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Candidate Effector Pst_8713 Impairs the Plant Immunity and Contributes to Virulence of Puccinia striiformis f. sp. tritici

机译:候选效应子Pst_8713损害植物免疫力并促进条锈菌的致病力。 sp。小麦

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摘要

Puccinia striiformis f. sp. tritici (Pst), the causal agent of stripe rust, is an obligate biotrophic pathogen responsible for severe wheat disease epidemics worldwide. Pst and other rust fungi are acknowledged to deliver many effector proteins to the host, but little is known about the effectors’ functions. Here, we report a candidate effector Pst_8713 isolated based on the genome data of CY32 and the expression of Pst_8713 is highly induced during the early infection stage. The Pst_8713 gene shows a low level of intra-species polymorphism. It has a functional N-terminal signal peptide and its product was found in the host cytoplasm and nucleus. Co-infiltrations in Nicotiana benthamiana demonsrated that Pst_8713 was capable of suppressing cell death triggered by mouse pro-apoptotic protein-BAX or Phytophthora infestans PAMP-INF1. Overexpression of Pst_8713 in plants suppressed pattern-triggered immunity (PTI) -associated callose deposition and expression of PTI-associated marker genes and promoted bacterial growth in planta. Effector-triggered immunity (ETI) induced by an avirulent Pst isolate was weakened when we overexpressed Pst_8713 in wheat leaves which accompanied by reduction of reactive oxygen species (ROS) accumulation and hypersensitive response (HR). In addition, the host induced gene silencing (HIGS) experiment showed that knockdown of Pst_8713 weakened the virulence of Pst by producing fewer uredinia. These results indicated that candidate effector Pst_8713 is involved in plant defense suppression and contributes to enhancing the Pst virulence.
机译:小麦条锈菌f。 sp。条锈病的病原体小麦(Pst)是专性的生物营养病原体,在世界范围内引起严重的小麦疾病流行。人们公认Pst和其他防锈真菌可以将许多效应蛋白传递给宿主,但对于效应子的功能知之甚少。在这里,我们报告基于CY32的基因组数据分离的候选效应子Pst_8713,并且在感染早期就高度诱导了Pst_8713的表达。 Pst_8713基因显示出低水平的物种内多态性。它具有功能性的N端信号肽,其产物存在于宿主细胞质和细胞核中。在本氏烟草中的共浸润使Pst_8713能够抑制小鼠促凋亡蛋白-BAX或疫霉疫霉PAMP-INF1触发的细胞死亡。 Pst_8713在植物中的过表达抑制了模式触发的免疫(PTI)相关的愈伤组织沉积和PTI相关的标记基因的表达,并促进了植物中细菌的生长。当我们在小麦叶片中过表达Pst_8713时,无毒的Pst分离物诱导的效应触发免疫(ETI)减弱,同时伴随着活性氧(ROS)积累和超敏反应(HR)的减少。此外,宿主诱导基因沉默(HIGS)实验表明,Pst_8713的敲低通过减少尿素生成而减弱了Pst的毒性。这些结果表明候选效应子Pst_8713参与植物防御抑制并且有助于增强Pst毒力。

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