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丁香假单胞菌III型效应蛋白AvrRpm1通过激活拟南芥核苷酸结合富含亮氨酸重复序列蛋白RPS2诱导显著的防御反应。

The Pseudomonas syringae type III effector AvrRpm1 induces significant defenses by activating the Arabidopsis nucleotide-binding leucine-rich repeat protein RPS2.

作者信息

Kim Min Gab, Geng Xueqing, Lee Sang Yeol, Mackey David

机构信息

Department of Horticulture and Crop Science, Rm. 306C Kottman Hall, The Ohio State University, Columbus, OH 43210, USA.

出版信息

Plant J. 2009 Feb;57(4):645-53. doi: 10.1111/j.1365-313X.2008.03716.x. Epub 2008 Oct 15.

Abstract

Plant disease resistance (R) proteins recognize potential pathogens expressing corresponding avirulence (Avr) proteins through 'gene-for-gene' interactions. RPM1 is an Arabidopsis R-protein that triggers a robust defense response upon recognizing the Pseudomonas syringae effector AvrRpm1. Avr-proteins of phytopathogenic bacteria include type III effector proteins that are often capable of enhancing virulence when not recognized by an R-protein. In rpm1 plants, AvrRpm1 suppresses basal defenses induced by microbe-associated molecular patterns. Here, we show that expression of AvrRpm1 in rpm1 plants induced PR-1, a classical defense marker, and symptoms including chlorosis and necrosis. PR-1 expression and symptoms were reduced in plants with mutations in defense signaling genes (pad4, sid2, npr1, rar1, and ndr1) and were strongly reduced in rpm1 rps2 plants, indicating that AvrRpm1 elicits defense signaling through the Arabidopsis R-protein, RPS2. Bacteria expressing AvrRpm1 grew more on rpm1 rps2 than on rpm1 plants. Thus, independent of its classical 'gene-for-gene' activation of RPM1, AvrRpm1 also induces functionally relevant defenses that are dependent on RPS2. Finally, AvrRpm1 suppressed host defenses and promoted the growth of type III secretion mutant bacteria equally well in rps2 and RPS2 plants, indicating that virulence activity of over-expressed AvrRpm1 predominates over defenses induced by weak activation of RPS2.

摘要

植物抗病(R)蛋白通过“基因对基因”的相互作用识别表达相应无毒(Avr)蛋白的潜在病原体。RPM1是一种拟南芥R蛋白,在识别丁香假单胞菌效应子AvrRpm1后触发强烈的防御反应。植物致病细菌的Avr蛋白包括III型效应子蛋白,当不被R蛋白识别时,这些蛋白通常能够增强毒力。在rpm1植物中,AvrRpm1抑制由微生物相关分子模式诱导的基础防御。在此,我们表明在rpm1植物中表达AvrRpm1会诱导PR-1(一种经典的防御标记物)以及包括黄化和坏死在内的症状。在防御信号基因(pad4、sid2、npr1、rar1和ndr1)发生突变的植物中,PR-1的表达和症状有所减轻,而在rpm1 rps2植物中则大幅减轻,这表明AvrRpm1通过拟南芥R蛋白RPS2引发防御信号。表达AvrRpm1的细菌在rpm1 rps2植物上比在rpm1植物上生长得更多。因此,AvrRpm1除了其对RPM1的经典“基因对基因”激活作用外,还诱导依赖于RPS2的功能相关防御。最后,AvrRpm1在rps2和RPS2植物中同样有效地抑制宿主防御并促进III型分泌突变细菌的生长,这表明过表达的AvrRpm1的毒力活性超过了由RPS2弱激活诱导的防御。

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