根系代谢交叉对话:从植物-土壤-微生物入手实现农业可持续性:当前进展与展望。

Rhizosphere metabolic cross-talk from plant-soil-microbe tapping into agricultural sustainability: Current advance and perspectives.

机构信息

Biogas Institute of Ministry of Agriculture and Rural Affairs, Chinese Academy of Agricultural Sciences, 610041, Chengdu, China.

Biogas Institute of Ministry of Agriculture and Rural Affairs, Chinese Academy of Agricultural Sciences, 610041, Chengdu, China.

出版信息

Plant Physiol Biochem. 2024 May;210:108619. doi: 10.1016/j.plaphy.2024.108619. Epub 2024 Apr 9.

Abstract

Rhizosphere interactions from plant-soil-microbiome occur dynamically all the time in the "black microzone" underground, where we can't see intuitively. Rhizosphere metabolites including root exudates and microbial metabolites act as various chemical signalings involving in rhizosphere interactions, and play vital roles on plant growth, development, disease suppression and resistance to stress conditions as well as proper soil health. Although rhizosphere metabolites are a mixture from plant roots and soil microbes, they often are discussed alone. As a rapid appearance of various omics platforms and analytical methods, it offers possibilities and opportunities for exploring rhizosphere interactions in unprecedented breadth and depth. However, our comprehensive understanding about the fine-tuning mechanisms of rhizosphere interactions mediated by these chemical compounds still remain clear. Thus, this review summarizes recent advances systemically including the features of rhizosphere metabolites and their effects on rhizosphere ecosystem, and looks forward to the future research perspectives, which contributes to facilitating better understanding of biochemical communications belowground and helping identify novel rhizosphere metabolites. We also address challenges for promoting the understanding about the roles of rhizosphere metabolites in different environmental stresses.

摘要

根际相互作用是植物-土壤-微生物之间动态发生的,发生在我们无法直观看到的“黑色微区”地下。根际代谢物包括根系分泌物和微生物代谢物,它们作为各种化学信号参与根际相互作用,对植物的生长、发育、抑制疾病和抵抗胁迫条件以及保持土壤健康起着至关重要的作用。尽管根际代谢物是植物根系和土壤微生物的混合物,但它们通常是单独讨论的。随着各种组学平台和分析方法的快速出现,为以前所未有的广度和深度探索根际相互作用提供了可能性和机会。然而,我们对这些化合物介导的根际相互作用的精细调控机制的全面理解仍然不清楚。因此,本综述系统地总结了最近的进展,包括根际代谢物的特征及其对根际生态系统的影响,并展望了未来的研究方向,这有助于促进对地下生物化学通讯的更好理解,并有助于识别新的根际代谢物。我们还解决了促进对根际代谢物在不同环境胁迫下作用的理解的挑战。

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