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mRNA-Seq Analysis of the Pseudoperonospora cubensis Transcriptome During Cucumber (Cucumis sativus L.) Infection

机译:黄瓜(Cucumis sativus L.)感染过程中假单胞菌立方体转录组的mRNA-Seq分析

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摘要

Pseudoperonospora cubensis, an oomycete, is the causal agent of cucurbit downy mildew, and is responsible for significant losses on cucurbit crops worldwide. While other oomycete plant pathogens have been extensively studied at the molecular level, Ps. cubensis and the molecular basis of its interaction with cucurbit hosts has not been well examined. Here, we present the first large-scale global gene expression analysis of Ps. cubensis infection of a susceptible Cucumis sativus cultivar, ‘Vlaspik’, and identification of genes with putative roles in infection, growth, and pathogenicity. Using high throughput whole transcriptome sequencing, we captured differential expression of 2383 Ps. cubensis genes in sporangia and at 1, 2, 3, 4, 6, and 8 days post-inoculation (dpi). Additionally, comparison of Ps. cubensis expression profiles with expression profiles from an infection time course of the oomycete pathogen Phytophthora infestans on Solanum tuberosum revealed similarities in expression patterns of 1,576–6,806 orthologous genes suggesting a substantial degree of overlap in molecular events in virulence between the biotrophic Ps. cubensis and the hemi-biotrophic P. infestans. Co-expression analyses identified distinct modules of Ps. cubensis genes that were representative of early, intermediate, and late infection stages. Collectively, these expression data have advanced our understanding of key molecular and genetic events in the virulence of Ps. cubensis and thus, provides a foundation for identifying mechanism(s) by which to engineer or effect resistance in the host.
机译:假单胞菌立方菌是卵菌,是葫芦丝霜霉病的病原体,对全世界葫芦丝作物造成重大损失。虽然其他卵菌植物病原体已在分子水平Ps上进行了广泛研究。立方虫及其与瓜类宿主相互作用的分子基础尚未得到很好的研究。在这里,我们介绍Ps的第一个大规模的全球基因表达分析。易感黄瓜品种“ Vlaspik”的立方虫感染,并鉴定了在感染,生长和致病性方面具有假定作用的基因。使用高通量全转录组测序,我们捕获了2383 Ps的差异表达。孢子囊中以及接种后(1、2、3、4、6和8天)的立方体病基因。另外,比较PS。立方霉菌的表达谱与卵菌病原菌疫霉在马铃薯上的感染时间过程中的表达谱有关,揭示了1,576–6,806个直系同源基因表达模式的相似性,表明在生物营养型Ps之间的毒力分子事件中存在相当程度的重叠。立方体病和半生营养型无性疟原虫。共表达分析确定了P的不同模块。代表早期,中期和晚期感染阶段的立方体病基因。这些表达数据共同提高了我们对Ps毒力中关键分子和遗传事件的了解。立方体病因此提供了鉴定机制的基础,通过该机制工程化或影响宿主的抗性。

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