植物学报

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种子内生真菌的研究进展与发展趋势

古丽君1, 2, 曾彦军1, 2*, 杨怡然1, 李彦忠1, 2
  

  1. 1兰州大学草地农业科技学院, 兰州 730000; 2兰州大学草种创新与草地农业生态系统全国
  • 收稿日期:2025-03-31 修回日期:2025-06-05 出版日期:2025-08-11 发布日期:2025-08-11
  • 通讯作者: 曾彦军
  • 基金资助:
     国家自然科学基金(No.32061123004)和国家重点研发计划项目(No.2022YFD1401101)

Research Progress and Development Trend of Seed Endophytic Fungi

Lijun Gu 1, 2, Yanjun Zeng 1, 2 *, Yiran Yang 1 , Yanzhong Li 1, 2   

  1. 1College of Pastoral Agriculture Science and Technology, Lanzhou 730020, China; 2 State Key Laboratory of Herbage Improvement and Grassland Agro-Ecosystems, Lanzhou University, Lanzhou 730020, China
  • Received:2025-03-31 Revised:2025-06-05 Online:2025-08-11 Published:2025-08-11
  • Contact: Yanjun Zeng

摘要: 种子内生真菌是一类通过垂直和水平途径传播的与宿主植物互惠共生的真菌。目前有关种子内生真菌的研究主要集中于禾本科和豆科植物。种子内生真菌具有物种和群落多样性, 其差异不仅表现在植物的种间, 还表现在植物的不同组织。种子内生真菌功能具有多样性, 能改善种子萌发、帮助幼苗建植、促进植物生长、提高植物的抗逆性、影响土壤性质和植物群落结构。检测并鉴定物种是种子内生真菌研究的基础, 明确种子的组织构造和真菌定殖部位是种子内生真菌检测的前期工作。目前, 种子内生真菌的研究领域主要包括种类及其多样性, 功能及其多样性, 在寄主生活史中的作用和开发利用等。研究方法上, 采用扫描电镜可以观察到种子内生真菌的结构、形态和定殖位置; 采用全基因组测序(WGS)技术可以获取内生真菌的基因组数据, 从而为深入理解种子内生真菌与植物之间复杂的互作关系奠定基础 。研究内容上, 有关种子内生真菌的物种多样性、群落多样性、生态系统多样性及其开发利用成为热点问题。展望未来, 种子内生真菌研究是一个具有较大发展前景的领域。



关键词: 功能多样性, 种子内生真菌, 种子构造, 物种多样性, 垂直传播

Abstract: Seed endophytic fungi are a type of fungi that spread through vertical transmission and have a mutualistic symbiotic relationship with host plants. They can be classified into three types based on their colonization sites and output characteristics. Currently, research on endophytic fungi in seeds mainly focuses on the Poaceae and Fabaceae plants. Seed endophytic fungi exhibit species diversity and community diversity, which not only manifest in the interspecies of plants, but also in different tissues of plants. Seed endophytic fungi have diverse functions, which can affect soil properties, improve seed germination, assist in seedling establishment, promote plant growth, enhance plant stress resistance, and influence plant community structure. Detecting and identifying species is the foundation of research on endophytic fungi in seeds, and figure out the structure of seeds and the colonization sites of fungi are the preliminary and basic work for detecting endophytic fungi in seeds. Currently, the research on seed endophytic fungi mainly includes identifying its species and their diversity, functions and their diversity, roles in the host's life history, and development and utilization. In terms of research methods, scanning electron microscopy can be used to observe the structure, morphology, and colonization location of fungi; whole-genome sequencing (WGS) technology can obtain microbial genome data and reveal the molecular mechanisms of interaction between seed endophytic fungi and plants. In terms of research content, species diversity, community diversity, ecosystem diversity, and development and utilization of seed endophytic fungi have become hot issues. Looking to the future, research on seed endophytic fungi is a field with great development prospects.

Key words: functional diversity, seed endophytic fungi, seed structure, species diversity, vertical transmission