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Functional Analysis of PsAvr3c Effector Family From Phytophthora Provides Probes to Dissect SKRP Mediated Plant Susceptibility

机译:疫霉菌PsAvr3c效应子家族的功能分析提供了解析SKRP介导的植物药敏性的探针

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摘要

PsAvr3c is an effector identified from oomycete plant pathogen Phytophthora sojae that causes soybean root and stem rot disease. Earlier studies have demonstrated that PsAvr3c binds to a novel soybean spliceosomal complex protein, GmSKRP, to reprogram the splicing of hundreds of pre-mRNAs and consequently subvert host immunity. PsAvr3c family genes are present in some other Phytophthora species, but their function remains unknown. Here, we characterized the functions of PsAvh27b (PsAvr3c paralog from P. sojae), ProbiAvh89 and PparvAvh214 (orthologs from P. cinnamomi var. robiniae and Phytophthora parvispora, respectively). The study reveals that both PsAvh27b and ProbiAvh89 interact with GmSKRPs in vitro, and stabilize GmSKRP1 in vivo. However, PparvAvh214 cannot interact with GmSKRPs proteins. The qRT-PCR result illustrates that the alternative splicing of pre-mRNAs of several soybean defense-related genes are altered in PsAvh27b and ProbiAvh89 when over-expressed on soybean hairy roots. Moreover, PsAvr3c family members display differences in promoting Phytophthora infection in a SKRP-dependent manner. Overall, this study highlights that the effector-mediated host pre-mRNA alternative splicing occurs in other pathosystems, thus providing new probes to further dissect SKRP-mediated plant susceptibility.
机译:PsAvr3c是一种从卵菌植物病原体大豆疫霉菌中鉴定出的效应物,其引起大豆根和茎腐病。较早的研究表明,PsAvr3c与新型大豆剪接体复合蛋白GmSKRP结合,可以重新编程数百种前mRNA的剪接,从而破坏宿主免疫力。 PsAvr3c家族基因存在于其他疫霉菌种中,但其功能仍然未知。在这里,我们表征了PsAvh27b(来自大豆疫霉菌的PsAvr3c旁系同源物),ProbiAvh89和PparvAvh214(分别来自肉桂对虾和疫霉属的直向同源物)的功能。该研究表明,PsAvh27b和ProbiAvh89在体外均与GmSKRPs相互作用,并在体内稳定GmSKRP1。但是,PparvAvh214无法与GmSKRPs蛋白相互作用。 qRT-PCR结果表明,在大豆毛状根上过表达时,PsAvh27b和ProbiAvh89中几种大豆防御相关基因的前mRNA的可变剪接发生了改变。此外,PsAvr3c家庭成员显示出以依赖SKRP的方式促进疫霉感染的差异。总的来说,这项研究强调效应子介导的宿主前mRNA替代剪接发生在其他病理系统中,从而为进一步剖析SKRP介导的植物敏感性提供了新的探针。

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