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有益根际细菌类产碱假单胞菌WCS417诱导植物糖转运发生重大转录变化。

Beneficial rhizobacteria Pseudomonas simiae WCS417 induce major transcriptional changes in plant sugar transport.

作者信息

Desrut Antoine, Moumen Bouziane, Thibault Florence, Le Hir Rozenn, Coutos-Thévenot Pierre, Vriet Cécile

机构信息

Laboratoire Ecologie et Biologie des Interactions, UMR CNRS 7267, Université de Poitiers, Poitiers Cedex, France.

Institut Jean-Pierre Bourgin, INRAE, AgroParisTech, Université Paris-Saclay, Versailles, France.

出版信息

J Exp Bot. 2020 Dec 31;71(22):7301-7315. doi: 10.1093/jxb/eraa396.

Abstract

Plants live in close relationships with complex populations of microorganisms, including rhizobacterial species commonly referred to as plant growth-promoting rhizobacteria (PGPR). PGPR are able to improve plant productivity, but the molecular mechanisms involved in this process remain largely unknown. Using an in vitro experimental system, the model plant Arabidopsis thaliana, and the well-characterized PGPR strain Pseudomonas simiae WCS417r (PsWCS417r), we carried out a comprehensive set of phenotypic and gene expression analyses. Our results show that PsWCS417r induces major transcriptional changes in sugar transport and in other key biological processes linked to plant growth, development, and defense. Notably, we identified a set of 13 genes of the SWEET and ERD6-like sugar transporter gene families whose expression is up- or down-regulated in response to seedling root inoculation with the PGPR or exposure to their volatile compounds. Using a reverse genetic approach, we demonstrate that SWEET11 and SWEET12 are functionally involved in the interaction and its plant growth-promoting effects, possibly by controlling the amount of sugar transported from the shoot to the root and to the PGPR. Altogether, our study reveals that PGPR-induced beneficial effects on plant growth and development are associated with changes in plant sugar transport.

摘要

植物与复杂的微生物群体存在密切关系,其中包括通常被称为植物促生根际细菌(PGPR)的根际细菌物种。PGPR能够提高植物生产力,但这一过程中涉及的分子机制仍 largely未知。我们使用体外实验系统、模式植物拟南芥以及特征明确的PGPR菌株恶臭假单胞菌WCS417r(PsWCS417r),进行了一系列全面的表型和基因表达分析。我们的结果表明,PsWCS417r诱导了糖转运以及与植物生长、发育和防御相关的其他关键生物学过程中的主要转录变化。值得注意的是,我们鉴定出了一组13个SWEET和类ERD6糖转运蛋白基因家族的基因,其表达在幼苗根系接种PGPR或暴露于其挥发性化合物后会上调或下调。通过反向遗传学方法,我们证明SWEET11和SWEET12在这种相互作用及其植物促生效应中发挥功能作用,可能是通过控制从地上部向根部以及向PGPR转运的糖量来实现的。总之,我们的研究表明,PGPR对植物生长和发育的有益影响与植物糖转运的变化有关。

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