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介导植物-微生物相互作用的植物信号代谢物的功能和生物合成。

Functions and biosynthesis of plant signaling metabolites mediating plant-microbe interactions.

机构信息

Key Laboratory of Molecular Design for Plant Cell Factory of Guangdong Higher Education Institutes, SUSTech-PKU Institute of Plant and Food Science, Department of Biology, School of Life Sciences, Southern University of Science and Technology, Shenzhen, Guangdong 518055, China.

出版信息

Nat Prod Rep. 2022 Jul 20;39(7):1393-1422. doi: 10.1039/d2np00010e.

Abstract

Covering: 2015-2022Plants and microbes have coevolved since their appearance, and their interactions, to some extent, define plant health. A reasonable fraction of small molecules plants produced are involved in mediating plant-microbe interactions, yet their functions and biosynthesis remain fragmented. The identification of these compounds and their biosynthetic genes will open up avenues for plant fitness improvement by manipulating metabolite-mediated plant-microbe interactions. Herein, we integrate the current knowledge on their chemical structures, bioactivities, and biosynthesis with the view of providing a high-level overview on their biosynthetic origins and evolutionary trajectory, and pinpointing the yet unknown and key enzymatic steps in diverse biosynthetic pathways. We further discuss the theoretical basis and prospects for directing plant signaling metabolite biosynthesis for microbe-aided plant health improvement in the future.

摘要

涵盖范围

2015-2022 年

自出现以来,植物和微生物就共同进化,它们的相互作用在一定程度上决定了植物的健康。植物产生的小分子中有相当一部分参与介导植物-微生物相互作用,但它们的功能和生物合成仍然零散。这些化合物及其生物合成基因的鉴定将为通过操纵代谢物介导的植物-微生物相互作用来提高植物适应性开辟途径。在此,我们综合了目前关于它们的化学结构、生物活性和生物合成的知识,以期提供它们的生物合成起源和进化轨迹的高层次概述,并指出不同生物合成途径中尚未确定的关键酶步骤。我们还进一步讨论了在未来指导植物信号代谢物生物合成以实现微生物辅助植物健康改善的理论基础和前景。

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