturally produce more high-quality protein,' we are systematically using rhizosphere microbes and plant endophytes to explore functional endophyte resources that can spontaneously produce protein within corn. This helps build a new high-protein pathway in collaboration with microbes and corn, offering an innovative solution for green, low-cost crop protein enhancement.",
        "image": "https://liang-lab.cn/images/research/1784993926515-5641.jpg",
        "introZh": "",
        "introEn": ""
      },
      {
        "id": "pillar-enzyme",
        "icon": "fa-flask",
        "zh": "壳聚糖生物制造（合成生物学）",
        "en": "Chitosan Biomanufacturing",
        "descZh": "基于微生物细胞工厂进行壳聚糖及衍生产物的绿色生物合成，对接生物医药与功能材料需求。",
        "descEn": "Using microbial cell factories for the green biosynthesis of chitosan and its derivatives meets the needs of biomedicine and functional materials.",
        "image": "images/plant_image3.jpg",
        "introZh": "",
        "introEn": ""
      },
      {
        "id": "pillar-process",
        "icon": "fa-industry",
        "zh": "AI + 多组学驱动的生物制造（前沿拓展）",
        "en": "AI Multi-Omics Driven Biomanufacturing (Frontier Expansion)",
        "descZh": " 构建设计-构建-测试-学习的生物制造平台，对标国家生物经济战略与生物制造行动方案。",
        "descEn": "Building a bio-manufacturing platform for design-build-test-learn, aligned with the national bio-economy strategy and bio-manufacturing action plan.",
        "image": "images/plant_image5.jpg",
        "introZh": "",
        "introEn": ""
      },
      {
        "id": "pillar-1784985245245",
        "icon": "fa-leaf",
        "zh": "植物再生与损伤响应机制",
        "en": "Plant Regeneration and Damage Response Mechanisms",
        "descZh": "解析 ERF 转录因子调控植物创伤后高效再生的分子通路，挖掘作物抗逆与修复新靶点。",
        "descEn": "Analyzing the molecular pathways by which ERF transcription factors regulate efficient plant regeneration after wounding, and exploring new targets for crop stress resistance and repair.",
        "image": "https://liang-lab.cn/images/research/1784986185181-2025.jpg",
        "introZh": "",
        "introEn": ""
      },
      {
        "id": "pillar-1784985265133",
        "icon": "fa-leaf",
        "zh": "植物-微生物互作与养分高效利用",
        "en": "Plant-Microbe Interactions and Efficient Nutrient Use",
        "descZh": "以丛枝菌根共生（AMF）为模型，探索植物-真菌界面的分子交换，助力减少化肥依赖、推动绿色农业。",
        "descEn": "Using arbuscular mycorrhizal fungi (AMF) as a model, we explore the molecular exchanges at the plant-fungi interface to help reduce fertilizer use and promote green farming.",
        "image": "https://liang-lab.cn/images/research/1784986197897-3416.jpg",
        "introZh": "",
        "introEn": ""
      },
      {
        "id": "pillar-1784985283037",
        "icon": "fa-leaf",
        "zh": "植物光信号与胁迫保护",
        "en": "Plant Light Signals and Stress Protection",
        "descZh": "揭示 UV-B 光保护代谢物的合成与调控机制，服务作物抗逆改良。",
        "descEn": "Revealing how UV-B protective metabolites are made and regulated to help improve crop resistance.",
        "image": "https://liang-lab.cn/images/research/1784986207793-3790.jpg",
        "introZh": "",
        "introEn": ""
      }
    ],
    "projects": [
      {
        "id": "proj-gut",
        "titleZh": "蚯蚓粪源微生物分离鉴定、促氮模块化组装及其分子机制研究",
        "titleEn": "Isolation and Identification of Microorganisms from Earthworm Castings, Modular Assembly of Nitrogen-Promoting Systems, and Their Molecular Mechanisms",
        "logo": "https://liang-lab.cn/images/projects/1785036525125-9132.jpg",
        "lead": "李杨飞",
        "pillarId": "pillar-microbiome",
        "memberIds": [
          "member-liang"
        ],
        "contentZh": "蚯蚓粪源微生物分离鉴定、促氮模块化组装及其分子机制研究",
        "contentEn": "Isolation and Identification of Microorganisms from Earthworm Castings, Modular Assembly of Nitrogen-Promoting Systems, and Their Molecular Mechanisms",
        "goalsZh": "以提高玉米蛋白质含量为总目标，做到服务于实际生产：\n（1）分离鉴定蚯蚓粪源促单相关微生物，建立系统的菌株种质库；\n（2）装配具高促氮效应的微生物菌群；\n（3）开发可替代化肥、蚯蚓粪的绿色、稳定的菌剂产品；\n（4）揭示蚯蚓粪源微生物的直接与间接促氮效应所涉及的分子机制。\n预期产出成果：\n（1）多款可稳定提高玉米蛋白含量的绿色微生物制品；\n（2）针对玉米的高效蚯蚓粪施用方法；\n（3）多篇学术论文、多项软件著作权、多项专利。",
        "goalsEn": "With the main goal of increasing corn protein content while serving practical production: \n(1) Isolate and identify microbes from worm castings that promote nitrogen, and establish a systematic microbial strain library; \n(2) Assemble microbial communities with strong nitrogen-promoting effects; \n(3) Develop green, stable microbial products that can replace chemical fertilizers and worm castings; \n(4) Reveal the molecular mechanisms behind the direct and indirect nitrogen-promoting effects of microbes from worm castings.\nExpected outcomes: \n(1) Multiple green microbial products that can reliably increase corn protein content; \n(2) Efficient methods for applying worm castings to corn; \n(3) Several academic papers, software copyrights, and patents.",
        "progressZh": "2026.07-至今 蚯蚓粪源微生物的分离",
        "progressEn": "July 2026 - Present: Isolation of microbes from earthworm manure",
        "images": [],
        "pubIds": []
      },
      {
        "id": "proj-enzyme-ai",
        "titleZh": "非动物高质量真菌壳聚糖定向合成及可控工艺，由跨界微生态诱导和底盘重构驱动",
        "titleEn": "Non-animal high-quality fungal chitosan directional synthesis and controllable process driven by cross-border micro-ecological induction and chassis reconstruction",
        "logo": "images/plant_image3.jpg",
        "lead": "阎凝翔",
        "pillarId": "pillar-enzyme",
        "memberIds": [
          "member-liang"
        ],
        "contentZh": "壳聚糖生物制造",
        "contentEn": "Chitosan Biomanufacturing",
        "goalsZh": "（1）建立2-3个底盘真菌的标准化培养/发酵与壳聚糖提取体系，形成可重复基线数据；\n（2）建立跨界诱导剂库并筛选出可重复的优先候选组合；\n（3）通过DOE和关键过程控制，实现壳聚糖得率提升与DDA/MW批次稳定性提升；",
        "goalsEn": "",
        "progressZh": "",
        "progressEn": "",
        "images": [],
        "pubIds": []
      },
      {
        "id": "proj-bioprocess",
        "titleZh": "大刍草核心内生菌挖掘",
        "titleEn": "Mining endophytic fungi in napier grass",
        "logo": "images/plant_image5.jpg",
        "lead": "任雪杨",
        "pillarId": "pillar-1784985265133",
        "memberIds": [
          "member-liang",
          "member-ren",
          "member-li"
        ],
        "contentZh": "",
        "contentEn": "",
        "goalsZh": "",
        "goalsEn": "",
        "progressZh": "",
        "progressEn": "",
        "images": [],
        "pubIds": []
      },
      {
        "id": "proj-1785154327225",
        "titleZh": "AMF真菌侵染对玉米氮素利用的影响及其转录组调控机制研究",
        "titleEn": "Study on the Impact of AMF Fungal Infection on Nitrogen Use in Corn and Its Transcriptome Regulation Mechanism",
        "contentZh": "",
        "contentEn": "",
        "goalsZh": "",
        "goalsEn": "",
        "progressZh": "",
        "progressEn": "",
        "lead": "刘紫旭",
        "pillarId": "",
        "memberIds": [
          "member-liang",
          "member-li",
          "member-liuyang"
        ],
        "pubIds": [],
        "images": [],
        "logo": ""
      }
    ]
  },
  "facilities": [
    {
      "id": "fac-compute",
      "icon": "fa-server",
      "zh": "现代实验室",
      "en": "Modern lab",
      "descZh": "在建",
      "descEn": "Under construction",
      "image": "https://liang-lab.cn/images/facilities/1784992329755-7623.jpg",
      "introZh": "",
      "introEn": "",
      "pillarId": "",
      "memberIds": []
    }
  ],
  "members": [
    {
      "id": "member-liang",
      "group": "pi",
      "nameZh": "梁元可",
      "nameEn": "Yuanke Liang",
      "roleZh": "教授 / 博士生导师",
      "roleEn": "Principal Investigator",
      "photo": "https://liang-lab.cn/images/members/member-liang.jpg",
      "bioZh": "梁元可，博士，西南科技大学生命科学与农林学院学院教授、博士生导师，国家级青年人才项目入选者。博士毕业于比利时根特大学（Ghent University，全球 Top 100），随后在瑞士日内瓦大学（全球 Top 50）、德国马普植物分子生理研究所（MPI-MP，全球科研机构 Top 3）等顶尖机构从事博士后研究。\n\n长期从事植物应激响应与再生机制、植物-微生物互作研究，擅长分子生物学、植物遗传转化与多组学数据分析。利用 CRISPR 基因编辑与多组学技术，系统阐明了 ERF 转录因子驱动植物损伤后高效再生的分子通路，并鉴定出全新的紫外光（UV-B）光信号响应与光保护代谢物。相关成果为作物抗逆育种和现代农业发展提供了重要的理论基础与全新的基因靶点。目前致力于 AI+多组学驱动的生物制造研究，对标国家生物经济战略与生物制造行动方案，构建通用的植物基因工程体系与底盘技术。当前正拓展高蛋白玉米的微生物增效、植物内生菌资源开发以及壳聚糖生物制造等新方向。\n\n以第一作者在 Science Advances 等国际顶尖期刊发表 SCI 论文 7 篇，担任 Modern Agriculture 副编委、New Crops 青年编辑。",
      "bioEn": "Liang Yuan'ke, Ph.D., is a professor and doctoral supervisor at the College of Life Sciences and Agriculture of Southwest University of Science and Technology, and a recipient of the National Young Talents Program. He earned his doctorate from Ghent University in Belgium (Global Top 100) and subsequently conducted postdoctoral research at top institutions such as the University of Geneva in Switzerland (Global Top 50) and the Max Planck Institute of Molecular Plant Physiology in Germany (MPI-MP, Top 3 global research institutions).  \n\nHe has long been engaged in research on plant stress responses and regeneration mechanisms, as well as plant-microbe interactions, with expertise in molecular biology, plant genetic transformation, and multi-omics data analysis. Using CRISPR gene editing and multi-omics techniques, he has systematically elucidated the molecular pathways by which ERF transcription factors drive efficient post-injury plant regeneration and identified novel ultraviolet (UV-B) light signal responses and photoprotective metabolites. These findings provide an important theoretical basis and novel gene targets for crop stress-resistance breeding and modern agricultural development. Currently, he is dedicated to AI-driven multi-omics biomanufacturing research, aligned with the national bioeconomy strategy and biomanufacturing action plan, aiming to establish versatile plant genetic engineering systems and platform technologies. He is currently expanding into new directions, including microbial enhancement of high-protein maize, development of plant endophyte resources, and chitosan biomanufacturing.  \n\nHe has published seven SCI papers as the first author in international top journals such as Science Advances and serves as an associate editor for Modern Agriculture and a young editor for New Crops.",
      "introZh": "",
      "introEn": "",
      "introImage": "https://liang-lab.cn/images/members/1788266848149-1638.jpg",
      "pillarIds": [
        "pillar-microbiome"
      ],
      "projectIds": [
        "proj-gut"
      ],
      "facilityIds": [
        "fac-omics"
      ],
      "pubIds": [
        "pub-2025-microbiome"
      ],
      "eduZh": "2026.07- 至今 教授，西南科技大学生命科学与农林学院，智能微生态与生物制造PI\n\n2025.02 – 2026.06 博士后，德国马普植物分子生理研究所（MPI-MP），合作导师 Caroline Gutjahr 教授（研究：植物-微生物互作与丛枝菌根共生）\n\n2023.02 – 2025.01 博士后，瑞士日内瓦大学植物科学系，合作导师 Roman Ulm 教授（研究：植物 UV-B 感知与信号传导）\n\n2018.10 – 2023.01 理学博士，比利时根特大学，导师 Lieven De Veylder 教授（论文：ERF 转录因子在植物伤口激活再生中的作用）\n\n2017.10 – 2018.02 客座研究生，中国科学院遗传与发育生物学研究所（植物基因组学国家重点实验室），导师王永红研究员（课题：水稻分蘖基因的功能研究）\n\n2016.07 – 2018.06 农学硕士，四川农业大学水稻研究所，导师朱建清研究员（论文：富硒红米的营养评价及动物饲养实验）\n\n2012.09 – 2016.06 农学学士，四川农业大学农学院，导师陈荣军研究员（论文：水稻应激响应基因 OsUF7 启动子的克隆与表达载体构建）",
      "eduEn": "July 2026 - Present: Professor, College of Life Sciences and Agriculture & Forestry, Southwest University of Science and Technology, PI of Intelligent Microecology and Bio-manufacturing\n\nFeb 2025 – June 2026: Postdoctoral Researcher, Max Planck Institute of Plant Molecular Physiology (MPI-MP), Germany, co-mentor Prof. Caroline Gutjahr (Research: Plant-microbe interactions and arbuscular mycorrhizal symbiosis)\n\nFeb 2023 – Jan 2025: Postdoctoral Researcher, Department of Plant Science, University of Geneva, Switzerland, co-mentor Prof. Roman Ulm (Research: Plant UV-B perception and signaling)\n\nOct 2018 – Jan 2023: PhD in Science, Ghent University, Belgium, advisor Prof. Lieven De Veylder (Thesis: Role of ERF transcription factors in plant wound-activated regeneration)\n\nOct 2017 – Feb 2018: Visiting Graduate Student, Institute of Genetics and Developmental Biology, Chinese Academy of Sciences (State Key Laboratory of Plant Genomics), advisor Researcher Wang Yonghong (Project: Functional study of rice tillering genes)\n\nJuly 2016 – June 2018: Master of Agronomy, Rice Research Institute, Sichuan Agricultural University, advisor Researcher Zhu Jianqing (Thesis: Nutritional evaluation and animal feeding trials of selenium-enriched red rice)\n\nSept 2012 – June 2016: Bachelor of Agronomy, College of Agriculture, Sichuan Agricultural University, advisor Researcher Chen Rongjun (Thesis: Cloning and vector construction of the OsUF7 promoter for rice stress response genes)",
      "achZh": "入选2025国家级青年人才项目\n\n以第一作者在 Science Advances（Science 子刊，IF≈15）等发表 SCI 论文 7 篇；H 指数 11，论文被引 300+ 次\n\n作为研究骨干参与欧洲研究理事会（ERC）项目（200 万欧元）、瑞士国家科学基金（SNSF）项目等多项国际基金",
      "confZh": "2025 上海交通大学特邀报告（上海，口头报告）\n\n2025 iMMM2025 国际会议（德国·慕尼黑）\n\n2024 第四届全国植物光生物学大会（潍坊，口头报告）\n\n2024 第五届 UV4Plants 网络会议（德国·哥廷根，海报展示）\n\n2024 第七届日内瓦大学博士后日（瑞士·日内瓦，最佳海报奖）\n\n2024 YRSPP 会议（荷兰·乌得勒支，口头报告与海报展示）\n\n2022 瓦赫宁根植物化学系学术报告（荷兰，口头报告）\n\n2022 PSB 研讨会（比利时·根特，口头报告）\n\n2022 第一届欧洲代谢组学学校（法国·马赛，口头报告）",
      "recruitZh": "我们是一支非常年轻的团队，我们组里只有一群对生命着迷、想把论文写在大地上的人。\n\n梁元可教授领衔智能微生态与生物制造团队常年欢迎以下同学加入：\n\n硕士研究生、博士研究生（生物学、作物学、生物技术等相关专业）\n\n博士后（提供国际化合作平台，与德国马普所、比利时VIB-PSB等顶尖机构保持紧密合作，支持联合培养与国际交流）\n\n本科生科研训练（大创项目、毕业设计、暑期科研——零基础也欢迎，带你从移液枪开始）\n\n团队依托国家级人才项目与西南科技大学龙山人才科研启动项目（领军人才），科研经费充足，研究方向横跨植物发育生物学、微生物互作与 AI 生物制造前沿。我们既做顶刊里的科学，也做地里能长出来的玉米。有志于生命科学前沿、愿意一起学习交叉创新的你，欢迎随时来聊聊，办公室的门一直开着！",
      "wordsZh": "写在最后：致每一位追光的人\n科学从来不是天才的灵光一现，而是一个普通人愿意每天比昨天多懂一点的坚持。无论你现在是正在犹豫要不要读研的本科生、想要换个平台的硕士博士，请相信，热爱再加上一点点不服输的劲头，就能把很多不可能变成我做到了。\n\n如果你也相信好的科学能长在土里、也能写进顶刊，那就来我们团队吧。我们一起，把好玩的、有用的、了不起的研究，一件一件做出来，从种下一棵玉米开始。",
      "contactZh": "邮箱：yuanke.liang@swust.edu.cn\n\n手机：15002879582 （微信同号）",
      "achEn": "Selected for the 2025 National Young Talent Program\n\nAs the first author, published 7 SCI papers including in Science Advances; H-index 11, papers cited 300 times\n\nParticipated as a key researcher in multiple international projects, including the European Research Council (ERC) project (€2 million) and the Swiss National Science Foundation (SNSF) projects",
      "confEn": "2025 Invited Talk at Shanghai Jiao Tong University (Shanghai, Oral Presentation)\n\n2025 iMMM2025 International Conference (Munich, Germany)\n\n2024 4th National Plant Photobiology Conference (Weifang, Oral Presentation)\n\n2024 5th UV4Plants Online Meeting (Göttingen, Germany, Poster Presentation)\n\n2024 7th Postdoc Day at University of Geneva (Geneva, Switzerland, Best Poster Award)\n\n2024 YRSPP Meeting (Utrecht, Netherlands, Oral and Poster Presentations)\n\n2022 Academic Talk at Plant Chemistry Department, Wageningen (Netherlands, Oral Presentation)\n\n2022 PSB Workshop (Ghent, Belgium, Oral Presentation)\n\n2022 1st European School of Metabolomics (Marseille, France, Oral Presentation)",
      "recruitEn": "We are a very young team, and our group is made up of people who are fascinated by life and want to put their research on the ground.  \n\nLed by Professor Liang Yuanke, the Intelligent Microecology and Biomanufacturing team is always welcoming the following students to join:  \n\n- Master's and PhD students (in biology, crop science, biotechnology, and related fields)  \n- Postdocs (we provide an international collaboration platform, maintaining close connections with top institutions like the Max Planck Institutes in Germany and VIB-PSB in Belgium, supporting joint training and international exchanges)  \n- Undergraduate research training (innovation projects, graduation theses, summer research—no prior experience needed, we’ll guide you starting from the pipette)  \n\nOur team is backed by national talent programs and the Longshan Talent Research Start-up Project at Southwest University of Science and Technology (for leading talents), with sufficient research funding. Our research spans plant developmental biology, microbe interactions, and the cutting edge of AI biomanufacturing. We do both top-tier journal science and growable corn in the field.  \n\nIf you are passionate about the frontiers of life science and willing to learn and innovate together, feel free to come chat anytime—the office door is always open!",
      "wordsEn": "To everyone chasing the light,  \nScience has never been about sudden bursts of genius; it's about an ordinary person willing to understand a little more each day than yesterday. Whether you're an undergrad hesitating about grad school, or a master's or PhD thinking about switching paths, believe that passion plus a bit of stubbornness can turn many impossibilities into \"I did it.\"  \n\nIf you also believe that good science can grow in the soil and be published in top journals, come join our team. Together, we'll take fun, useful, and amazing research and make it happen, one project at a time—starting from planting a single corn seed.",
      "contactEn": "Email: yuanke.liang@swust.edu.cn\n\nWeChat: Yuanke_science\n\nhttps://life.swust.edu.cn/2026/0716/c2206a240724/page.htm\n",
      "researchZh": "一、高蛋白玉米的生物强化与微生物增效（未来重点方向）\n       围绕“如何让玉米自己长出更多优质蛋白”这一核心问题，系统利用根际微生物与植物内生菌，挖掘能在玉米体内自发产蛋白的功能内生菌资源，构建微生物-玉米协同的高蛋白新路径，为绿色、低成本的作物蛋白强化提供全新方案。\n\n二、壳聚糖生物制造（合成生物学方向）\n       基于微生物细胞工厂进行壳聚糖及衍生产物的绿色生物合成，对接生物医药与功能材料需求。\n\n三、AI + 多组学驱动的生物制造（前沿拓展）\n       构建设计-构建-测试-学习的生物制造平台，对标国家生物经济战略与生物制造行动方案。\n\n四、植物再生与损伤响应机制\n       解析 ERF 转录因子调控植物创伤后高效再生的分子通路，挖掘作物抗逆与修复新靶点。\n\n五、植物-微生物互作与养分高效利用\n       以丛枝菌根共生（AMF）为模型，探索植物-真菌界面的分子交换，助力减少化肥依赖、推动绿色农业。\n\n六、植物光信号与胁迫保护\n       揭示 UV-B 光保护代谢物的合成与调控机制，服务作物抗逆改良。",
      "repPubsZh": "Liang, Y.*, Heyman, J., Xiang, Y., et al. (2022). The wound-activated ERF15 transcription factor drives Marchantia polymorpha regeneration by activating an oxylipin biosynthesis feedback loop. Science Advances 8: eabo7737. (Science 子刊，中科院一区 Top)\n\nLiang, Y.*, Podolec, R.*, Chappuis, R., et al. (2026). Conservation and divergence of UVR8 photoreceptor-mediated UV-B signaling in Marchantia polymorpha. Plant Physiology. (中科院一区 Top，*共同一作)\n\nLiang, Y., Heyman, J., Lu, R., De Veylder, L. (2023). Evolution of wound-activated regeneration pathways in the plant kingdom. European Journal of Cell Biology 102: 151291.\n\n（完整论文列表见 Yuanke Liang (0000-0001-9457-7342) ）",
      "researchEn": "1. Biofortification and microbial synergism of high-protein maize (future focus direction)\n       Focusing on the core problem of \"how to make corn grow more high-quality protein\", the system uses rhizospheric microorganisms and plant endophytes to mine the functional endophytic resources that can spontaneously produce protein in corn, and builds a new high-protein pathway for microbial-maize synergy, providing a new solution for green and low-cost crop protein fortification.\n\nII. Chitosan biomanufacturing (synthetic biology direction)\n       Green biosynthesis of chitosan and derivatives based on microbial cell factories to meet the needs of biomedical and functional materials.\n\nIII. AI + Multi-omics-Driven Biomanufacturing (Frontier Expansion)\n       Build a design-build-test-learning biomanufacturing platform that benchmarks national bioeconomy strategies and biomanufacturing action plans.\n\nIV. Plant Regeneration and Damage Response Mechanisms\n       Analyze the molecular pathways through which ERF transcription factors regulate efficient post-traumatic regeneration of plants, and explore new targets for crop stress resistance and repair.\n\nV. Plant-Microbial Interaction and Efficient Use of Nutrients\n       Using arbuscular mycorrhizal symbiosis (AMF) as a model, we explore the molecular exchange at the plant-fungal interface to help reduce fertilizer dependence and promote green agriculture.\n\nVI. Plant light signals and stress protection\n       Reveal the synthesis and regulation mechanism of UV-B light-protecting metabolites, and improve stress resistance of service crops.",
      "repPubsEn": "QUERY LENGTH LIMIT EXCEEDED. MAX ALLOWED QUERY : 500 CHARS"
    },
    {
      "id": "member-zheng",
      "group": "faculty",
      "nameZh": "郑仕伟",
      "nameEn": "Shiwei Zheng",
      "roleZh": "特聘副教授",
      "roleEn": "Associate Professor",
      "photo": "images/members/member-zheng.jpg",
      "bioZh": "郑仕伟博士长期从事植物逆境响应与表观遗传调控研究。他于 2026 年在德国获博士学位，受德国莱布尼茨植物遗传与作物研究所（IPK）与马丁·路德大学哈勒-维滕贝格（Martin Luther University Halle-Wittenberg）联合培养，并曾在马克斯·普朗克分子植物生理研究所（Max Planck Institute of Molecular Plant Physiology）和波茨坦大学（University of Potsdam）开展客座博士研究。\n\n他的研究聚焦植物生殖发育对高温、低温等非生物胁迫的响应机制：博士期间系统解析了热胁迫通过重编程 DNA 甲基化与染色质可及性影响拟南芥雄配子育性的表观遗传机制，挖掘关键调控基因；硕士期间围绕水稻细胞周期蛋白 OsCYCBL1 解析其赋予低温耐受性的分子路径，为作物抗逆分子育种提供候选靶点。\n\n他具备扎实的分子生物学与高通量组学实验技能，熟悉 ChIP-seq、ATAC-seq 与全基因组甲基化文库构建；能够基于 Linux 与 R 语言独立完成多组学数据整合与生物信息学分析。",
      "bioEn": "Dr. Shiwei Zheng specializes in plant stress responses and epigenetic regulation. He earned his Ph.D. in Germany in 2026 through a joint program between the Leibniz Institute of Plant Genetics and Crop Plant Research (IPK) and Martin Luther University Halle-Wittenberg, with visiting doctoral research at the Max Planck Institute of Molecular Plant Physiology and the University of Potsdam.\n\nHis research focuses on how plant reproductive development responds to abiotic stresses such as heat and cold. During his Ph.D., he systematically dissected the epigenetic mechanisms by which heat stress disrupts Arabidopsis male gametophyte fertility through genome-wide reprogramming of DNA methylation and chromatin accessibility, identifying key regulatory genes. His master's work elucidated the molecular pathway by which the rice cyclin protein OsCYCBL1 confers cold tolerance, providing candidate targets for stress-resilient crop breeding.\n\nHe has strong expertise in molecular biology and high-throughput omics assays, including ChIP-seq, ATAC-seq, and whole-genome methylation library construction, and independently performs multi-omics data integration and bioinformatics analysis using Linux and R.",
      "introImage": "",
      "pillarIds": [
        "pillar-process"
      ],
      "projectIds": [
        "proj-bioprocess"
      ],
      "facilityIds": [
        "fac-fermentation"
      ],
      "pubIds": [],
      "introZh": "郑仕伟博士聚焦植物逆境响应与表观遗传调控，以多组学手段解析温度胁迫下作物生殖发育的分子机制。",
      "introEn": "Dr. Shiwei Zheng focuses on plant stress responses and epigenetic regulation, using multi-omics approaches to dissect the molecular mechanisms of crop reproductive development under temperature stress.",
      "repPubsZh": "•\t近五年在 Nature Communications、International Journal of Biological Macromolecules、Environmental and Experimental Botany 等期刊发表 SCI 论文 6 篇，其中第一/共同第一作者 3 篇\n•\t获国家留学基金委（CSC）全额博士奖学金资助\n•\t研究体系贯通分子克隆、多组学文库构建与生物信息学挖掘\n",
      "repPubsEn": "•\tPublished 6 SCI papers in the past five years, including 3 as first/co-first author, in journals such as Nature Communications, International Journal of Biological Macromolecules, and Environmental and Experimental Botany\n•\tAwarded a full PhD scholarship by the China Scholarship Council (CSC)\n•\tResearch pipeline integrates molecular cloning, multi-omics library construction, and bioinformatics mining\n"
    },
    {
      "id": "member-huang",
      "group": "manager",
      "nameZh": "黄佳芳",
      "nameEn": "Jiafang Huang",
      "roleZh": "实验室管理员",
      "roleEn": "Lab Manager",
      "photo": "images/members/member-huang.jpg",
      "bioZh": "黄佳芳是实验室的大管家，也是让科研跑得稳的后台引擎。她毕业于四川农业大学财务管理专业，拥有 14 年财务与资金管理经验，她把“对数字敏感、做事细心严谨”刻进了职业习惯。\n她持有会计从业资格、银行初级、证券/基金/保险从业、反假币等多项专业证书，曾获“绵阳市百人精英”等荣誉。在 i-Microbiome Lab，她负责实验室财务、采购、印章与档案管理，用严谨的流程为前沿研究兜底。\n",
      "bioEn": "Huang Jiafang is the lab's \"chief steward\" and the engine that keeps research running steadily. A graduate in Financial Management from Sichuan Agricultural University, she brings 14 years of finance and fund-management experience—from teller and compliance manager at Postal Savings Bank of China (Mianyang branch) to accountant and cashier across several companies.\nShe holds multiple professional certificates (accounting qualification, primary banking, securities/fund/insurance practicing qualifications, counterfeit-currency recognition) and was named among Mianyang's \"Top 100 Elites.\" At i-Microbiome Lab she manages finance, procurement, seals, and archives, backing cutting-edge research with rigorous process.\n",
      "wordsZh": "“好的科研，背后一定有一本清清楚楚的账。”",
      "wordsEn": "Behind every good piece of science, there is a clear and tidy ledger."
    },
    {
      "id": "member-yan",
      "group": "phd",
      "nameZh": "阎凌翔",
      "nameEn": "Ningxiang Yan",
      "roleZh": "博士研究生 (2026级)",
      "roleEn": "PhD Student (2026)",
      "photo": "images/members/member-yan.jpg",
      "bioZh": "阎凌翔是一位“既能做科研、又能带学生创业”的复合型研究者。他本科毕业于华东理工大学生物工程专业，获英国邓迪大学生物医学工程硕士，现任四川中医药高等专科学校创新创业学院综合科科长、讲师，也是四川省首批省级创业导师、绵阳市涪城区政协委员。\n他的研究把壳聚糖做得很透：以第一作者发表综述探讨壳聚糖及其衍生物干预皮肤炎症性衰老的机制（WIENER KLINISCHE WOCHENSCHRIFT, 2025），并主持/参与多项省级教改与科研课题，出版学术专著与教材多部。作为第一指导教师，他带学生拿下“互联网+”“挑战杯”等国家级奖项多项，是名副其实的“双创”金牌教练。\n在 i-Microbiome Lab，他聚焦壳聚糖生物制造方向，把合成生物学的绿色制造与产业转化经验带进课题组。\n",
      "bioEn": "Yan Ningxiang is a hybrid researcher who \"does science and coaches student entrepreneurship at once.\" He earned his B.Eng in Bioengineering from East China University of Science and Technology and an M.Sc in Biomedical Engineering from the University of Dundee (UK), and is currently lecturer and head of the Comprehensive Section of the School of Innovation and Entrepreneurship at Sichuan College of Traditional Chinese Medicine, as well as one of Sichuan's first provincial entrepreneurship mentors and a member of the Mianyang Fucheng District CPPCC.\nHis research goes deep on chitosan: as first author he published a review on the mechanisms by which chitosan and its derivatives intervene in skin inflammatory aging (WIENER KLINISCHE WOCHENSCHRIFT, 2025), and he has led/participated in multiple provincial teaching-reform and research projects and co-authored academic monographs and textbooks. As lead instructor he guided students to several national awards in \"Internet+\" and \"Challenge Cup\" competitions—a true gold-medal coach for innovation and entrepreneurship.\nAt i-Microbiome Lab he focuses on chitosan biomanufacturing, bringing green manufacturing and translational experience into the group.",
      "pillarIds": [
        "pillar-microbiome"
      ],
      "projectIds": [
        "proj-gut"
      ],
      "facilityIds": [
        "fac-omics"
      ],
      "pubIds": [],
      "wordsZh": "“他相信“好玩的研究，终会长成能落地的事业”。”",
      "wordsEn": "He believes \"fun research will eventually grow into something that lands.\"",
      "achZh": "•\t第一作者发表壳聚糖干预皮肤炎症性衰老机制相关 SCI 综述\n•\t四川省首批省级创业导师，指导学生获“互联网+”“挑战杯”国家级奖项多项\n•\t主持/参与省级教改与科研课题多项，出版专著与教材多部\n",
      "achEn": "•\tFirst-author SCI review on chitosan intervention in skin inflammatory aging\n•\tSichuan's first batch of provincial entrepreneurship mentors; national awards mentoring in \"Internet+\" and \"Challenge Cup\"\n•\tMultiple provincial projects; author of monographs and textbooks\n"
    },
    {
      "id": "member-ren",
      "group": "phd",
      "nameZh": "任雪杨",
      "nameEn": "Xueyang Ren",
      "roleZh": "博士研究生 (2026级)",
      "roleEn": "PhD Student (2026)",
      "photo": "https://liang-lab.cn/images/members/member-ren.jpg",
      "bioZh": "任雪杨是一位与微生物共生打了多年交道的青年研究者。她硕士就读于重庆三峡科技大学资源利用与植物保护专业（中药炮制与资源利用方向），研究围绕道地药材（太白贝母、川贝母、滇重楼）的根际微生物与内生菌展开：从内生菌分离纯化、功能筛选（溶磷、固氮、产 IAA）、16S rRNA 鉴定，到组培快繁与多组学整合分析。\n她建立起相关性→因果验证的完整研究路线，并以第一作者发表 SCI 及 CSCD 核心论文 4 篇。曾获国家奖学金（学院综测第 2）、连续两年校级一等奖学金，熟练掌握植物组织培养、HPLC、PCR 与 SPSS/Origin/R 等分析工具。在 i-Microbiome Lab，她把对微生物如何让植物长得更好的好奇，延续到玉米微生物增效的研究中。\n",
      "bioEn": "Ren Xueyang is a young researcher who has spent years with \"microbial symbiosis.\" Her master's work at Chongqing Three Gorges University (Resource Utilization and Plant Protection, TCM processing & resource utilization) centered on rhizosphere microbes and endophytes of medicinal plants (Baibeimu, Chuanbeimu, Yunnan paris): from endophyte isolation and functional screening (P-solubilizing, N-fixing, IAA-producing) and 16S rRNA identification to tissue-culture propagation and multi-omics integration.\nShe built a complete \"correlation → causal validation\" research pipeline and published 4 first-author papers (SCI and CSCD core). She won the National Scholarship (2nd in comprehensive ranking) and two consecutive university first-class scholarships, and is proficient in plant tissue culture, HPLC, PCR, and SPSS/Origin/R. At i-Microbiome Lab she carries her curiosity about \"how microbes help plants grow better\" into maize microbial enhancement.\n",
      "pillarIds": [
        "pillar-enzyme"
      ],
      "facilityIds": [
        "fac-compute"
      ],
      "pubIds": [],
      "achZh": "•\t以第一作者发表 SCI 及 CSCD 核心论文 4 篇\n•\t国家奖学金获得者（学院综测第 2），连续两年校级一等奖学金\n•\t精通内生菌分离鉴定、植物组培快繁与多组学整合分析\n",
      "achEn": "•\t4 first-author papers (SCI and CSCD core)\n•\tNational Scholarship (2nd in ranking); two-time university first-class scholarship\n•\tExpert in endophyte isolation, plant tissue culture, and multi-omics integration\n",
      "wordsZh": "“她擅长从一株内生菌出发，讲清楚植物与微生物之间的“悄悄话”。”",
      "wordsEn": "She excels at starting from a single endophyte to explain the \"whisper\" between plants and microbes."
    },
    {
      "id": "member-li",
      "group": "master",
      "nameZh": "李杨飞",
      "nameEn": "Yangfei Li",
      "roleZh": "硕士研究生 (2026级)",
      "roleEn": "Master Student (2026)",
      "photo": "https://liang-lab.cn/images/members/member-li.jpg",
      "bioZh": "李杨飞，西南科技大学生命科学与农林学院2026级生物学硕士研究生。本科毕业于西华师范大学生命科学学院生物技术专业。\n主要从事生物技术、生态学以及生物学+计算机交叉研究;\n现从事高蛋白玉米研究，在研：\n（1）课题：蚯蚓粪源促氮微生物分离鉴定、模块化组装及其分子机制研究；\n（2）系统：玉米考种系统；\n近一年共发表学术论文6篇，在投中5篇；专利申请2项；软件著作权下证9项，在审3项。",
      "bioEn": "Research: microbial fermentation optimization.",
      "pillarIds": [
        "pillar-process"
      ],
      "facilityIds": [
        "fac-fermentation"
      ],
      "pubIds": [],
      "eduZh": "教育背景：\n2026.09-至今 生物学硕士研究生，西南科技大学生命科学与农林学院，导师梁元可教授（课题：蚯蚓粪源促氮微生物分离鉴定、模块化组装及其分子机制研究）\n2022.09-2026.07 理学学士，西华师范大学生命科学学院，导师曾燏教授（课题：嘉陵江清泉寺水源地仔稚鱼资源时空分布及其水文因子相关性研究）\n工作与实践经历：\n2023.09-2023.11 中学生物解题教师，秦皇岛星之文化传播有限公司，兼职字节方初中生物试题解析；\n2023.09-2026.07 国家淡水渔业工程计数研究中心（武汉）西南分中心，从事嘉陵江渔业资源调查与研究；\n2023.11-2024.06 中学生物解题教师，吉林创赋科技有限公司，兼职字节方初中生物试题解析；\n2024.04-2024.07 实习生，四川省农业科学院蚕业研究所，从事全国蚕丝质量检测；\n2024.06-2026.07 合作，绵阳职业技术学院，在人工智能、大语言模型等方面开展合作；\n2024.06-至今 数据标注师，智澜数标（山西）科技有限公司，兼职数据标注与识别；\n2025.12-2026.03 浙江大学软件学院量超智实验室，从事脑机接口研究；\n2026.01-至今 指导教师，付诸教育咨询工作室，从事教育咨询、升学规划、专利申请、软件开发、竞赛辅导等。\n2026.07-至今 保研辅导导师，“数学建模老哥”，从事本科生保研规划与辅导，包含学术论文、软件著作权、专利及学科竞赛等辅导。\n2026.07-至今 咨询师，“蚂蚁科研”，从事数学建模竞赛及其数模论文转学术论文发表咨询与辅导。",
      "recruitZh": "欢迎本校及外校优秀同学加入i-Micobiome Lab，同时也欢迎加入本人的小团队：\n（1）“龙泽禾坊”小团队：以高蛋白玉米为主要目标，从事蚯蚓粪源微生物分离鉴定、模块化组装及其分子机制研究。\n加入我们你将收获：分子生物学等基本实验操作技术，积累专业知识与科研经历，丰富自身简历。\n招收对象：本校生物学相关专业\n（2）“跨界智星”团队：以赋能科研为主要目标，从事“生物学+计算机”研究，团队已发表多篇学术论文、获得多次数学建模竞赛奖项。\n加入我们你将收获：丰富的竞赛经验，扎实的思维能力，专业的学业与工作规划指导，丰富自身简历。\n招收对象：本校及外校生物学、计算机、数学等相关专业（其他专业均可，具体详情请联系）",
      "contactZh": "Email：liyangfei8495@foxmail.com\n联系方式：19982708495（微信同号）",
      "contactEn": "Email: liyangfei8495@foxmail.com\nContact: 19982708495 (same number on WeChat)",
      "eduEn": "Educational Background:\nSept 2026 - Present: Master's student in Biology, School of Life Sciences and Agriculture & Forestry, Southwest University of Science and Technology, Advisor: Professor Liang Yuanke (Project: Isolation and identification of nitrogen-promoting microorganisms from earthworm manure, modular assembly, and molecular mechanism research)\nSept 2022 - July 2026: Bachelor of Science, School of Life Sciences, China West Normal University, Advisor: Professor Zeng Yu (Project: Study on the spatiotemporal distribution of juvenile fish resources in the Qingquan Temple water source of Jialing River and their correlation with hydrological factors)\n\nWork and Practical Experience:\nSept 2023 - Nov 2023: Middle School Biology Problem-Solving Teacher, Qinhuangdao Xingzhi Cultural Communication Co., Ltd., part-time biology question analysis for junior high on ByteDance platform;\nSept 2023 - July 2026: Southwest Branch, National Center for Freshwater Fisheries Engineering Statistics Research (Wuhan), engaged in investigation and research of Jialing River fishery resources;\nNov 2023 - June 2024: Middle School Biology Problem-Solving Teacher, Jilin Chuangfu Technology Co., Ltd., part-time biology question analysis for junior high on ByteDance platform;\nApr 2024 - July 2024: Intern, Sericulture Research Institute, Sichuan Academy of Agricultural Sciences, engaged in nationwide silk quality testing;\nJune 2024 - July 2026: Collaboration with Mianyang Vocational and Technical College, working on AI, large language models, and related areas;\nJune 2024 - Present: Data Labeler, Zhilan Shubiao (Shanxi) Technology Co., Ltd., part-time data labeling and recognition work;\nDec 2025 - Mar 2026: Brain-Computer Interface Research, Liangchaozhi Lab, School of Software, Zhejiang University;\nJan 2026 - Present: Mentor, Fuzhu Education Consulting Studio, engaged in education consulting, academic planning, patent applications, software development, and competition coaching;\nJuly 2026 - Present: Postgraduate Recommendation Mentor, \"Math Modeling Bro\", focused on undergraduate postgraduate recommendation planning and guidance, including academic papers, software copyrights, patents, and academic competitions.\nJuly 2026 - Present: Consultant at 'Ant Research', providing guidance and consulting for math modeling competitions and helping turn math modeling papers into academic publications.",
      "researchZh": "蚯蚓粪源促氮微生物分离鉴定、模块化组装及其分子机制研究",
      "researchEn": "Isolation and Identification of Nitrogen-Promoting Microbes from Earthworm Castings, Modular Assembly, and Their Molecular Mechanisms",
      "repPubsZh": "ORCID：0009-0006-7338-1723",
      "repPubsEn": "ORCID：0009-0006-7338-1723",
      "achZh": "本科期间获：\n（1）学业奖项：优秀毕业生1次、国家励志奖学金1次、校级一等奖学金3次、校级二等奖学金2次、三好学生1次、创新创业奖2次、学习优胜奖1次、军训优秀学员1次等十余项；\n（2）竞赛奖项：中国国际大学生创新大赛（2024）高教主赛道国赛铜奖、西华师范大学生命科学学院2024年度农业硕士专业学位研究生创新大赛三等奖、第六届全国高等院校数学能力挑战赛初赛一等奖决赛二等奖、第七届中青杯全国大学生数学建模竞赛一等奖、第八届中青杯全国大学生数学建模竞赛一等奖等十余项。",
      "achEn": "During my undergraduate studies, I received: \n(1) Academic awards: Outstanding Graduate once, National Encouragement Scholarship once, First-class University Scholarship three times, Second-class University Scholarship twice, ‘Three-Good’ Student once, Innovation & Entrepreneurship Award twice, Excellence in Study Award once, Outstanding Trainee in Military Training once, and more than ten other awards; \n(2) Competition awards: Bronze Medal in the National Finals of the China International College Students' Innovation and Entrepreneurship Competition (2024) main track, Third Prize in the 2024 Agricultural Master’s Professional Degree Innovation Competition at the School of Life Sciences, China West Normal University, First Prize in the Preliminary Round and Second Prize in the Finals of the 6th National College Math Ability Challenge, First Prize in the 7th Zhongqing Cup National College Students' Mathematical Modeling Competition, First Prize in the 8th Zhongqing Cup National College Students' Mathematical Modeling Competition, and more than ten other awards.",
      "recruitEn": "We warmly welcome outstanding students from our school and other schools to join the i-Microbiome Lab, and we also invite you to join my small teams: \n\n(1) “Longze Hefang” Team: Focusing on high-protein corn, we engage in the isolation and identification of microorganisms from earthworm feces, modular assembly, and research on molecular mechanisms. \nBy joining us, you will gain: basic experimental skills in molecular biology, accumulate professional knowledge and research experience, and enhance your resume. \nWho we're looking for: students majoring in biology or related fields at our school. \n\n(2) “Cross-Field Smart Star” Team: Focused on empowering research, we conduct studies at the intersection of biology and computer science. The team has published multiple academic papers and won numerous awards in mathematical modeling competitions. \nBy joining us, you will gain: rich competition experience, solid thinking skills, guidance on academic and career planning, and an enhanced resume. \nWho we're looking for: students from our school and other schools majoring in biology, computer science, mathematics, and related fields (students from other majors are also welcome; please contact us for details).",
      "introImage": "https://liang-lab.cn/images/members/1788266840210-8103.jpg"
    },
    {
      "id": "member-liuyang",
      "group": "master",
      "nameZh": "刘紫旭",
      "nameEn": "Zixu Liu",
      "roleZh": "硕士研究生 (2026级)",
      "roleEn": "Master Student (2026)",
      "photo": "https://liang-lab.cn/images/members/member-liuyang.jpg",
      "bioZh": "刘紫旭是一位把蚕丝做出功能与产业想象力的研究者。他本科毕业于西南大学蚕学专业，在蚕丝生物学实验室围绕再生丝素的制备、抗氧化与抗菌评价、酶解丝素肽的分子量表征开展系统训练，熟练掌握 PCR、质粒提取、制胶电泳与 Origin/Photoshop 等科研绘图工具。\n他以第二作者发表省级综述《再生丝素非绢丝利用及原料规模化制备关键技术研究进展》，并以第三发明人参与“基于溶剂置换高效制备水溶性再生丝素”发明专利。课余，他担任校科幻协会社长，是课题组里既能做实验、也能讲故事的那一类人。\n",
      "bioEn": "Liu Zixu is a researcher who imagines function and industry from \"silk.\" He earned his B.Sc in Sericulture from Southwest University, where in the silk-biomaterials lab he trained systematically on regenerated silk fibroin preparation, antioxidant/antibacterial assays, and molecular-weight characterization of enzymatically hydrolyzed silk peptides, and mastered PCR, plasmid extraction, gel electrophoresis, and Origin/Photoshop for scientific plotting.\nHe published a provincial review as second author (\"Progress on non-textile utilization of regenerated silk fibroin and key large-scale preparation technologies\") and is a third inventor on a patent for solvent-exchange preparation of water-soluble regenerated silk fibroin. As president of the university science-fiction association, he is the kind of team member who \"can both run experiments and tell a story.\"\n",
      "pillarIds": [
        "pillar-enzyme"
      ],
      "projectIds": [
        "proj-enzyme-ai"
      ],
      "facilityIds": [
        "fac-protein"
      ],
      "pubIds": [],
      "achZh": "•\t以第二作者发表再生丝素综述，以第三发明人参与发明专利\n•\t熟练掌握再生丝素制备、抗氧化/抗菌评价与电泳表征\n•\t西南大学科幻协会社长，擅长科研表达与跨领域思考\n",
      "achEn": "•\tSecond-author review on regenerated silk fibroin; third inventor on a patent\n•\tSkilled in silk fibroin preparation, antioxidant/antibacterial assays, electrophoresis\n•\tPresident of the science-fiction association; strong science communication\n"
    },
    {
      "id": "member-wang",
      "group": "master",
      "nameZh": "王舒",
      "nameEn": "Shu Wang",
      "roleZh": "硕士研究生 (2026级)",
      "roleEn": "Master Student (2026)",
      "photo": "https://liang-lab.cn/images/members/member-wang.jpg",
      "bioZh": "王舒是一位有两年产业研发经验的实战型研究者。她本科毕业于成都医学院生物制药专业，毕业后在成都药康生物科技有限公司担任研发技术员，积累了蛋白分离纯化、QPCR、ELISA、Western Blot、流式细胞与动物实验等扎实技能，参与过关节炎、肿瘤耐药评价等多个药效项目。\n她的本科毕业设计聚焦结核分枝杆菌耐药基因 MFS 蛋白的分离纯化，并在四川大学华西医学生物治疗国家重点实验室完成实习。在 i-Microbiome Lab，她把从蛋白到表”的全链路经验带进微生物与生物制造研究。\n",
      "bioEn": "Wang Shu is a \"hands-on\" researcher with two years of industrial R&D experience. She earned her B.Sc in Biopharmaceuticals from Chengdu Medical College and then worked as an R&D technician at Chengdu PharmaLegacy Laboratories, building solid skills in protein purification, qPCR, ELISA, Western Blot, flow cytometry, and animal experiments across multiple efficacy projects (arthritis, tumor-drug resistance).\nHer undergraduate design focused on purification of the M. tuberculosis resistance gene MFS protein, with an internship at the State Key Laboratory of Biotherapy, Sichuan University. At i-Microbiome Lab she brings end-to-end \"protein-to-phenotype\" experience into microbiology and bio-manufacturing.\n",
      "pillarIds": [
        "pillar-microbiome"
      ],
      "facilityIds": [
        "fac-omics"
      ],
      "pubIds": [],
      "achZh": "•\t两年生物制药企业研发经验，覆盖蛋白纯化、WB、ELISA、qPCR、流式与动物实验\n•\t本科毕设聚焦 MFS 蛋白分离纯化，曾在四川大学生物治疗国重室实习\n•\t从蛋白到表型的全链路实战能力\n",
      "achEn": "•\tTwo years of biopharma R&D: protein purification, WB, ELISA, qPCR, flow, animal models\n•\tThesis on MFS protein purification; interned at SKL of Biotherapy, Sichuan University\n•\tEnd-to-end \"protein-to-phenotype\" practical capability\n",
      "wordsZh": "“她习惯用数据说话，也擅长把复杂的蛋白问题做实。”",
      "wordsEn": "She lets data speak, and excels at making complex protein problems concrete."
    },
    {
      "id": "member-chenyueq",
      "group": "master",
      "nameZh": "陈跃玲",
      "nameEn": "Yueling Chen",
      "roleZh": "硕士研究生 (2026级)",
      "roleEn": "Master Student (2026)",
      "photo": "https://liang-lab.cn/images/members/member-chenyueq.jpg",
      "bioZh": "陈跃玲是一位对生物实验充满热情的动手派。她本科毕业于天津商业大学生物技术专业，专业基础扎实（微生物学、生物化学、基因工程等核心课程均 90 分以上），并以高分考入西南科技大学生物学硕士。\n她的本科毕业论文《小米醇溶蛋白抗氧化活性肽的虚拟筛选及功能分析》把干湿结合玩得很好：用 LC-MS/MS 鉴定、多工具虚拟筛选与分子对接技术，系统筛选出新型抗氧化活性肽，并阐明其与 Keap1/MPO 靶点的互作机制，展现出良好的质谱操作与生物信息学能力。",
      "bioEn": "Chen Yueling is a hands-on student passionate about biological experiments. She earned her B.Sc in Biotechnology from Tianjin University of Commerce with a strong foundation (core courses such as Microbiology, Biochemistry, and Genetic Engineering all above 90) and was admitted to Southwest University of Science and Technology for an M.Sc in Biology with a total entrance-exam score of 337.\nHer undergraduate thesis, \"Virtual screening and functional analysis of antioxidant peptides from foxtail millet prolamin,\" nimbly combined dry and wet approaches: using LC-MS/MS identification, multi-tool virtual screening, and molecular docking, she systematically screened novel antioxidant peptides and clarified their interaction with Keap1/MPO targets, demonstrating strong mass-spectrometry and bioinformatics skills.\n",
      "pillarIds": [
        "pillar-process"
      ],
      "projectIds": [
        "proj-bioprocess"
      ],
      "facilityIds": [
        "fac-fermentation"
      ],
      "pubIds": [],
      "achZh": "•\t微生物学、生物化学、基因工程等核心课程均 90 分以上\n•\t本科毕设融合 LC-MS/MS、虚拟筛选与分子对接，具备生物信息学能力\n•\t英语六级、普通话二甲，踏实严谨、乐于思考\n",
      "achEn": "•\tCore courses (Microbiology, Biochemistry, Genetic Engineering) all above 90\n•\tThesis integrates LC-MS/MS, virtual screening, and molecular docking\n•\tCET-6 and Putonghua proficiency; earnest, rigorous, and reflective",
      "wordsZh": "“她相信好的科学，始于一次认真的实验。”",
      "wordsEn": "She believes \"good science begins with one serious experiment.\""
    }
  ],
  "publications": [],
  "news": [
    {
      "id": "n-1785235393287",
      "titleZh": "【学术交流】比利时根特大学乔德文博士来校作学术报告",
      "titleEn": "[Academic Exchange] Dr. Jodewen from Ghent University, Belgium, Visits Our School for an Academic Talk",
      "day": "28",
      "month": "07",
      "blocks": [
        {
          "type": "text",
          "zh": "2026年7月28日，受西南科技大学i-Microbiome Lab邀请，比利时根特大学（Ghent University）生物科学工程学院乔德文（Dewen Qiao）博士到访实验室，并作了题为《富碳有机改良剂与生物刺激剂深层施用的气候智慧型土壤管理策略研究》的专题学术报告。实验室梁元可教授、邹兰副教授及各研究生参加了本次学术交流活动。",
          "en": "On July 28, 2026, invited by the i-Microbiome Lab of Southwest University of Science and Technology, Dr. Dewen Qiao from the Faculty of Bioscience Engineering, Ghent University, Belgium, visited the laboratory and delivered a special academic report entitled Deep Application of Organic Amendments and Biostimulants: Climate-Smart Soil Management Strategies. Prof. Yuanke Liang, Associate Prof. Lan Zou, and all postgraduate students of the laboratory participated in this academic exchange activity."
        },
        {
          "type": "text",
          "zh": "一、上午：专家到访与学术交流\n\n当日上午，乔德文博士抵达绵阳，由实验室梁元可教授前往接站。随后，双方在办公室进行了初步交流，增进相互了解。\n\n在办公室交流之后，乔博士与实验室硕士生李杨飞围绕两项课题进行了专业探讨：一是\"蚯蚓粪源促氮微生物分离鉴定、模块化组装及其促氮效应分子机制\"研究，二是\"玉米颗粒识别计数系统（Corn Count）\"研发。双方就研究方法、技术路线与后续思路交换了意见。\n\n此后，在实验室人员的引导下，乔博士参观了主要的生物学实验室，了解了实验室的科研平台与在研方向。中午，乔博士与各老师共进午餐，进一步加深了彼此的了解。",
          "en": "I. Morning Session: Guest Arrival and Academic Exchanges\nIn the morning, Dr. Dewen Qiao arrived in Mianyang. Prof. Yuanke Liang from the laboratory picked him up at the railway station. Afterwards, they held preliminary discussions in the office to facilitate mutual understanding.\nFollowing the office discussion, Dr. Qiao engaged in professional discussions with postgraduate student Yangfei Li on two research projects. The first project focuses on “Isolation and identification of nitrogen-promoting microorganisms derived from vermicompost, modular assembly, and molecular mechanisms underlying their nitrogen-promoting effects”. The second concerns the development of the Corn Kernel Recognition and Counting System (Corn Count). They exchanged views on research methodologies, technical routes and follow-up research plans.\nSubsequently, guided by laboratory members, Dr. Qiao toured the main biological laboratories and learned about the research platforms and ongoing research themes of the lab. At noon, Dr. Qiao had lunch with faculty members, which further deepened mutual communication."
        },
        {
          "type": "text",
          "zh": "二、下午：专题学术报告\n\n当日下午，乔德文博士在实验室会议室作专题学术报告。报告围绕\"富碳有机改良剂与生物刺激剂深层施用的气候智慧型土壤管理\"这一主题展开。",
          "en": "II. Afternoon Session: Special Academic Seminar\nIn the afternoon, Dr. Dewen Qiao delivered a special academic presentation in the laboratory meeting room. The presentation centered on climate-smart soil management via deep application of carbon-rich organic amendments and biostimulants."
        },
        {
          "type": "image",
          "src": "https://liang-lab.cn/images/news/n-1785235393287-3.jpg"
        },
        {
          "type": "image",
          "src": "https://liang-lab.cn/images/news/n-1785235393287-4.jpg"
        },
        {
          "type": "text",
          "zh": "报告伊始，乔博士介绍了个人的学术背景与研究方向——他就读于根特大学环境科学/土壤科学专业，此前于四川大学获环境科学与工程硕士学位，研究领域涵盖遥感与数字农业、土壤生态修复与碳循环、土壤微生物与酶活性、以及数据科学与机器学习等多个交叉方向。\n\n在报告主体部分，乔博士从全球耕地土壤有机碳分布与玉米根系—土壤地气过程切入，阐明了深层土壤功能恢复与气候智慧型土地管理的科学必要性。在此基础上，他系统介绍了以根特大学土壤控制实验为基础的研究方法体系：通过土壤酶活性测定、VIS-NIR/MIR光谱技术与机器学习建模相结合，探究富碳有机改良剂与生物刺激剂深层施用对土壤理化性质及生物活性的影响，并展示了样品采集、光谱检测与数据分析的完整实验流程。",
          "en": "At the beginning of the report, Dr. Qiao introduced his academic background and research interests. He pursued his doctoral studies in Environmental and Soil Science at Ghent University and obtained his Master’s degree in Environmental Science and Engineering from Sichuan University. His interdisciplinary research covers remote sensing and digital agriculture, soil ecological restoration and carbon cycling, soil microorganisms and enzyme activities, as well as data science and machine learning.\nIn the main part of the presentation, starting from the global distribution of topsoil organic carbon and maize root-soil-atmosphere processes, Dr. Qiao illustrated the scientific necessity of deep soil functional restoration and climate-smart land management. On this basis, he systematically presented the research methodology established from controlled soil experiments conducted at Ghent University. By combining soil enzyme activity measurement, VIS-NIR/MIR spectroscopy and machine learning modeling, his team investigated the impacts of deep application of carbon-rich organic amendments and biostimulants on soil physicochemical properties and biological activity. He also demonstrated the complete experimental workflow including sample collection, spectral measurement and data analysis."
        },
        {
          "type": "image",
          "src": "https://liang-lab.cn/images/news/n-1785235393287-6.jpg"
        },
        {
          "type": "image",
          "src": "https://liang-lab.cn/images/news/n-1785235393287-7.jpg"
        },
        {
          "type": "text",
          "zh": "综合来看，乔博士的报告指出，将富碳有机改良剂与生物刺激剂进行深层施用，能够有效促进深层土壤功能恢复、提升土壤生物活性与酶活性，并为气候智慧型土壤管理提供了可量化的技术路径；其将光谱监测与机器学习相结合的研究范式，也为土壤健康评估与精准农业管理提供了新思路。整场报告逻辑清晰、内容扎实，现场师生认真聆听并记录。",
          "en": "Overall, Dr. Qiao concluded in his report that the deep application of carbon-rich organic amendments and biostimulants can effectively facilitate the functional restoration of subsoil, enhance soil biological activity and enzyme activity, and provide quantifiable technical approaches for climate-smart soil management. Furthermore, his research paradigm integrating spectral monitoring with machine learning offers innovative insights for soil health assessment and precision agricultural management. The presentation featured rigorous logic and substantial content, and faculty and students present listened attentively and took notes throughout."
        },
        {
          "type": "text",
          "zh": "三、报告后：师生提问与专题交流\n\n报告结束后，现场师生围绕汇报内容踊跃提问，提问主要聚焦于实验室团队的高蛋白玉米研究方向，乔博士结合自身研究经验与大家进行了细致解答，现场学术氛围浓厚。",
          "en": "III. Post-report Session: Q&A and Targeted Academic Exchange\nAfter the report, faculty and students present actively raised questions based on the presentation content. The inquiries mainly focused on the laboratory’s research on high-protein maize. Drawing on his research experience, Dr. Qiao offered thorough answers, creating a vigorous academic atmosphere."
        },
        {
          "type": "image",
          "src": "https://liang-lab.cn/images/news/n-1785235393287-10.jpg"
        },
        {
          "type": "image",
          "src": "https://liang-lab.cn/images/news/n-1785235393287-11.jpg"
        },
        {
          "type": "image",
          "src": "https://liang-lab.cn/images/news/n-1785235393287-12.jpg"
        },
        {
          "type": "image",
          "src": "https://liang-lab.cn/images/news/n-1785235393287-13.jpg"
        },
        {
          "type": "text",
          "zh": "在师生提问环节之后，硕士生熊伟还就玉米倒伏预测研究，与乔博士进行了专业的交流与探讨。",
          "en": "Following the Q&A session, Master’s student Wei Xiong conducted in-depth professional discussions with Dr. Qiao regarding the research on maize lodging prediction."
        },
        {
          "type": "image",
          "src": "https://liang-lab.cn/images/news/n-1785235393287-15.jpg"
        },
        {
          "type": "text",
          "zh": "四、与黄晶院长座谈交流\n\n当日活动最后，乔德文博士还与黄晶院长进行了座谈交流，双方就学术研究方向、实验室建设及后续合作等话题交换了意见。\n\n五、活动总结\n\n本次学术报告暨交流活动，为i-Microbiome Lab师生提供了与海外青年学者面对面交流的机会。从上午到访座谈、下午专题报告到与院长的座谈交流，活动环环相扣。实验室以高蛋白玉米为主要研究方向，本次交流中围绕高蛋白玉米等具体科学问题展开了深入探讨，拓宽了大家在气候智慧型土壤管理、土壤光谱监测与数字农业等前沿方向的学术视野，也为后续潜在的科研合作打下了良好基础。",
          "en": "IV. Symposium with Dean Huang Jing\nAt the end of the day’s events, Dr. Dewen Qiao held a symposium with Dean Huang Jing. Both sides exchanged views on academic research directions, laboratory construction, and future research cooperation.\nV. Activity Summary\nThe academic report and exchange activity provided faculty and students of the i-Microbiome Lab with a valuable opportunity for face-to-face communication with an overseas young scholar. The whole activity consisted of well-organized sessions, including morning academic discussions, afternoon keynote presentation, and the final symposium with the dean. Centering on the laboratory’s core research focus on high-protein maize, participants conducted in-depth discussions on relevant scientific issues throughout the exchange. The activity has broadened the academic vision of teachers and students in frontier research fields such as climate-smart soil management, soil spectral monitoring, and digital agriculture, and laid a solid foundation for potential future scientific research cooperation."
        }
      ]
    },
    {
      "id": "news-grant",
      "date": "2026.07",
      "day": "14",
      "month": "07",
      "titleZh": "【学术交流】应梁元可教授邀请，郑仕伟博士、官颖博士来校作学术报告",
      "titleEn": "[Academic Exchange] At the invitation of Professor Liang Yuanke, Dr. Zheng Shiwei and Dr. Guan Ying came to our school to give academic talks",
      "blocks": [
        {
          "type": "text",
          "zh": "2026年7月14日下午，受我校梁元可教授邀请，德国波茨坦大学博士候选人郑仕伟、南京农业大学博士后官颖走进西南科技大学东九B2-21会议室，为智能微生态与生物制造实验室师生带来两场前沿学术报告。报告会由蔡元萍教授等组织，实验室师生到场聆听并展开交流。\n\n郑仕伟博士长期致力于植物发育与胁迫应答的表观遗传调控研究。在报告中，他系统介绍了高温胁迫对植物花药发育的影响，并围绕拟南芥绒毡层细胞发育的表观遗传机制，分享了DNA甲基化、染色质开放性等方向的研究进展，以及ChIP-seq、CUT&Tag、ATAC-seq等技术在其中的应用。郑博士近五年以第一/共同第一作者在 Nature Communications 等期刊发表SCI论文3篇。\n\n官颖博士聚焦植物–微生物互作与根际微生物组研究。她以根际微生物分泌物对作物生长与抗逆的影响为主题，介绍了环境胁迫在细菌–植物互作中的功能探索，以及根际微生物组调控作物抗逆的相关进展。官博士现主持国家自然科学基金青年基金、国家重点研发计划子课题等多个项目，以第一/通讯作者发表论文5篇，代表作见于 Advanced Science、mSphere 等期刊，并入选国家\"启明计划\"、江苏省\"卓越博士后\"等人才计划。\n\n两场报告结束后，现场师生围绕表观遗传调控、根际微生物应用等话题与报告人进行了深入交流。此次报告会为实验室师生了解植物表观遗传与微生物互作领域的前沿动态提供了良好的学术平台。",
          "en": "On the afternoon of July 14, 2026, invited by Professor Liang Yuanke from our university, PhD candidate Zheng Shiwei from the University of Potsdam, Germany, and postdoctoral researcher Guan Ying from Nanjing Agricultural University visited the East 9 B2-21 conference room at Southwest University of Science and Technology, giving two cutting-edge academic talks to the teachers and students of the Intelligent Microecology and Biomanufacturing Laboratory. The session was organized by Professor Cai Yuanping and others, and the lab faculty and students attended and engaged in discussions. \n\nDr. Zheng Shiwei has long been dedicated to studying the epigenetic regulation of plant development and stress responses. In his talk, he systematically introduced the effects of high-temperature stress on anther development in plants and shared research progress on epigenetic mechanisms involved in the development of trichome cells in Arabidopsis, focusing on DNA methylation, chromatin accessibility, etc., as well as the application of techniques like ChIP-seq, CUT&Tag, and ATAC-seq. Over the past five years, Dr. Zheng has published three SCI papers as the first or co-first author in journals such as Nature Communications.\n\nDr. Guan Ying focuses on plant–microbe interactions and the rhizosphere microbiome. She presented on the effects of rhizosphere microbial secretions on crop growth and stress resistance, discussing the roles of environmental stress in bacterial–plant interactions and recent progress in rhizosphere microbiome regulation of crop resilience. Dr. Guan currently leads multiple projects including the National Natural Science Foundation of China Youth Fund and subprojects of the National Key R&D Program, has published five papers as first or corresponding author in journals such as Advanced Science and mSphere, and has been selected for talent programs like the national \"Qiming Plan\" and Jiangsu Province \"Outstanding Postdoctoral\" program.\n\nAfter the talks, attendees engaged with the speakers in in-depth discussions on topics such as epigenetic regulation and rhizosphere microbial applications. This seminar provided an excellent academic platform for the lab’s faculty and students to learn about the latest developments in plant epigenetics and microbial interactions."
        },
        {
          "type": "image",
          "src": "https://liang-lab.cn/images/news/news-grant-1.jpg"
        },
        {
          "type": "text",
          "zh": "记录人：李杨飞",
          "en": "Recorder: Li Yangfei"
        }
      ]
    },
    {
      "id": "n-1785197807527",
      "titleZh": "【学术预告】比利时根特大学乔德文博士来校作学术报告",
      "titleEn": "[Academic Preview] Dr. Jordwin from Ghent University, Belgium, to Give an Academic Talk at Our School",
      "day": "28",
      "month": "07",
      "blocks": [
        {
          "type": "text",
          "zh": "为推进实验室科研交流与人才引进，i-Microbiome Lab 邀请比利时根特大学（Ghent University）乔德文博士于 7月28日（周二） 来校访问并作学术报告。欢迎全体教师、博士后、博士生与硕士生积极参会。\n\n报告题目：Deep Application of Organic Amendments and Biostimulants: Regulation of Soil Profile Processes and Maize Productivity（富碳有机改良剂与生物刺激剂深层施用的气候智慧型土壤管理策略研究）\n\n时间：7月28日（周二）14:00 – 15:00\n地点：西南科技大学东九 B2-22\n\n乔德文博士于今年6月从根特大学毕业，聚焦气候智慧型农业与土壤系统研究，形成了\"改良材料—施用方法—剖面过程—系统产出\"的全链条研究范式。其代表性成果发表于 Advances in Agronomy（2025）、Field Crops Research（2026）、ACS Agricultural Science & Technology（2025）等期刊。\n\n除正式报告外，乔德文博士当天还将与实验室师生开展分组交流，并赴学院与黄晶院长座谈。\n\n期待各位老师同学拨冗出席！",
          "en": "To promote research exchange and talent recruitment in the lab, i-Microbiome Lab invites Dr. Jodwin from Ghent University, Belgium, to visit our university and give an academic talk on Tuesday, July 28. All faculty members, postdocs, PhD, and master's students are warmly welcome to attend. \n\nTalk Title: Deep Application of Organic Amendments and Biostimulants: Regulation of Soil Profile Processes and Maize Productivity\n\nDate & Time: Tuesday, July 28, 14:00 – 15:00\nLocation: B2-22, East Building 9, Southwest University of Science and Technology\n\nDr. Jodwin graduated from Ghent University in June this year. He focuses on climate-smart agriculture and soil system research, developing a full-chain research paradigm of \"amendments – application methods – profile processes – system outputs.\" His representative work has been published in journals such as Advances in Agronomy (2025), Field Crops Research (2026), and ACS Agricultural Science & Technology (2025).\n\nBesides the formal talk, Dr. Jodwin will also have group discussions with lab members and a meeting with Dean Huang at the institute.\n\nWe look forward to seeing all of you there!"
        },
        {
          "type": "image",
          "src": "https://liang-lab.cn/images/news/n-1785197807527-1.jpg"
        }
      ]
    },
    {
      "id": "n-1785473802989",
      "titleZh": "【招募】微生物源壳聚糖国创赛项目招新（本科生成员）",
      "titleEn": "[Recruitment] Microbial-Derived Chitosan National Innovation Competition Project - Recruiting New Members (Undergraduates)",
      "day": "31",
      "month": "07",
      "blocks": [
        {
          "type": "text",
          "zh": "各位同学好：\n智能微生态与生物制造实验室（i-Microbiome Lab）正在推进\"微生物源壳聚糖\"方向的中国国际大学生创新大赛（2027）与挑战杯项目，现面向全校招募本科生成员，由团队阎凌翔博士生带队指导。",
          "en": "Hello everyone:  \nThe Intelligent Microbiome and Biomanufacturing Lab (i-Microbiome Lab) is currently advancing projects in the 'microbe-derived chitosan' area for the China International College Students’ Innovation Competition (2027) and the Challenge Cup. We are now recruiting undergraduate members from the whole university, led and guided by the team under PhD student Yan Lingxiang."
        },
        {
          "type": "image",
          "src": "https://liang-lab.cn/images/news/n-1785473802989-1.jpg"
        },
        {
          "type": "text",
          "zh": "一、项目基础扎实，不是从零起步\n该项目围绕微生物源壳聚糖开展研究，前期已完成大量产业化相关探索，基础较为扎实，并已布局相关专利。参赛同学是站在已有成果上学习技术，做示范与推广，起点高、可落地。\n\n二、加入你能得到什么\n一是全方位指导：带队成员为国创赛资深评委，熟悉评审尺度，从技术路线到商业逻辑全程把关；团队还提供职业规划指导，包括个人学术路径规划或者创业规划，不止于做项目。\n二是高水平科研训练：实验室设备完善，与大企业有深度合作，能接触真实的科研与中试流程，训练强度高。\n三是经济支持：项目提供补助（金额按学校与实验室规定执行）。\n\n三、我们希望你具备\n一是对微生物源壳聚糖或生物制造方向真正感兴趣，愿意投入时间；\n二是沟通协调能力强，能推动跨角色、跨任务的协作；\n三是语言表达能力强，能清晰、有说服力地呈现项目价值。\n\n四、先了解我们\n实验室网站www.liang-lab.cn，建议先看看团队方向与已有成果，判断自己是否感兴趣。\n感兴趣的同学，请与阎凌翔博士联系（微信：leonyan1305），我们后续建群组织面谈。期待与你一起把这件事做成！",
          "en": "1. Solid Project Foundation, Not Starting from Scratch\nThis project focuses on research around microbe-derived chitosan. A lot of industrialization-related exploration has already been completed, making the foundation quite solid, and relevant patents have been filed. Participants will be learning technology based on existing results, doing demonstration and promotion work, with a high starting point and practical applicability.\n\n2. What You’ll Gain by Joining\nFirst, comprehensive guidance: Team leaders are experienced judges of the National College Student Innovation Competition, familiar with evaluation standards, and will oversee everything from technical routes to business logic; the team also provides career guidance, including personal academic or entrepreneurship planning, not just project work.\nSecond, high-level research training: The lab is well-equipped and has deep collaborations with large companies, giving access to real research and pilot processes with intensive training.\nThird, financial support: The project provides subsidies (amounts as per school and lab regulations).\n\n3. What We Hope You Have\nFirst, a genuine interest in microbe-derived chitosan or biomanufacturing, and willingness to invest time;\nSecond, strong communication and coordination skills, able to drive collaboration across roles and tasks;\nThird, good verbal skills, able to clearly and persuasively present the project’s value.\n\n4. Get to Know Us First\nLab website: www.liang-lab.cn. It’s recommended to check out the team’s focus and existing results first to see if you’re interested.\nIf interested, please contact Dr. Yan Lingxiang (WeChat: leonyan1305). We will later set up a group for organizing interviews. Looking forward to making this happen with you!"
        }
      ]
    },
    {
      "id": "n-1785760692443",
      "titleZh": "【学术预告】四川农业大学张维肖博士学术报告会",
      "titleEn": "【Academic Preview】Dr. Zhang Weixiao's Academic Talk at Sichuan Agricultural University",
      "day": "06",
      "month": "08",
      "blocks": [
        {
          "type": "text",
          "zh": "一、活动主旨\n为推进实验室科研交流与人才引进工作，i-Microbiome Lab 诚挚邀请四川农业大学张维肖博士来校开展学术报告，并与课题组师生、学院领导开展深度交流。诚邀全校教师、博士后、博士研究生与硕士研究生到场参会交流。\n\n二、会议核心信息\n报告时间：2026 年 8 月 20 日（周四）14:00–15:00\n报告地点：西南科技大学 东 9B-22 会议室\n报告题目：玉米抗镰孢菌及干旱胁迫响应的分子机制研究\n英文标题：Molecular Mechanisms of Maize Resistance to Fusarium and Drought Stress Response\n报告人：张维肖 博士（四川农业大学）\n\n三、全天日程安排\n10:00–10:30，梁元可教授前往高铁站迎接张维肖博士并驱车返回西南科技大学；\n10:30–11:30，张维肖博士在东 9B-22 会议室与博士生任雪杨、硕士生刘紫旭开展学术交流；\n11:30–13:00 为午餐休整时段；\n13:30–13:50，嘉宾参观实验室，实验室成员介绍科研平台与在研方向；\n14:00–15:00，于东 9B-22 会议室正式举行学术报告；\n15:00–16:00，硕士生李杨飞在东 9B-22 会议室与张维肖博士进行专项课题交流；\n16:00–16:30，张维肖博士前往东 7 办公室与黄晶院长座谈交流；\n16:30，张维肖博士启程离开绵阳，本次交流活动全部结束。\n\n四、报告人简介\n张维肖，四川农业大学作物遗传育种专业博士研究生，预计 2026 年 12 月毕业，师从卢艳丽教授、冯宣军副教授。研究方向聚焦玉米抗病与抗逆分子机制，形成了 “基因挖掘 — 信号通路 — 功能验证 — 育种应用” 的全链条研究范式。\n抗病研究层面，系统解析玉米受镰孢菌侵染引发穗腐病、茎腐病的抗性分子机制，首次证实 MPEL1-MAPK16-JAZ20 级联通路在多种病害防御中的作用，同时阐明组胺是红光提升玉米抗轮枝镰孢菌能力的关键物质；抗逆方向上，深入解析 LBD 转录因子家族 II 类成员在玉米、拟南芥干旱胁迫应答过程中的功能与分子调控机理。\n代表性成果：\n以共同第一作者（导师一作）身份在《The EMBO Journal》刊发研究，阐明 MPEL1 协同 MAPK16 调控玉米抵御镰孢菌的分子机制，为玉米广谱抗病育种提供新理论与关键基因资源；以共同第一作者在《iMeta》发表红光介导玉米抗轮枝镰孢菌关键化合物的挖掘成果，拓展光生物学与植物免疫交叉领域研究；另有多项以共同第一作者完成的研究发表于《The Plant Journal》《Plants-Basel》，聚焦 LBD 基因家族调控干旱胁迫响应方向。\n\n五、报告内容预告\n本次报告紧扣玉米抗病、抗旱育种两大前沿方向，依次介绍玉米抗镰孢菌病害分子调控通路、红光诱导玉米抗病的代谢调控机理、LBD 转录因子调控干旱应答的分子网络，同时讲解基因功能验证体系以及抗病抗逆性状在分子育种中的落地思路，可为玉米抗性育种、作物逆境分子生物学领域的相关研究提供理论参考。\n\n主办单位\n西南科技大学 i-Microbiome Lab",
          "en": "I. Activity Theme\nTo promote the scientific research exchanges and talent recruitment in the laboratory, i-Microbiome Lab sincerely invites Dr. Zhang Weixiao from Sichuan Agricultural University to visit our school to deliver an academic report and engage in in-depth communication with the research team members, college leaders, and other faculty members. We sincerely invite all teachers, postdoctoral researchers, doctoral students, and master's students to attend and participate in the event. \nII. Core Information of the Meeting\nPresentation Time: Thursday, August 20, 2026, 14:00 - 15:00\nPresentation Location: Conference Room 9B-22, Southwest University of Science and Technology\nPresentation Title: Molecular Mechanisms of Maize Resistance to Fusarium and Drought Stress Response\nSpeaker: Doctor Zhang Weixiao (Sichuan Agricultural University) \nIII. Daily Schedule\n10:00–10:30, Professor Liang Yuanke heads to the high-speed railway station to greet Dr. Zhang Weixiao and drives back to Southwest University of Science and Technology;\n10:30–11:30, Dr. Zhang Weixiao holds an academic exchange session with doctoral student Ren Xueyang and master's student Liu Zixu in the 9B-22 conference room;\n11:30–13:00, it is a lunch break period;\n13:30–13:50, the guests visit the laboratory, and the laboratory members introduce the research platform and ongoing research directions;\n14:00–15:00, an academic report is officially held in the 9B-22 conference room;\n15:00–16:00, master's student Li Yangfei conducts a special topic exchange with Dr. Zhang Weixiao in the 9B-22 conference room;\n16:00–16:30, Dr. Zhang Weixiao goes to the 7th office building and has a discussion with Director Huang Jing;\n16:30, Dr. Zhang Weixiao departs from Mianyang, and this exchange activity comes to an end. \nIV. Biographical Information of the Reporter\nZhang Weixiao is a doctoral student majoring in Crop Genetics and Breeding at Sichuan Agricultural University. She is expected to graduate in December 2026 and is supervised by Professor Lu Yanli and Associate Professor Feng Xuanjun. Her research focuses on the molecular mechanisms of disease resistance and stress tolerance in corn, forming a complete research paradigm of \"gene mining - signaling pathway - functional validation - breeding application\".\nIn the aspect of disease resistance research, she systematically analyzed the molecular mechanism of resistance of corn to stem rot and stem blight caused by Fusarium infection, and for the first time confirmed the role of the MPEL1-MAPK16-JAZ20 signaling pathway in the defense against various diseases. At the same time, she clarified that histamine is the key substance for red light to enhance the resistance of corn to Rhizoctonia solani. In the direction of stress tolerance, she deeply analyzed the functions and molecular regulatory mechanisms of the II-class members of the LBD transcription factor family in the drought stress response processes of corn and Arabidopsis thaliana.\nRepresentative achievements:\nAs the co-first author (with the supervisor as the first author), she published a study in The EMBO Journal, clarifying the molecular mechanism of MPEL1 collaborating with MAPK16 to regulate corn's resistance to Fusarium, providing new theories and key gene resources for broad-spectrum disease resistance breeding of corn; as the co-first author, she published the research results of the mining of key compounds for corn's resistance to Rhizoctonia solani mediated by red light in iMeta, expanding research in the intersection of photobiology and plant immunity; and she has also completed multiple studies as the co-first author and published them in The Plant Journal and Plants-Basel, focusing on the direction of regulating drought stress responses by the LBD gene family. \nV. Report Content Preview\nThis report focuses on the two cutting-edge directions of corn disease resistance and drought tolerance breeding. It successively introduces the molecular regulatory pathway of corn's resistance to sclerotinia disease, the metabolic regulatory mechanism of red light-induced corn resistance, and the molecular network of LBD transcription factors regulating drought response. At the same time, it explains the gene function verification system and the implementation ideas of disease and stress resistance traits in molecular breeding. This can provide theoretical references for corn resistance breeding and related research in the field of crop stress molecular biology. \nOrganizer\nSouthwest University of Science and Technology i-Microbiome Lab"
        },
        {
          "type": "image",
          "src": "https://liang-lab.cn/images/news/n-1785760692443-1.jpg"
        }
      ]
    },
    {
      "id": "n-1787183790899",
      "titleZh": "第十四届亚洲玉米大会在成都圆满落幕——聚力科创破难题，共御气候护粮安",
      "titleEn": "The 14th Asian Corn Conference came to a successful conclusion in Chengdu - Focusing on scientific innovation to solve problems, jointly combating climate change to ensure food security.",
      "day": "18",
      "month": "08",
      "blocks": [
        {
          "type": "text",
          "zh": "2026年8月14日至18日，第十四届亚洲玉米大会在四川成都成功举办。作为亚洲玉米领域规模最大、规格最高、影响力最广的学术与产业交流平台，本届大会以“推动科技创新，应对气候变化”为主题，吸引了来自32个国家和地区的770余名代表齐聚蓉城，其中外国专家多达120余人。这也是亚洲玉米大会时隔15年再度落地中国，并首次落地四川。",
          "en": "From August 14th to 18th, 2026, the 14th Asian Corn Conference was successfully held in Chengdu, Sichuan Province. As the largest, most prestigious and most influential academic and industrial exchange platform in the field of corn in Asia, this conference, with the theme of \"Promoting Technological Innovation and Responding to Climate Change\", attracted 770 representatives from 32 countries and regions to gather in Chengdu. Among them, there were as many as 120 foreign experts. This was also the 15th time that the Asian Corn Conference had returned to China and the first time it had been held in Sichuan Province."
        },
        {
          "type": "image",
          "src": "https://liang-lab.cn/images/news/n-1787183790899-1.jpg"
        },
        {
          "type": "text",
          "zh": "一、开幕式：凝聚亚洲共识，共筑粮食安全防线\n8月15日上午，大会在成都锦江宾馆隆重开幕。开幕式由大会组委会主席、中国农业科学院副院长孙坦主持。中国农业科学院党组书记杨振海出席并致辞。他指出，中国是亚洲最大的玉米生产和消费国，中国农科院持续深耕种质资源挖掘、育种技术革新、高产栽培模式示范，有力支撑了我国玉米产业高质量发展。其中，“玉米密植高产精准调控技术”已在国内多地打造百万亩吨粮田示范区，实现大面积增产增收。面对日益严峻的全球性挑战，杨振海提出三点倡议：共筑种质资源与科技创新两大基石，建立覆盖全亚洲的种质资源协作网络；共推具备气候韧性的绿色可持续生产体系，推动亚洲玉米生产向“气候智慧型”转型；共建开放包容的亚洲玉米协作共同体，深化科技、产业、贸易、政策全链条协同。",
          "en": "I. Opening Ceremony: Uniting Asian Consensus, Building a Barrier for Food Security\nOn the morning of August 15th, the conference was grandly opened at the Jinjiang Hotel in Chengdu. The opening ceremony was presided over by the Chairman of the Conference Organizing Committee, Sun Tan, the Vice President of the Chinese Academy of Agricultural Sciences. The Party Secretary of the Chinese Academy of Agricultural Sciences, Yang Zhenhai, attended and delivered a speech. He pointed out that China is the largest corn producer and consumer in Asia. The Chinese Academy of Agricultural Sciences has continuously deepened the exploration of germplasm resources, technological innovation in breeding, and demonstration of high-yield cultivation models, effectively supporting the high-quality development of China's corn industry. Among them, the \"Precision Control Technology for Dense Corn Planting for High Yield\" has created million-hectare grain-per-ton demonstration areas in many regions across the country, achieving large-scale increase in production and income. Facing increasingly severe global challenges, Yang Zhenhai put forward three initiatives: jointly building two cornerstones of germplasm resources and scientific and technological innovation, establishing a germplasm resource collaboration network covering the entire Asia; jointly promoting a climate-resilient green sustainable production system, promoting the transformation of Asian corn production to \"climate-smart\" mode; jointly building an open and inclusive Asian corn collaboration community, deepening full-chain collaboration in science and technology, industry, trade, and policy."
        },
        {
          "type": "image",
          "src": "https://liang-lab.cn/images/news/n-1787183790899-3.jpg"
        },
        {
          "type": "text",
          "zh": "二、学术盛宴：11大议题、125场报告，覆盖全产业链\n大会设置了大会主旨报告、11个专题分会、墙报展示、企业创新论坛等多种交流形式。共安排主旨报告13个、专题论坛11个、学术报告125个，收集论文摘要269篇、墙报122张。议题覆盖种质资源、生物育种、智慧农业、绿色生产、产业政策等11个专题领域。",
          "en": "II. Academic Feast: 11 Major Topics, 125 Presentations, Covering the Entire Industry Chain\nThe conference featured various forms of communication, including keynote speeches, 11 thematic sessions, poster presentations, and enterprise innovation forums. A total of 13 keynote speeches, 11 thematic forums, and 125 academic presentations were arranged. 269 abstracts and 122 posters were collected. The topics covered 11 specialized fields such as germplasm resources, biotechnology breeding, smart agriculture, green production, and industrial policies."
        },
        {
          "type": "image",
          "src": "https://liang-lab.cn/images/news/n-1787183790899-5.jpg"
        },
        {
          "type": "text",
          "zh": "【结语】\n第十四届亚洲玉米大会主题鲜明、成果丰硕。来自32个国家和地区的770余名代表围绕气候变化应对、种质资源创新、生物育种突破等核心议题展开了深度交流与思想碰撞，达成了广泛共识。正如杨振海书记所言：“独行快，众行远。面对日益严峻的全球性挑战，任何一个国家都无法独自应对。亚洲玉米产业的未来，在于开放、协作与共享。”\n\n以本次大会为新起点，亚洲各国将在玉米科技与产业领域深化合作，共同书写区域粮食安全合作的新篇章。",
          "en": "[Conclusion]\nThe 14th Asian Corn Conference had a clear theme and achieved remarkable results. Over 770 representatives from 32 countries and regions engaged in in-depth exchanges and ideological clashes on core topics such as climate change response, germplasm resource innovation, and breakthroughs in biotechnology breeding, and reached broad consensus. As Secretary Yang Zhenhai said, \"Going alone is fast, but moving together is far. Facing increasingly severe global challenges, no single country can handle them alone. The future of the Asian corn industry lies in openness, collaboration, and sharing.\"\n\nBuilding on this conference as a new starting point, Asian countries will deepen cooperation in corn science and industry, jointly writing a new chapter in regional food security cooperation."
        },
        {
          "type": "text",
          "zh": "\n内容 | 任雪杨\n摄影 | 任雪杨 刘紫旭 许洪伟",
          "en": "\nContent | Ren Xiyang\nPhotography | Ren Xiyang, Liu Zixu, Xu Hongwei"
        }
      ]
    },
    {
      "id": "n-1787217027596",
      "titleZh": "【学术交流】四川农业大学张维肖博士到访 i‑Microbiome Lab 开展学术交流",
      "titleEn": "【Academic Exchange】Dr. Weixiao Zhang from Sichuan Agricultural University Visits i‑Microbiome Lab",
      "day": "20",
      "month": "08",
      "blocks": [
        {
          "type": "text",
          "zh": "一、上午：接站、座谈交流与实验室参观\n梁元可教授前往高铁站迎接张维肖博士，并驱车返回西南科技大学。抵达后，博士生任雪杨、硕士生刘紫烜与张维肖博士于东 9B‑22 会议室开展交流，双方围绕玉米抗病抗逆相关课题充分探讨，交换科研思路与试验实施经验。",
          "en": "I. Morning: Pick‑up, Discussion and Laboratory Tour\nProf. Yuanke Liang picked up Dr. Weixiao Zhang at the high‑speed railway station and drove back to Southwest University of Science and Technology. Upon arrival, Postdoc Xuemei Ren and master’s student Zixu Liu had academic discussions with Dr. Weixiao Zhang in Room 2‑22, East Building 9B. The two sides conducted in‑depth discussions on research topics related to maize disease and stress resistance, and exchanged research ideas and practical experimental experience."
        },
        {
          "type": "image",
          "src": "https://liang-lab.cn/images/news/n-1787217027596-1.jpg"
        },
        {
          "type": "text",
          "zh": "随后张维肖博士与实验室教师共进午餐，就科研进展、研究生培养等内容开展轻松务实的沟通。午餐过后，在实验室成员陪同下，张维肖博士参观 i‑Microbiome Lab 科研平台，实地了解实验室仪器设备条件以及各课题组在研科研方向。",
          "en": "Subsequently, Dr. Weixiao Zhang had lunch with lab faculty members, engaging in relaxed and practical communications regarding research progress and postgraduate training. After lunch, accompanied by laboratory members, Dr. Zhang toured the research platforms of i‑Microbiome Lab to gain first‑hand insights into the lab’s instrument facilities and ongoing research projects of each research group."
        },
        {
          "type": "text",
          "zh": "\n二、下午：专题学术报告\n专题学术报告在东 9B‑22 会议室举行。报告题目为玉米抗镰孢菌及干旱胁迫响应的分子机制研究。\n\n报告伊始，张维肖博士介绍个人研究背景。其为四川农业大学作物遗传育种专业博士研究生，师从卢艳丽教授与冯宣军副教授，主要围绕玉米抗病与抗逆分子机制开展研究，构建 “基因挖掘 — 信号通路 — 功能验证 — 育种应用” 完整研究范式。在抗病方向，系统解析玉米对镰孢菌引起穗腐病、茎腐病的分子抗性机制，挖掘 MPEL1‑MAPK16‑JAZ20 信号级联通路；同时揭示红光增强玉米抗拟轮枝镰孢菌的关键化合物。在抗逆方向，解析 LBD 转录因子家族 Ⅱ 类成员参与玉米、拟南芥干旱胁迫应答的分子机理。\n\n报告主体部分，张维肖博士结合《The EMBO Journal》《iMeta》《The Plant Journal》等已发表研究成果，系统讲解玉米应对镰孢菌侵染与干旱胁迫的分子响应通路，介绍基因挖掘、遗传材料创制、表型鉴定、组学解析、基因功能验证整套研究体系，分享玉米广谱抗病、抗旱分子育种的关键基因资源，同时阐述当前研究存在的问题与后续研究规划。整场报告逻辑严谨，内容充实，参会师生认真聆听并做好记录。",
          "en": "\nII. Afternoon: Special Academic Report\nThe special academic report was held in Room 2‑22, East Building 9B, with the title Molecular Mechanisms of Maize Resistance to Fusarium and Drought Stress Response.\n\nAt the beginning of the report, Dr. Weixiao Zhang introduced his research background. He is a PhD candidate majoring in Crop Genetics and Breeding at Sichuan Agricultural University, supervised by Prof. Yanli Lu and Associate Prof. Xuanjun Feng. His research focuses on the molecular mechanisms of disease resistance and stress tolerance in maize, and he has established a complete research paradigm of **“gene mining — signal pathway analysis — functional verification — breeding application”**. For disease‑resistance research, he systematically dissected the molecular resistance mechanisms of maize against Fusarium‑caused ear rot and stalk rot, and identified the MPEL1‑MAPK16‑JAZ20 signaling cascade. Meanwhile, he revealed the key compound responsible for red‑light‑enhanced maize resistance to *Fusarium verticillioides*. For stress‑tolerance research, he deciphered the molecular mechanism of Class II members of the LBD transcription factor family in drought‑stress responses of maize and *Arabidopsis thaliana*.\n\nIn the main part of the report, drawing on his published findings in journals including *The EMBO Journal*, *iMeta* and *The Plant Journal*, Dr. Zhang systematically illustrated the molecular response pathways of maize upon Fusarium infection and drought stress. He presented the full research workflow covering gene mining, genetic material development, phenotypic characterization, omics analysis and gene functional verification. He shared key genetic resources for molecular breeding of broad‑spectrum disease resistance and drought tolerance in maize, and also discussed existing challenges and future research plans. The well‑structured and informative presentation was attentively followed and recorded by participating faculty and students."
        },
        {
          "type": "image",
          "src": "https://liang-lab.cn/images/news/n-1787217027596-4.jpg"
        },
        {
          "type": "image",
          "src": "https://liang-lab.cn/images/news/n-1787217027596-5.jpg"
        },
        {
          "type": "image",
          "src": "https://liang-lab.cn/images/news/n-1787217027596-6.jpg"
        },
        {
          "type": "image",
          "src": "https://liang-lab.cn/images/news/n-1787217027596-7.jpg"
        },
        {
          "type": "text",
          "zh": "三、报告结束：师生交流研讨\n报告结束后进入互动交流环节，在场师生针对报告内容踊跃提问，围绕玉米抗病基因挖掘、互作试验设计等科学问题展开探讨，张维肖博士结合自身科研经验逐一细致解答，现场学术氛围浓厚。",
          "en": "III. Post‑report Session: Q&A and Academic Discussion\nAfter the report, an interactive Q&A session was launched. Faculty and students present raised questions actively concerning the presentation content. They discussed scientific issues such as the mining of maize disease‑resistance genes and the design of interaction experiments. Drawing on his own research experience, Dr. Weixiao Zhang provided detailed answers one by one, creating a vibrant academic atmosphere on site."
        },
        {
          "type": "image",
          "src": "https://liang-lab.cn/images/news/n-1787217027596-9.jpg"
        },
        {
          "type": "image",
          "src": "https://liang-lab.cn/images/news/n-1787217027596-10.jpg"
        },
        {
          "type": "text",
          "zh": "报告会后，硕士生李杨飞继续与张维肖博士开展专项交流，就玉米相关课题研究思路、试验方案设计等内容进行深入探讨。完成全部交流环节后，张维肖博士结束本次来访行程，离开绵阳。",
          "en": "Following the report, master’s student Yangfei Li continued to have dedicated academic exchanges with Dr. Weixiao Zhang. They conducted in‑depth discussions on research ideas and experimental scheme design for maize‑related projects. Upon the completion of all exchange sessions, Dr. Zhang concluded his visit and departed from Mianyang."
        },
        {
          "type": "text",
          "zh": "\n四、活动总结\n本次 i‑Microbiome Lab 组织的学术交流活动，顺利完成接站、学生交流、实验室参观、专题报告、一对一研讨等全部既定环节。本次活动为实验室师生搭建了和校外优秀青年科研人员面对面沟通的宝贵平台，拓宽了师生在玉米抗病、抗逆分子机制方向的学术视野，启发了课题组后续科研工作思路，同时为两校后续科研协作、人才交流奠定良好基础。",
          "en": "\nIV. Activity Summary\nThis academic exchange event organized by i‑Microbiome Lab successfully completed all scheduled sessions, including guest pick‑up, student discussions, laboratory tour, special academic report and one‑on‑one seminars. The activity built a valuable platform for faculty and students of the lab to communicate face‑to‑face with outstanding young researchers from other institutions. It broadened the academic horizons of teachers and students in the field of molecular mechanisms underlying maize disease resistance and stress tolerance, inspired follow‑up research ideas for the research group, and laid a solid foundation for future scientific research cooperation and talent exchanges between the two universities."
        }
      ]
    },
    {
      "id": "n-1787252593672",
      "titleZh": "凝心聚力谋发展，笃行实干启新程｜生态农作创新团队召开 2026 年年中总结大会",
      "titleEn": "Unite efforts to pursue development, act with determination to embark on a new journey | The Ecological Farming Innovation Team held the mid-year summary meeting for 2026",
      "day": "19",
      "month": "08",
      "blocks": [
        {
          "type": "text",
          "zh": "2026 年 8 月 19 日全天，生态农作创新团队年中总结大会于绵阳仙海龙源会议中心顺利召开。团队全体教师、博士生、硕士生以及部分本科生参加本次会议，参会人员专业涵盖生物学、农艺与种业等多个专业。\n\n会上，按照年级阶段分类开展工作汇报。即将进入博四、研三阶段的同学，在汇报上半年科研进展的基础上，重点汇报毕业论文整体框架，梳理学位论文研究思路、主体内容与后续推进安排；即将进入博二、研二的同学围绕半年科研进展展开汇报，并着重阐述开题准备工作与开题计划；已经提前进入实验室开展科研的研一新生，结合自身情况汇报研究方向的思考与初步构想。除学生汇报外，团队部分教师也依次完成个人半年科研工作进展汇报。\n\n其中，智能微生态与生物制造实验室（i‑Microbiome Lab）多名成员依次作专题汇报。",
          "en": "On August 19, 2026, the mid-year summary meeting of the Ecological Farming Innovation Team was successfully held at the Xianhai Longyuan Conference Center in Mianyang. All the teachers, doctoral students, master's students, and some undergraduate students of the team attended this meeting. The attendees covered various specialties such as biology, agronomy, and seed industry.\n\nDuring the meeting, work reports were conducted based on the grade stage. Students who were about to enter the fourth year of doctoral studies or the third year of postgraduate studies presented their progress in the first half of the year, with a focus on presenting the overall framework of their graduation theses, summarizing the research ideas, main contents, and subsequent implementation plans of the dissertations; students who were about to enter the second year of doctoral studies or the second year of postgraduate studies presented their reports based on the progress of the first half of the year, and particularly elaborated on the preparatory work for the topic selection and the topic selection plan; new postgraduate students who had already entered the laboratory to conduct research presented their thoughts and preliminary concepts regarding the research direction based on their own situations. In addition to the student reports, some team teachers also completed individual reports on the progress of their half-year research work.\n\nAmong them, several members of the Intelligent Microecology and Biomanufacturing Laboratory (i-Microbiome Lab) gave special reports one after another."
        },
        {
          "type": "text",
          "zh": "博士研究生任雪杨围绕大刍草内生菌挖掘课题展开汇报，并结合参会经历，分享了参加亚洲玉米大会的学习体会与所思所想；",
          "en": "Doctoral student Ren Xueyang presented a report on the topic of exploring endophytic bacteria in big sedge, and, in combination with her participation experiences, shared her learning insights and thoughts gained from attending the Asian Corn Conference."
        },
        {
          "type": "image",
          "src": "https://liang-lab.cn/images/news/n-1787252593672-2.jpg"
        },
        {
          "type": "text",
          "zh": "硕士研究生刘紫旭汇报AMF 真菌对玉米氮素营养研究相关工作，介绍试验开展情况与阶段性试验结果；",
          "en": "Master's student Liu Zixu presented the research work related to AMF fungi and their impact on nitrogen nutrition in corn, and introduced the progress of the experiments and the results of the interim tests."
        },
        {
          "type": "image",
          "src": "https://liang-lab.cn/images/news/n-1787252593672-4.jpg"
        },
        {
          "type": "text",
          "zh": "硕士研究生李杨飞汇报蚯蚓粪源促氮微生物分离鉴定、模块化组装及其分子机制研究，同时展示了实验室自主研发的玉米考种系统 Corn Count，介绍系统开发思路、功能特点与应用前景；",
          "en": "Master's student Li Yangfei presented a report on the isolation and identification of nitrogen-promoting microorganisms from earthworm manure, the modular assembly of the system, and the molecular mechanism research. At the same time, he demonstrated the laboratory-developed Corn Count variety identification system, introducing the development ideas, functional features, and application prospects of the system."
        },
        {
          "type": "image",
          "src": "https://liang-lab.cn/images/news/n-1787252593672-6.jpg"
        },
        {
          "type": "image",
          "src": "https://liang-lab.cn/images/news/n-1787252593672-7.jpg"
        },
        {
          "type": "text",
          "zh": "实验室负责人梁元可教授汇报了过往研究成果，聚焦地钱对紫外光（UV‑B）信号接收与转导方向，梳理该方向的研究发现与科学启示。",
          "en": "Professor Liang Yuanke, the head of the laboratory, presented the past research results, focusing on the way that mosses receive and transmit UV-B signals, and summarized the research findings and scientific insights in this area."
        },
        {
          "type": "image",
          "src": "https://liang-lab.cn/images/news/n-1787252593672-9.jpg"
        },
        {
          "type": "image",
          "src": "https://liang-lab.cn/images/news/n-1787252593672-10.jpg"
        },
        {
          "type": "text",
          "zh": "全体汇报人员对照年初制定的年度目标任务，分别从项目执行推进、论文专利产出、田间试验开展、科研平台建设、人才培养、对外学术交流等多个维度，系统梳理上半年取得的阶段性成效，客观剖析科研试验、项目申报、成果产出过程中遇到的难点与不足，并结合自身研究规划，详细阐述下半年工作计划、预期成果与时间节点。团队研究主要围绕高蛋白玉米展开，方向覆盖生物学分子机制、栽培技术、蚯蚓粪应用、玉米内生菌等内容。\n\n汇报结束后，黄晶院长对团队上半年的研究进展与取得收获、各研究方向布局、各方向负责教师分工安排以及实验室未来发展规划作出高度评价。院长着重强调科研工作要坚持“边研究、边应用”，推动科研成果对接实际生产需求，把基础研究产出落到产业实践当中。同时直面团队现存短板，针对试验进度管控、高水平成果培育、项目申报打磨、学生过程培养、实验室安全管理等方面提出改进要求。院长指出，全体成员要坚持目标导向与问题导向，压紧压实各项工作任务；要加强内部交叉协作，强化试验过程管理，充分用好暑期科研窗口期，攻坚克难推进在研课题；要兼顾科研产出与人才培养，鼓励师生积极开展对外学术交流，拓展研究思路。",
          "en": "All the reporting personnel compared the annual target tasks set at the beginning of the year and systematically summarized the phased achievements obtained in the first half of the year from multiple dimensions such as project implementation progress, paper and patent output, field experiments, scientific research platform construction, talent cultivation, and external academic exchanges. They objectively analyzed the difficulties and shortcomings encountered in the process of scientific research trials, project applications, and outcome production, and elaborated on the work plans, expected outcomes, and timeframes for the second half of the year based on their own research plans. The team's research mainly focused on high-protein corn, covering aspects such as biological molecular mechanisms, cultivation techniques, earthworm manure application, and endophytic bacteria in corn.\n\nAfter the report, President Huang Jing highly praised the research progress and achievements of the team in the first half of the year, the layout of each research direction, the division of responsibilities among teachers in each direction, and the future development plan of the laboratory. The president emphasized that scientific research work should adhere to the principle of \"researching while applying\", promoting the connection between scientific research results and actual production needs, and applying the outputs of basic research to industrial practice. At the same time, he pointed out the existing shortcomings of the team and proposed improvement requirements in areas such as trial progress control, cultivation of high-level results, project application refinement, student process cultivation, and laboratory safety management. The president stated that all members should adhere to the goal-oriented and problem-oriented approaches, tighten and implement all tasks; strengthen internal cross-cooperation, strengthen trial process management, fully utilize the summer research window period, and overcome difficulties to advance ongoing research projects; balance scientific research output and talent cultivation, encourage teachers and students to actively engage in external academic exchanges, and expand research ideas."
        },
        {
          "type": "image",
          "src": "https://liang-lab.cn/images/news/n-1787252593672-12.jpg"
        },
        {
          "type": "image",
          "src": "https://liang-lab.cn/images/news/n-1787252593672-13.jpg"
        },
        {
          "type": "text",
          "zh": "参会师生围绕课题推进、试验方案优化、项目申报、团队管理、学位论文撰写、开题筹备等议题开展充分研讨，积极建言献策，现场研讨氛围务实浓厚。\n\n本次年中总结大会既是一次工作复盘会，也是一次鼓劲部署会。通过集中汇报与交流研讨，团队进一步统一思想、凝聚共识，厘清后续工作的重点与路径。不同专业背景的师生充分交流碰撞，也促进了学科交叉融合。全体成员将以此次会议为契机，补齐短板、协同发力，稳步推进以高蛋白玉米为核心的各项科研任务落地落实，兼顾理论创新与生产转化，力争圆满完成 2026 年度各项工作目标。\n\n主办：生态农作创新团队",
          "en": "The participating teachers and students conducted in-depth discussions on topics such as project advancement, optimization of experimental plans, project application, team management, thesis writing, and preparatory work for the opening ceremony. They actively offered suggestions and strategies, and the on-site discussion atmosphere was practical and intense.\n\nThis mid-year summary meeting was not only a work review session but also a motivational deployment meeting. Through centralized reporting and exchange and discussion, the team further unified their thoughts and reached consensus, clarified the key points and paths of subsequent work. Teachers and students with different professional backgrounds fully exchanged ideas and also promoted interdisciplinary integration. All members will take this meeting as an opportunity to make up for shortcomings, work collaboratively, and steadily advance the implementation of various scientific research tasks centered on high-protein corn, balancing theoretical innovation and production transformation, and strive to complete all the work goals for the year 2026 successfully.\n\nOrganizer: Ecological Crop Innovation Team"
        },
        {
          "type": "text",
          "zh": "内容 | 李杨飞\n摄影 | 任雪杨 李杨飞 刘紫旭 许洪伟",
          "en": "Content | Li Yangfei\nPhotography | Ren Xueyang, Li Yangfei, Liu Zixu, Xu Hongwei"
        }
      ]
    },
    {
      "id": "n-1787716021244",
      "titleZh": "【学术交流】i‑Microbiome Lab 线上开展学术交流，中国海洋大学刘旭辉硕士作专题报告",
      "titleEn": "[Academic Exchange] i-Microbiome Lab conducts online academic exchanges. Liu Xuhui, a master's student from Ocean University of China, delivers a special report.",
      "day": "25",
      "month": "08",
      "blocks": [
        {
          "type": "text",
          "zh": "近日，西南科技大学智能微生态与生物制造实验室（i‑Microbiome Lab）组织线上学术交流报告会，邀请中国海洋大学刘旭辉硕士作题为《高质量石斑鱼基因组组装和生长关键基因鉴定》的专题报告，实验室全体师生线上线下共同参与本次交流学习。",
          "en": "Recently, the i-Microbiome Lab of Southwest University of Science and Technology organized an online academic exchange seminar, inviting Liu Xuhui, a master's student from Ocean University of China, to deliver a special report titled \"High-Quality Genome Assembly of Large-Scale Reef Fish and Identification of Key Genes for Growth\". All the teachers and students of the laboratory participated in this exchange and learning session both online and offline."
        },
        {
          "type": "text",
          "zh": "报告伊始，刘旭辉硕士介绍个人教育背景与科研经历。他本科毕业于烟台大学海洋学院水产养殖学专业，硕士就读于中国海洋大学海洋生命学院生物技术与工程专业，师从周茜研教授、陈松林院士；先后在青岛华大基因研究院、北京大学现代农业研究院开展学习工作，熟练掌握基因组组装注释、转录组分析、GWAS 分析以及 AI 辅助生物信息分析等技术，曾荣获硕士研究生文体和社会活动奖学金、研究生学术（实践）创新奖学金。",
          "en": "At the beginning of the report, Master Liu Xuhui introduced his educational background and research experience. He graduated from the School of Oceanography of Yantai University with a bachelor's degree in Aquaculture. He then pursued his master's degree at the College of Marine Life Sciences of Ocean University of China, under the supervision of Professor Zhou Xianyan and Academician Chen Songlin. He has conducted studies and work at Qingdao BGI Institute and Peking University Modern Agriculture Research Institute. He is proficient in technologies such as genome assembly and annotation, transcriptome analysis, GWAS analysis, and AI-assisted bioinformatics analysis. He has received the Master's Student Cultural and Social Activity Scholarship and the Graduate Student Academic (Practical) Innovation Scholarship."
        },
        {
          "type": "image",
          "src": "https://liang-lab.cn/images/news/n-1787716021244-2.jpg"
        },
        {
          "type": "text",
          "zh": "报告结束后进入互动研讨环节，实验室师生就基因组组装参数设置、生长性状候选基因筛选、多组学联合分析、AI 在组学数据分析中的实际应用等问题积极提问。刘旭辉硕士结合自身项目实践经验逐一进行细致解答，双方针对水产基因组研究与陆生作物组学研究之间可借鉴互通的技术思路展开充分探讨，线上交流氛围热烈浓厚。",
          "en": "After the report, the interactive discussion session began. The teachers and students from the laboratory actively raised questions regarding issues such as setting of genome assembly parameters, screening of candidate genes for growth traits, combined analysis of multiple omics, and the practical application of AI in omics data analysis. Master Liu Xuhui, based on his own project experience, provided detailed answers to each question. Both sides extensively discussed the technical ideas that could be borrowed and exchanged between aquatic genome research and terrestrial crop omics research. The online communication atmosphere was lively and intense."
        },
        {
          "type": "image",
          "src": "https://liang-lab.cn/images/news/n-1787716021244-5.jpg"
        },
        {
          "type": "text",
          "zh": "本次线上学术交流，为实验室师生搭建了跨院校、跨研究方向的学习平台。大家学习到水产动物基因组与关键基因挖掘的完整研究范式，拓宽了多组学、生物信息学与 AI 辅助分析的学术视野，也为课题组后续开展玉米、微生物相关组学研究提供新的思路参考，进一步促进不同研究领域之间的技术借鉴与思想碰撞。",
          "en": "This online academic exchange has provided a cross-institutional and cross-disciplinary learning platform for the teachers and students of the laboratory. Through this event, everyone has learned the complete research paradigm of aquatic animal genomes and the exploration of key genes, broadening the academic horizons of multi-omics, bioinformatics and AI-assisted analysis. It has also provided new ideas and references for the research group to carry out subsequent studies on corn and microbial omics, further promoting the technical borrowing and ideological collision among different research fields."
        }
      ]
    },
    {
      "id": "n-1788242856545",
      "titleZh": "【本科生培养】微生物源壳聚糖国创赛项目本科生成员见面会顺利举行",
      "titleEn": "[Undergraduate cultivation] The meeting of undergraduate members of the microbial source chitosan national innovation competition project was successfully held",
      "day": "1",
      "month": "09",
      "blocks": [
        {
          "type": "text",
          "zh": "近日，智能微生态与生物制造实验室（i-Microbiome Lab）微生物源壳聚糖国创赛项目组举行了本科生成员见面会。本次见面会由阎凌翔博士生主持，吸引了来自西南科技大学生命科学与农林学院、医学院等多个学院的24级、25级本科生同学踊跃参加，现场气氛热烈。",
          "en": "Recently, the i-Microbiome Lab's microbial chitosan project team held a meeting with undergraduate students. This meeting was hosted by Dr. Yan Lingxiang, and attracted 24th and 25th grade undergraduate students from the School of Life Sciences and Agriculture and Forestry of Southwest University of Science and Technology and the School of Medicine. The atmosphere was warm."
        },
        {
          "type": "text",
          "zh": "见面会上，同学们首先依次进行了自我介绍，分享了自己的专业背景、兴趣方向以及加入项目的初衷。通过面对面的交流，来自不同年级、不同专业的同学迅速加深了相互了解，为后续跨学科协作奠定了良好基础。",
          "en": "At the meeting, the students first introduced themselves in turn, sharing their professional background, interests and the original intention of joining the project. Through face-to-face exchanges, students from different grades and different majors quickly deepened their mutual understanding and laid a good foundation for subsequent interdisciplinary collaboration."
        },
        {
          "type": "text",
          "zh": "随后，阎凌翔博士生围绕项目背景、发展历程、国创赛参赛要求以及团队具体工作内容进行了系统介绍。他结合微生物源壳聚糖的研究特色与技术路线，详细讲解了项目从菌种筛选、发酵工艺优化到壳聚糖提取纯化及产品应用开发的全链条布局，并鼓励同学们在竞赛实战中提升科研素养与团队协作能力。",
          "en": "Subsequently, Dr. Yan Lingxiang gave a systematic introduction to the background of the project, the development process, the requirements for participation in the National Creation Competition, and the specific work of the team. Combining the research characteristics and technical route of microbial chitosan, he explained in detail the whole chain layout of the project from strain screening and fermentation process optimization to chitosan extraction and purification and product application development, and encouraged students to improve their scientific research literacy and teamwork ability in the competition."
        },
        {
          "type": "image",
          "src": "https://liang-lab.cn/images/news/n-1788242856545-3.jpg"
        },
        {
          "type": "image",
          "src": "https://liang-lab.cn/images/news/n-1788242856545-4.jpg"
        },
        {
          "type": "text",
          "zh": "实验室负责人梁元可教授也来到见面会与同学们交流。他指出：\"要用一年时间，做一个让自己大学期间都难忘的事。\"这句寄语既点明了参赛备赛的节奏与分量，也道出了实验室以竞赛为载体的育人初心——希望同学们把这一年当作一场踏实而纯粹的科研历练，在真实项目中收获成长、留下属于自己的大学印记。",
          "en": "Professor Liang Yuanke, the head of the laboratory, also came to the meeting to communicate with his classmates. “Take a year to do something that will make your college days memorable,” he said. \"This message not only points out the rhythm and weight of the preparation for the competition, but also the original intention of the sportsman in the laboratory who uses the competition as the carrier - I hope that the students will take this year as a solid and pure scientific research experience, harvest and grow in the real project, and leave their own university mark."
        },
        {
          "type": "text",
          "zh": "本次见面会充分体现了实验室对中国国际大学生创新大赛等学科竞赛的高度重视，也展现了i-Microbiome Lab在本科生科研训练与创新能力培养方面的持续投入。实验室希望以竞赛为抓手，引导本科生尽早接触科研前沿、参与真实项目，在\"做中学、赛中学\"的过程中实现知识、能力与素质的全面提升。",
          "en": "This meeting fully demonstrates the high importance the laboratory attaches to discipline competitions such as the China International University Innovation Competition, and also demonstrates i-Microbiome Lab's continuous investment in undergraduate research training and innovation ability training. The laboratory hopes to take the competition as the starting point, guide undergraduates to contact the frontier of scientific research as soon as possible, participate in real projects, and achieve a comprehensive improvement of knowledge, ability and quality in the process of \"doing middle school and competition middle school\"."
        }
      ]
    },
    {
      "id": "n-1788244705558",
      "titleZh": "【科研进展】实验室主持的国家自然科学基金青年项目获批立项",
      "titleEn": "[Scientific Research Progress] The National Natural Science Foundation Youth Project hosted by the laboratory was approved",
      "day": "26",
      "month": "08",
      "blocks": [
        {
          "type": "image",
          "src": "https://liang-lab.cn/images/news/n-1788244705558-0.jpg"
        },
        {
          "type": "text",
          "zh": "近日，国家自然科学基金委员会正式公布2026 年度项目评审结果，智能微生态与生物制造实验室（i-Microbiome Lab）梁元可教授主持申报的青年科学基金项目（C 类）成功获批立项，资助经费 30 万元，研究执行期为 2027 年 1 月 1 日至 2029 年 12 月 31 日。",
          "en": "Recently, the National Natural Science Foundation of China officially announced the results of the 2026 annual project review. Professor Liang Yuanke, chairman of the Intelligent Microbiome and Biological Manufacturing Laboratory (i-Microbiome Lab), successfully approved the youth science fund project (category C), with a grant of 300,000 yuan. The research implementation period is from January 1, 2027 to December 31, 2029."
        },
        {
          "type": "text",
          "zh": "本次获批项目围绕实验室主攻方向的关键科学问题开展系统研究，旨在通过多学科交叉手段，深入揭示相关过程的内在机理，并为拓展实验室研究方向提供新思路。项目的实施将进一步丰富实验室在智能微生态与生物制造领域的研究积累，也为推动相关方向的青年人才培养与学科交叉提供重要支撑。",
          "en": "This approved project carries out systematic research on key scientific issues in the main direction of the laboratory. It aims to deeply reveal the internal mechanism of relevant processes through multidisciplinary cross-disciplinary means and provide new ideas for expanding the research direction of the laboratory. The implementation of the project will further enrich the laboratory's research accumulation in the fields of intelligent micro-ecology and biomanufacturing, and also provide important support for promoting the cultivation of young talents in relevant directions and the intersection of disciplines."
        },
        {
          "type": "text",
          "zh": "国家自然科学基金青年科学基金项目（C 类）面向青年科研人员，旨在支持其在起步阶段开展独立、系统的创新性研究。本次项目的成功立项，既是对梁元可教授前期科研积累的肯定，也为实验室下一阶段发展注入了新的动力。",
          "en": "The National Natural Science Foundation Youth Science Fund Program (Category C) is aimed at young researchers to support independent, systematic and innovative research in its infancy. The successful establishment of this project is not only an affirmation of Professor Liang Yuanke's early scientific research accumulation, but also injects new impetus into the next stage of laboratory development."
        }
      ]
    },
    {
      "id": "n-1788245532029",
      "titleZh": "【科研进展】实验室主持的企业技术开发委托项目获批立项",
      "titleEn": "[Scientific research progress] The entrusted project of enterprise technology development hosted by the laboratory was approved and approved",
      "day": "23",
      "month": "07",
      "blocks": [
        {
          "type": "image",
          "src": "https://liang-lab.cn/images/news/n-1788245532029-0.jpg"
        },
        {
          "type": "text",
          "zh": "近日，智能微生态与生物制造实验室（i-Microbiome Lab）梁元可教授团队与企业合作申报的\"微生物源羧甲基壳聚糖的研发\"项目正式获批立项。本项目由梁元可教授指导、阎凌翔博士研究生牵头开展，执行期为 2026 年 8 月至 2029 年 7 月，立项经费 30 万元，所属研究方向为\"壳聚糖生物制造（合成生物学）\"。",
          "en": "Recently, the \"research and development of microbial carboxymethyl chitosan\" project declared by Professor Liang Yuanke's team in cooperation with enterprises in the Intelligent Microbiome and Biological Manufacturing Lab (i-Microbiome Lab) was officially approved. This project is led by Professor Liang Yuanke and Dr. Yan Lingxiang graduate students. The implementation period is from August 2026 to July 2029, with a project funding of 300,000 yuan. Its research direction is \"chitosan biomanufacturing (synthetic biology)\"."
        },
        {
          "type": "text",
          "zh": "本项目依托实验室在合成生物学领域的科研积累，与长三角某生物科技企业合作开展微生物源羧甲基壳聚糖的绿色生物制造与产业化关键技术研发，旨在对接化妆品与功能材料等领域的应用需求，构建从菌种设计、发酵优化到下游提取纯化的完整工艺路线。",
          "en": "This project relies on the accumulation of scientific research in the field of synthetic biology in the laboratory, and cooperates with a biotechnology enterprise in the Yangtze River Delta to carry out the research and development of key technologies for the green biomanufacturing and industrialization of microbial carboxymethyl chitosan. It aims to meet the application needs of cosmetics and functional materials, and build a complete process route from strain design, fermentation optimization to downstream extraction and purification."
        },
        {
          "type": "text",
          "zh": "本次项目的顺利立项，是实验室在产学研合作方面迈出的坚实一步。通过本项目的实施，实验室将进一步打通\"基础研究—技术开发—产业化应用\"的链路，为后续科研成果的转移转化积累宝贵经验。同时，本项目也为阎凌翔等青年研究人员提供了独立牵头横向课题的实战机会，对提升其科研组织与工程转化能力具有重要意义。",
          "en": "The smooth establishment of this project is a solid step for the laboratory in terms of industry-university-research cooperation. Through the implementation of this project, the laboratory will further open up the link of \"basic research — technology development — industrial application\", and accumulate valuable experience for the transfer and transformation of subsequent scientific research results. At the same time, this project also provides a practical opportunity for Yan Lingxiang and other young researchers to independently lead horizontal projects, which is of great significance to improve their scientific research organization and engineering transformation capabilities."
        }
      ]
    }
  ],
  "join": {
    "introZh": "我们寻找对微生物科学充满好奇、对工程落地充满热情的同学！",
    "introEn": "We look for students who are curious about microbial science and passionate about engineering applications！",
    "images": [],
    "cards": [
      {
        "icon": "fa-graduation-cap",
        "zh": "本科生科研训练",
        "en": "Undergraduate Research",
        "descZh": "面向大二大三学生，提供 6 个月以上实验室轮转！",
        "descEn": "Open to 2nd/3rd-year undergraduates; 6+ month rotation."
      },
      {
        "icon": "fa-flask",
        "zh": "硕博研究生",
        "en": "Master/PhD Students",
        "descZh": "提供 4-5 年系统性培养，覆盖实验技能、独立课题、职业发展。",
        "descEn": "4-5 year systematic training covering experimental skills, independent projects, career development."
      },
      {
        "icon": "fa-user-tie",
        "zh": "工程师与博后",
        "en": "Engineers & Postdocs",
        "descZh": "欢迎具备工业经验或工程能力的工程师、博后来推进转化项目。",
        "descEn": "Engineers and postdocs with industrial experience welcome for translational projects."
      }
    ],
    "openings": [
      {
        "zh": "合成生物学 / 代谢工程方向博士生 1 名",
        "en": "1 PhD: Synthetic Biology / Metabolic Engineering"
      },
      {
        "zh": "蛋白质设计与机器学习方向博士生 1 名",
        "en": "1 PhD: Protein Design & ML"
      },
      {
        "zh": "微生物组数据分析方向硕士生 1 名",
        "en": "1 Master: Microbiome data analysis"
      }
    ],
    "video": "videos/recruitment/index.m3u8",
    "videoPoster": ""
  },
  "labLife": [
    "https://liang-lab.cn/images/lab-life/1784989462325-3547.jpg",
    "https://liang-lab.cn/images/lab-life/1784989470058-4207.jpg",
    "https://liang-lab.cn/images/lab-life/1784991047539-2574.jpg"
  ],
  "contact": {
    "email": "yuanke.liang@swust.edu.cn",
    "addressZh": "四川省绵阳市西南科技大学生命科学与农林学院（东9B座2-22） i-Microbiome Lab",
    "addressEn": "i-Microbiome Lab, College of Life Sciences and Agriculture, Southwest University of Science and Technology, Mianyang, Sichuan Province (East 9B, Room 2-22)",
    "socials": []
  },
  "stats": [
    {
      "zh": "分离菌株",
      "en": "Strains Isolated",
      "value": 120,
      "suffix": "+"
    },
    {
      "zh": "发表 SCI",
      "en": "SCI Papers",
      "value": 35,
      "suffix": "+"
    },
    {
      "zh": "SynCom 模块",
      "en": "SynCom Modules",
      "value": 8,
      "suffix": ""
    },
    {
      "zh": "合作机构",
      "en": "Collaborators",
      "value": 15,
      "suffix": "+"
    }
  ],
  "projects": [
    {
      "id": "prj-nsfc-youth",
      "type": "vertical",
      "titleZh": "地钱损伤响应因子MpERF21抑制生长素信号调控再生的分子机制",
      "titleEn": "Molecular mechanism by which MpERF21 suppresses auxin signaling to regulate regeneration in Marchantia",
      "category": "国家自然科学基金·青年科学基金",
      "agency": "国家自然科学基金委员会",
      "grantNo": "",
      "amount": "30万",
      "period": "2027.01–2029.12",
      "status": "拟立项",
      "lead": "梁元可",
      "role": "主持",
      "descZh": "以地钱为模型，解析ERF转录因子MpERF21调控植物创伤后高效再生的分子通路，揭示其抑制生长素信号、平衡再生与发育的作用机制。",
      "descEn": "Using Marchantia as a model, this project dissects how the ERF transcription factor MpERF21 regulates efficient post-wounding regeneration, revealing its mechanism of suppressing auxin signaling to balance regeneration and development.",
      "contentZh": "",
      "contentEn": "",
      "goalsZh": "",
      "goalsEn": "",
      "progressZh": "",
      "progressEn": "",
      "pillarId": "pillar-1784985245245",
      "memberIds": [
        "member-liang"
      ],
      "pubIds": [],
      "images": [],
      "logo": ""
    },
    {
      "id": "prj-chunlu-cmchitosan",
      "type": "horizontal",
      "titleZh": "微生物源羧甲基壳聚糖的研发",
      "titleEn": "R&D of Microbe-derived Carboxymethyl Chitosan",
      "category": "企业技术开发委托",
      "agency": "上海春露生物化学有限公司",
      "grantNo": "",
      "amount": "30万",
      "period": "2026.08–2029.07",
      "status": "在研",
      "lead": "",
      "role": "",
      "partnerId": "partner-chunlu",
      "descZh": "与上海春露生物化学有限公司合作，开展微生物源羧甲基壳聚糖的绿色生物制造与产业化关键技术研发，对接化妆品与功能材料需求。",
      "descEn": "Collaboration with Shanghai Chunlu Biochemical Co., Ltd. on green bio-manufacturing and industrialization of microbe-derived carboxymethyl chitosan for cosmetics and functional materials.",
      "contentZh": "",
      "contentEn": "",
      "goalsZh": "",
      "goalsEn": "",
      "progressZh": "",
      "progressEn": "",
      "pillarId": "pillar-enzyme",
      "memberIds": [
        "member-liang"
      ],
      "pubIds": [],
      "images": [],
      "logo": ""
    }
  ],
  "honors": [
    {
      "id": "hon-1",
      "titleZh": "国家级青年人才项目",
      "titleEn": "National Young Talent Program",
      "org": "国家海外高层次人才引进计划",
      "date": "2025",
      "descZh": "梁元可教授入选国家级青年人才项目，依托西南科技大学开展植物-微生物互作与生物制造前沿研究。",
      "descEn": "Prof. Liang Yuanke was selected into the National Young Talent Program, conducting frontier research on plant-microbe interactions and bio-manufacturing at SWUST.",
      "image": ""
    }
  ],
  "competitions": [
    {
      "id": "c-2026-chitosan",
      "titleZh": "微生物源壳聚糖国创赛项目（2027双创、挑战杯）",
      "titleEn": "Microbe-derived Chitosan Innovation Competition Project",
      "statusZh": "火热报名中",
      "statusEn": "Open for Registration",
      "org": "中国国际大学生创新大赛组委会",
      "date": "2026.07–2026.09",
      "descZh": "围绕微生物源壳聚糖的产业化应用展开，本团队参赛并开展合成生物学与生物制造方向的创新研究。欢迎对项目感兴趣的同学关注或加入。",
      "descEn": "Our team participates in this competition with innovative research on the industrial application of microbe-derived chitosan in synthetic biology and biomanufacturing. Students interested are welcome to follow or join.",
      "image": "https://liang-lab.cn/images/competitions/1785483285384-2194.jpg",
      "teamZh": "微生物源壳聚糖产业化应用团队",
      "teamEn": "Microbe-derived Chitosan Industrialization Team",
      "advisorZh": "阎凌翔、董逸伦",
      "advisorEn": "Yan Lingxiang, Dong Yilun",
      "leaderZh": "",
      "leaderEn": "",
      "membersZh": "",
      "membersEn": ""
    }
  ],
  "partners": {
    "titleZh": "合作网络",
    "titleEn": "Collaboration Network",
    "introZh": "我们与全球企业与科研机构携手，推动微生物组技术从实验室走向产业与前沿探索。地图上的点亮区域，标记着我们合作的足迹。",
    "introEn": "We partner with enterprises and research institutions worldwide to bring microbiome science from the lab into industry and frontier discovery. Lit regions on the map mark where we collaborate.",
    "home": [
      104.68,
      31.47
    ],
    "categories": [
      {
        "id": "enterprise",
        "zh": "企业合作",
        "en": "Industry Partners"
      },
      {
        "id": "international",
        "zh": "国际合作",
        "en": "Global Collaboration"
      }
    ],
    "items": [
      {
        "id": "partner-chunlu",
        "category": "enterprise",
        "nameZh": "上海春露生物化学有限公司",
        "nameEn": "Shanghai Chunlu Biochemical Co., Ltd.",
        "region": "上海",
        "country": "中国",
        "province": "CN-SH",
        "coords": [
          121.47,
          31.23
        ],
        "descZh": "始创于1996年，位于上海嘉定，专注羧甲基壳聚糖（CM-chitosan）等生物化学原料的研发与产业化，拥有5项国家发明专利，并作为核心起草单位牵头制定《化妆品用原料 羧甲基脱乙酰壳多糖》团体标准。双方围绕壳聚糖基生物刺激素与农业微生物菌剂的协同开发开展合作。",
        "descEn": "Founded in 1996 and based in Shanghai's Jiading District, Chunlu specializes in carboxymethyl chitosan and biochemical raw materials, holding 5 national invention patents and leading the industry group standard for CM-chitosan. Collaboration focuses on chitosan-based biostimulants synergized with agricultural microbial agents.",
        "url": "http://www.chunlushenghua.cn"
      },
      {
        "id": "partner-hechuang",
        "category": "enterprise",
        "nameZh": "四川禾创种业有限公司",
        "nameEn": "Sichuan Hechuang Seed Co., Ltd.",
        "region": "四川·绵阳",
        "country": "中国",
        "province": "CN-SC",
        "coords": [
          104.77,
          31.46
        ],
        "descZh": "成立于2017年，位于四川绵阳游仙区，国家级科技型中小企业、市级农业产业化重点龙头企业，持有农作物种子生产经营许可证，自育玉米/油菜/小麦等良种20余个，主推高蛋白玉米'禾创599'（高蛋白、无穗腐）。双方围绕高蛋白玉米与微生物合成群落（SynCom）促氮的联合选育与田间示范开展合作。",
        "descEn": "Founded in 2017 in Mianyang, Sichuan, a national high-tech SME and municipal leading agricultural enterprise with a seed production license. It has developed 20+ proprietary crop varieties including the high-protein maize 'Hechuang 599'. Collaboration focuses on joint breeding and field demonstration of high-protein maize with microbiome SynCom for nitrogen promotion.",
        "url": ""
      },
      {
        "id": "partner-shengshi",
        "category": "enterprise",
        "nameZh": "绵阳晟氏健康科技有限公司",
        "nameEn": "Mianyang Shengshi Health Technology Co., Ltd.",
        "region": "四川·绵阳北川",
        "country": "中国",
        "province": "CN-SC",
        "coords": [
          104.43,
          31.83
        ],
        "descZh": "成立于2020年，基地位于绵阳北川合成生物产业园，国家高新技术企业、四川省瞪羚企业，拥有合成生物学体系GMP生产线与原料药生产许可证，专注手性氨基酸、功能食品原料与抗衰因子，产品出口海内外。双方围绕微生物资源挖掘与功能食品原料的联合研发与生产开展合作。",
        "descEn": "Founded in 2020 with a base in the Mianyang Beichuan synthetic-biology industrial park, Shengshi is a national high-tech enterprise and Sichuan gazelle firm, operating GMP lines and an API license, focused on chiral amino acids and functional-food ingredients. Collaboration targets joint R&D and production on microbial resources and functional-food raw materials.",
        "url": "http://www.biosheng.cn"
      },
      {
        "id": "partner-burundi",
        "category": "international",
        "nameZh": "布隆迪",
        "nameEn": "Burundi",
        "region": "布隆迪",
        "country": "布隆迪",
        "iso": "BI",
        "coords": [
          29.36,
          -3.36
        ],
        "descZh": "东非以小规模玉米种植为主的农业国。双方围绕土壤健康与蚯蚓粪源微生物菌剂、以及高蛋白玉米在非洲小农体系的适应性，开展国际合作与田间示范，服务小农增产与粮食安全。",
        "descEn": "An East African agriculture-based nation centered on smallholder maize. Collaboration focuses on soil health, earthworm-cast microbial agents, and the adaptation of high-protein maize for smallholder systems to support yield gains and food security.",
        "url": ""
      },
      {
        "id": "partner-mpg",
        "category": "international",
        "nameZh": "德国马克斯·普朗克学会",
        "nameEn": "Max Planck Society, Germany",
        "region": "德国",
        "country": "德国",
        "iso": "DE",
        "coords": [
          11.58,
          48.14
        ],
        "descZh": "与德国马克斯·普朗克学会（Max Planck Society）相关研究所开展前沿微生物学与合成生物学学术交流，聚焦植物-微生物互作、微生物组机制与人工合成群落的前沿探索。",
        "descEn": "Academic exchange with institutes of the Max Planck Society on frontier microbiology and synthetic biology, focusing on plant–microbe interactions, microbiome mechanisms, and synthetic community exploration.",
        "url": "https://www.mpg.de/en"
      },
      {
        "id": "partner-belgium",
        "category": "international",
        "nameZh": "比利时",
        "nameEn": "Belgium",
        "region": "比利时",
        "country": "比利时",
        "iso": "BE",
        "coords": [
          4.35,
          50.85
        ],
        "descZh": "比利时在植物生物技术与根际微生物组领域研究实力雄厚（如根际微生物互作前沿团队）。双方围绕根际促生微生物与作物氮素高效利用开展国际合作与交流。",
        "descEn": "Belgium is a powerhouse in plant biotechnology and rhizosphere microbiome. Collaboration focuses on plant-growth-promoting microbes and nitrogen-use efficiency in crops.",
        "url": ""
      },
      {
        "id": "partner-switzerland",
        "category": "international",
        "nameZh": "瑞士",
        "nameEn": "Switzerland",
        "region": "瑞士",
        "country": "瑞士",
        "iso": "CH",
        "coords": [
          8.54,
          47.37
        ],
        "descZh": "瑞士在微生物生态与微生物组学领域国际领先（如苏黎世联邦理工等）。双方围绕微生物组功能解析与合成群落（SynCom）构建开展学术交流与合作。",
        "descEn": "Switzerland leads in microbial ecology and microbiome science. Collaboration focuses on microbiome functional analysis and synthetic community (SynCom) construction.",
        "url": ""
      },
      {
        "id": "partner-pakistan",
        "category": "international",
        "nameZh": "巴基斯坦",
        "nameEn": "Pakistan",
        "region": "巴基斯坦",
        "country": "巴基斯坦",
        "iso": "PK",
        "coords": [
          73.05,
          33.69
        ],
        "descZh": "巴基斯坦农业微生物与根际促生菌（PGPR）研究活跃。双方围绕促生微生物资源挖掘与抗旱、低氮条件下作物促生机制开展国际合作。",
        "descEn": "Pakistan has active research in agricultural microbiology and plant-growth-promoting rhizobacteria (PGPR). Collaboration targets growth-promoting microbial resources and mechanisms under drought and low-nitrogen conditions.",
        "url": ""
      }
    ],
    "homeProv": "CN-SC",
    "homeRegion": "绵阳"
  }
}