• ISSN 1008-505X
  • CN 11-3996/S

干旱胁迫对根际微生物影响的研究进展

Research progress on the impact of drought stress on rhizosphere microorganisms

  • 摘要: 随着全球气候变化加剧,干旱已成为制约植物生长、威胁粮食安全与生态健康的最严重非生物胁迫之一。根际微生物的定殖与功能对促进植物生长和增强作物抗旱性具有关键作用,其与植物建立的共生关系能通过多种机制协助植物抵御干旱,具有广阔的应用前景。因此,本文系统综述了干旱胁迫对植物根际微生物群落的影响,分析了其对微生物功能的直接与间接调控作用,深入探讨了根际微生物介导的植物抗旱系统调控网络,以及复合胁迫下植物-微生物互作机制与生态适应策略。最后,针对当前研究对微生物群落田间稳定定殖机制认识不足、关键根系分泌物信号识别与调控手段缺乏、复合胁迫下微生物功能响应复杂等局限性,本文进一步提出未来应聚焦于人工构建稳定功能菌群、解析根系分泌物关键信号分子、挖掘土壤微生物“抗旱记忆”形成机制等具体研究方向,旨在为探索增强植物抗旱性的新途径提供科学依据,为农业可持续发展奠定理论与实践基础。

     

    Abstract: As global climate change intensifies, drought has emerged as one of the most severe abiotic stresses that restrict plant growth and threaten food security and ecological health. The colonization and functions of rhizosphere microorganisms play a pivotal role in promoting plant growth and enhancing crop drought resistance, their symbiotic relationships with plants can assist plants in combating drought through various mechanisms, presenting broad application prospects. Therefore, this paper systematically reviews the impacts of drought stress on plant rhizosphere microbial communities, analyzes its direct and indirect regulatory effects on microbial functions, and delves into the regulatory networks of plant drought resistance systems mediated by rhizosphere microorganisms, as well as the mechanisms of plant-microbe interactions and ecological adaptation strategies under combined stresses. Finally, addressing the current research limitations, such as insufficient understanding of the mechanisms underlying the stable colonization of microbial communities in field conditions, a lack of means to identify and regulate key root exudate signals, and the complexity of microbial functional responses under combined stresses, this paper further proposes specific research directions for the future. These include focusing on the artificial construction of stable functional microbial consortia, analyzing key signaling molecules in root exudates, and exploring the formation mechanisms of soil microbial “drought memory”. The aim is to provide a scientific basis for exploring new approaches to enhance plant drought resistance and lay a theoretical and practical foundation for sustainable agricultural development.

     

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