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细菌群体感应在促进植物生长中的作用。

Role of bacterial quorum sensing in plant growth promotion.

作者信息

Singh Aparna Anil, Singh Anil Kumar

机构信息

Department of Microbiology, Tolani College of Arts and Science, Adipur, Kachchh, 370205, Gujarat, India.

Department of Microbiology, Government Science College, Vankal, Surat, 394 430, Gujarat, India.

出版信息

World J Microbiol Biotechnol. 2024 Dec 26;41(1):18. doi: 10.1007/s11274-024-04232-3.

Abstract

Quorum sensing (QS) also known as bacterial cell-cell communication or bacterial crosstalk is a phenomenon regulating various bacterial traits that can affect plant growth and defence. Similarities in the structure of root exudates and bacterial signalling molecules have tremendous implications governing the plant heath. The rhizosphere ecosystem being an excellent example of plant-microbe and microbe-microbe interactions harbours a variety of microorganisms exhibiting quorum sensing. Phytochemicals present in plant root exudates and QS signal molecules as well as volatile organic compounds (VOCs) produced by microorganisms work in coordination to establish intra- and inter-species communications. Interestingly, a number of plant growth promoting rhziobacterial (PGPR) activities like effective/enhanced root colonization, nutrient uptake, nodulation, nitrogen fixation, production of plant hormones, antimicrobial compounds and induction of plant defences can be attributed directly or indirectly to their quorum sensing and quenching abilities. Although not completely understood, root development, stress tolerance and defence against phytopathogens are some of the implications of such abilities which might prove beneficial for sustainable agriculture. Deciphering the mechanism of these interactions would be instrumental in improving crop health. Plant beneficial microorganisms employing QS and QS inhibition (QSI) strategies have been discussed in this review.

摘要

群体感应(QS)也被称为细菌细胞间通讯或细菌串扰,是一种调节各种细菌特性的现象,这些特性会影响植物的生长和防御。根系分泌物与细菌信号分子结构的相似性对植物健康有着重大影响。根际生态系统是植物 - 微生物以及微生物 - 微生物相互作用的一个典型例子,其中存在多种表现出群体感应的微生物。植物根系分泌物中存在的植物化学物质、群体感应信号分子以及微生物产生的挥发性有机化合物(VOCs)协同作用,以建立种内和种间通讯。有趣的是,许多促进植物生长的根际细菌(PGPR)活动,如有效的/增强的根系定殖、养分吸收、结瘤、固氮、植物激素的产生、抗菌化合物的产生以及植物防御的诱导,都可以直接或间接地归因于它们的群体感应和淬灭能力。尽管尚未完全了解,但根系发育、胁迫耐受性以及对植物病原体的防御是这些能力的一些影响,这可能对可持续农业有益。解读这些相互作用的机制将有助于改善作物健康。本综述讨论了采用群体感应和群体感应抑制(QSI)策略的植物有益微生物。

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