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首页> 外文期刊>Plant signaling & behavior >Lessons learned from type III effector transgenic plants.
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Lessons learned from type III effector transgenic plants.

机译:从III型效应转基因植物中学到的经验教训。

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The Gram negative bacterial phytopathogen Pseudomonas syringae employs a molecular syringe termed the Type III secretion system (TTSS) to deliver an array of Type III secreted effector (TTSE) proteins into plant cells. The major function ascribed to type III effectors of P. syringae is their ability to suppress plant immunity. Because individual pathovars of P. syringae can possess over 30 TTSEs, functional redundancy can provide a hurdle to ascribing functions by TTSE-deletion or -overexpression in such TTSE-rich backgrounds. Approaches to overcome functional redundancy have included the deletion of multiple TTSEs from individual pathovars as well as engineering the plant commensal P. fluorescens strain to express the P. syringae TTSS and deliver P. syringae TTSEs. As we describe here, transgenic Arabidopsis plants expressing individual TTSEs have also be used to overcome problems of functional redundancy and provide invaluable insights into TTSE virulence functions.Digital Object Identifier http://dx.doi.org/10.4161/psb.5.6.11703
机译:革兰氏阴性细菌性植物病原体 Pseudomonas syringae 使用名为III型分泌系统(TTSS)的分子注射器将一系列III型分泌的效应子(TTSE)蛋白递送到植物细胞中。主要功能归因于 P的III型效应子。丁香科植物是它们抑制植物免疫力的能力。因为 P丁香科植物可以拥有超过30种TTSE,在这种TTSE丰富的背景下,功能冗余可以为通过TTSE缺失或过表达来提升功能提供障碍。克服功能冗余的方法包括从单个病原体中删除多个TTSE,以及设计植物共生P。荧光素菌株表达 P。丁香TTSS并递送 P。丁香TTTTs。正如我们在这里描述的,表达单个TTSE的转基因拟南芥植物也已用于克服功能冗余的问题并提供有关TTSE毒力功能的宝贵见解。数字对象标识符http://dx.doi.org/ 10.4161 / psb.5.6.11703

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