Advances and perspective in research on plant-soil-microbe interactions mediated by root exudates
根系分泌物是植物与土壤进行物质交换和信息传递的重要载体物质,是植物响应外界胁迫的重要途径,是构成植物不同根际微生态特征的关键因素,也是根际对话的主要调控者。根系分泌物对于生物地球化学循环、根际生态过程调控、植物生长发育等均具有重要功能,尤其是在调控根际微生态系统结构与功能方而发挥着重要作用,调节着植物-植物、植物-微生物、微生物-微生物间复杂的互作过程。植物化感作用、作物间套作、生物修复、生物入侵等都是现代农业生念学的研究热点,它们都涉及十分复杂的根际生物学过程。越来越多的研究表明,不论是同种植物还是不同种植物之间相互作用的正效应或是负效应,都是由根系分泌物介导下的植物与特异微生物共同作用的结果。近年来,随着现代生物技术的不断完善,有关土壤这一“黑箱”的研究方法与技术取得了长足的进步,尤其是各种宏组学技术(meta—omics technology),如环境宏基因组学、宏转录组学、宏蛋白组学、宏代谢组学等的问世,极大地推进了人们对土壤生物世界的认知,尤其是对植物地下部生物多样性和功能多样性的深层次剖析,根际生物学特性的研究成果被广泛运用于指导生产实践。深入系统地研究根系分泌物介导下的植物土壤-微尘物的相互作用方式与机理。对揭示土壤微生态系统功能、定向调控植物根际生物学过程、促进农业生产可持续发展等具有重要的指导意义。该文综述了根系分泌物的概念、组成及功能,论述了根系分泌物介导下植物与细菌、真菌、土壤动物群之间的密切关系,总结了探索根际生物学特性的各种研究技术及其优缺点,并对该领域未来的研究方向进行了展望。
- Research Article
1
- 10.1186/s40168-025-02137-3
- Jul 5, 2025
- Microbiome
BackgroundKey members of the rhizomicrobiome, plant root exudates, and pathogen inhibition are important for the immune system functions of disease-suppressive soils, and a “cry for help” mechanism is proposed to describe this immune response process. However, there is still a gap in the understanding of rhizomicrobiome functional genes that are regulated by plants; to date, most studies have shown that the “cry for help” process is mediated by root exudates. The cross-talk between eukaryotes and prokaryotes through microRNAs (miRNAs) represents a new route for research on host and microbe interactions.ResultsAfter six generations of plantings, the disease index of the tomato plants significantly decreased compared with that of the first-generation plants (P < 0.05) in both the organic fertilizer (OF) and chemical fertilizer (CF) groups, and the effectiveness of OF in reducing the disease index of the tomato plants was obviously greater than that of CF. Furthermore, tomato miRNAs were identified in the rhizosphere soil, and exosome-like extracellular vesicles were found to be their potential carriers. Subsequent experiments confirmed that the tomato roots secreted sly-miR159 and sly-miR319c-3p, which were both crucial miRNAs that inhibited the proliferation of Ralstonia solanacearum and that sly-miR159 promoted the growth of beneficial bacteria belonging to the Streptomyces and Bacillus genera. The active functional components of organic fertilizer included soluble macromolecular compounds (nonmicrobial components) and microbial components. Among these, the nonmicrobial components induced the roots of tomato plants to secrete key microRNAs (sly-miR159 and sly-miR319c-3p), whereas the microbial components provided beneficial microbial communities for the rhizosphere of plants, jointly promoting the inhibition of Ralstonia solanacearum.ConclusionsIn this study, the role of organic manure in promoting the establishment of disease-suppressive soil for combating bacterial wilt disease in tomato plants was comprehensively investigated. Moreover, this study provides a new perspective for research on rhizosphere immunity; that is, the presence of plant-derived exosomal miRNAs in the rhizosphere could serve as a new way to explain interactions between plants and the rhizosphere microbial community.5Yvf1NFyJLZYVm7A3tW4cQVideo
- Research Article
37
- 10.1016/j.flora.2012.06.011
- Jul 1, 2012
- Flora - Morphology, Distribution, Functional Ecology of Plants
What are the traits of Phelipanche ramosa (L.) Pomel that contribute to the success of its biological cycle on its host Brassica napus L.?
- Research Article
19
- 10.1016/j.plaphy.2024.108619
- Apr 9, 2024
- Plant Physiology and Biochemistry
Rhizosphere metabolic cross-talk from plant-soil-microbe tapping into agricultural sustainability: Current advance and perspectives
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