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细菌-真菌宏蛋白质组学分析揭示了生菜根际中一种有趣的多组分相互作用。

A bacterial-fungal metaproteomic analysis enlightens an intriguing multicomponent interaction in the rhizosphere of Lactuca sativa.

机构信息

Agroinnova-Centre of Competence for the Innovation in the Agro-Environmental Field, University of Torino, Italy.

出版信息

J Proteome Res. 2012 Apr 6;11(4):2061-77. doi: 10.1021/pr201204v. Epub 2012 Mar 13.

DOI:10.1021/pr201204v
PMID:22360353
Abstract

Fusarium oxysporum MSA 35 [wild-type (WT) strain] is an antagonistic isolate that protects plants against pathogenic Fusaria. This strain lives in association with ectosymbiotic bacteria. When cured of the prokaryotic symbionts [cured (CU) form], the fungus is pathogenic, causing wilt symptoms similar to those of F. oxysporum f.sp. lactucae. The aim of this study was to understand if and how the host plant Lactuca sativa contributes to the expression of the antagonistic/pathogenic behaviors of MSA 35 strains. A time-course comparative analysis of the proteomic profiles of WT and CU strains was performed. Fungal proteins expressed during the early stages of plant-fungus interaction were involved in stress defense, energy metabolism, and virulence and were equally induced in both strains. In the late phase of the interkingdom interaction, only CU strain continued the production of virulence- and energy-related proteins. The expression analysis of lettuce genes coding for proteins involved in resistance-related processes corroborated proteomic data by showing that, at the beginning of the interaction, both fungi are perceived by the plant as pathogen. On the contrary, after 8 days, only the CU strain is able to induce plant gene expression. For the first time, it was demonstrated that an antagonistic F. oxysporum behaves initially as pathogen, showing an interesting similarity with other beneficial organisms such as mychorrizae.

摘要

尖孢镰刀菌 MSA35(野生型[WT]菌株)是一种拮抗分离物,可保护植物免受致病镰刀菌的侵害。该菌株与外共生细菌共生。当原核共生体被治愈(CU 形式)时,真菌是致病的,引起类似于尖孢镰刀菌 f.sp. lactucae 的萎蔫症状。本研究旨在了解宿主植物菊苣是否以及如何影响 MSA35 菌株拮抗/致病行为的表达。对 WT 和 CU 菌株的蛋白质组图谱进行了时间进程比较分析。在植物-真菌相互作用的早期阶段表达的真菌蛋白参与应激防御、能量代谢和毒力,并且在两种菌株中均被同等诱导。在种间相互作用的后期阶段,只有 CU 菌株继续产生与毒力和能量相关的蛋白质。参与抗性相关过程的生菜基因的表达分析通过显示在相互作用开始时,两种真菌都被植物视为病原体,从而证实了蛋白质组数据。相反,8 天后,只有 CU 菌株能够诱导植物基因表达。首次证明,最初表现为病原体的拮抗菌尖孢镰刀菌表现出与其他有益生物(如菌根)相似的有趣相似性。

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