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鞭毛介导内生能力,而不是作为 MAMPS 在水稻-丛枝菌根真菌(Azoarcus sp. strain BH72)相互作用中发挥作用。

Flagella mediate endophytic competence rather than act as MAMPS in rice-Azoarcus sp. strain BH72 interactions.

机构信息

Department of Microbe-Plant Interactions, University of Bremen, Bremen, Germany.

出版信息

Mol Plant Microbe Interact. 2012 Feb;25(2):191-9. doi: 10.1094/MPMI-05-11-0138.

Abstract

Azoarcus sp. strain BH72 is an endophytic betaproteobacterium able to colonize rice roots without induction of visible disease symptoms. BH72 possesses one polar flagellum. The genome harbors three copies of putative fliC genes, generally encoding the major structural protein flagellin. It is not clear whether, in endophytic interactions, flagella mediate endophytic competence or act as MAMPs (microbe-associated molecular patterns) inducing plant defense responses. Therefore, possible functions of the three FliC proteins were investigated. Only fliC3 was found to be highly expressed in pure culture and in association with rice roots and to be required for bacterial motility, suggesting that it encodes the major flagellin. Endophytic colonization of rice roots was significantly reduced in the in-frame deletion mutant, while the establishment of microcolonies on the root surface was not affected. Moreover, an elicitation of defense responses related to FliC3 was not observed. In conclusion, our data support the hypothesis that FliC3 does not play a major role as a MAMP but is required for endophytic colonization in the Azoarcus-rice interaction, most likely for spreading inside the plant.

摘要

Azotobacter sp. 菌株 BH72 是一种能够定殖水稻根而不引起明显疾病症状的内生β变形菌。BH72 拥有一个极生鞭毛。基因组中含有三个推定的 fliC 基因拷贝,通常编码主要结构蛋白鞭毛蛋白。目前尚不清楚在内生相互作用中,鞭毛是否介导内生能力或作为 MAMPs(微生物相关分子模式)诱导植物防御反应。因此,研究了三个 FliC 蛋白的可能功能。仅发现 fliC3 在纯培养和与水稻根共生时高度表达,并与细菌的运动性有关,表明它编码主要的鞭毛蛋白。在无义突变体中,内生定殖于水稻根的能力显著降低,而在根表面形成微菌落的能力不受影响。此外,没有观察到与 FliC3 相关的防御反应的激发。总之,我们的数据支持这样的假设,即 FliC3 不是作为 MAMP 的主要作用物,但在 Azotobacter-rice 相互作用中内生定殖是必需的,很可能是用于在植物体内扩散。

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