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A Comprehensive Analysis of Genes Encoding Small Secreted Proteins Identifies Candidate Effectors in Melampsora larici-populina (Poplar Leaf Rust)

机译:编码小分泌蛋白质的基因综合分析鉴定了Melampsora Larici-populina(杨树叶锈)的候选效应

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摘要

The obligate biotrophic rust fungus Melampsora larici-populina is the most devastating and widespread pathogen of poplars. Studies over recent years have identified various small secreted proteins (SSP) from plant biotrophic filamentous pathogens and have highlighted their role as effectors in host-pathogen interactions. The recent analysis of the M. larici-populina genome sequence has revealed the presence of 1,184 SSP-encoding genes in this rust fungus. In the present study, the expression and evolutionary dynamics of these SSP were investigated to pinpoint the arsenal of putative effectors that could be involved in the interaction between the rust fungus and poplar. Similarity with effectors previously described in Melampsora spp., richness in cysteines, and organization in large families were extensively detailed and discussed. Positive selection analyses conducted over clusters of paralogous genes revealed fast-evolving candidate effectors. Transcript profiling of selected M. laricipopulina SSP showed a timely coordinated expression during leaf infection, and the accumulation of four candidate effectors in distinct rust infection structures was demonstrated by immunolocalization. This integrated and multifaceted approach helps to prioritize candidate effector genes for functional studies
机译:Infriage Biotrophic Rust Gugus Melampsora larici-populina是杨树最具破坏性和广泛的病原体。近年来的研究已经确定了来自植物生物养殖丝状病原体的各种小分泌蛋白(SSP),并强调了它们作为宿主病原体相互作用的效果的作用。最近对M. larici-populina基因组序列的分析表明,该防锈真菌中存在1,184个SSP编码基因。在本研究中,研究了这些SSP的表达和进化动态,以确定调用效应器的武器,这些效果可以参与防锈真菌和杨树之间的相互作用。 Melampsora SPP中先前描述的效果的相似性,囊尾中的丰富性,以及大家庭中的组织被广泛详细详述和讨论。对旁阻酰基基因簇进行的阳性选择分析显示出快速不断发展的候选效果。所选M. laricipopulina ssp的转录物分析显示在叶感染期间及时的协调表达,并通过免疫循环化证明了不同的生锈感染结构中的四种候选效应的积累。这种集成和多方面的方法有助于优先考虑功能研究的候选效应基因

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