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根际细菌诱导植物生长促进的代谢特征。

Metabolic signatures of rhizobacteria-induced plant growth promotion.

机构信息

Department of Microbial Ecology, Netherlands Institute of Ecology NIOO-KNAW, Wageningen, The Netherlands.

Institute of Biology, Leiden University, Leiden, The Netherlands.

出版信息

Plant Cell Environ. 2022 Oct;45(10):3086-3099. doi: 10.1111/pce.14385. Epub 2022 Jul 4.

Abstract

Various root-colonizing bacterial species can promote plant growth and trigger systemic resistance against aboveground leaf pathogens and herbivore insects. To date, the underlying metabolic signatures of these rhizobacteria-induced plant phenotypes are poorly understood. To identify core metabolic pathways that are targeted by growth-promoting rhizobacteria, we used combinations of three plant species and three rhizobacterial species and interrogated plant shoot chemistry by untargeted metabolomics. A substantial part (50%-64%) of the metabolites detected in plant shoot tissue was differentially affected by the rhizobacteria. Among others, the phenylpropanoid pathway was targeted by the rhizobacteria in each of the three plant species. Differential regulation of the various branches of the phenylpropanoid pathways showed an association with either plant growth promotion or growth reduction. Overall, suppression of flavonoid biosynthesis was associated with growth promotion, while growth reduction showed elevated levels of flavonoids. Subsequent assays with 12 Arabidopsis flavonoid biosynthetic mutants revealed that the proanthocyanidin branch plays an essential role in rhizobacteria-mediated growth promotion. Our study also showed that a number of pharmaceutically and nutritionally relevant metabolites in the plant shoot were significantly increased by rhizobacterial treatment, providing new avenues to use rhizobacteria to tilt plant metabolism towards the biosynthesis of valuable natural plant products.

摘要

各种根际定殖细菌物种可以促进植物生长,并引发针对地上叶片病原体和草食性昆虫的系统抗性。迄今为止,这些根际细菌诱导的植物表型的潜在代谢特征还了解甚少。为了确定被促生长根际细菌靶向的核心代谢途径,我们使用了三种植物物种和三种根际细菌的组合,并通过非靶向代谢组学方法检测了植物地上部分的化学物质。在植物地上部分组织中检测到的代谢物中,有相当一部分(50%-64%)受到根际细菌的差异影响。其中,苯丙烷途径在三种植物物种中的每种植物中都受到根际细菌的靶向作用。苯丙烷途径的各个分支的差异调控与植物生长促进或生长抑制有关。总的来说,类黄酮生物合成的抑制与生长促进有关,而生长抑制则表现出类黄酮水平的升高。随后对 12 种拟南芥类黄酮生物合成突变体进行的测定表明,原花青素分支在根际细菌介导的生长促进中起着至关重要的作用。我们的研究还表明,植物地上部分的许多具有药用和营养相关的代谢物的含量因根际细菌处理而显著增加,这为利用根际细菌使植物代谢向有价值的天然植物产物的生物合成倾斜提供了新途径。

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