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Comparative Transcriptome Profiling of the Early Response to Magnaporthe oryzae in Durable Resistant vs Susceptible Rice (Oryza sativa L.) Genotypes

机译:水稻基因组对耐性水稻和易感水稻(Oryza sativa L.)基因型的早期反应的比较转录组分析。

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摘要

Durable resistance to blast, the most significant fungal disease of rice, represents an agronomically relevant character. Gigante Vercelli (GV) and Vialone Nano (VN) are two old temperate japonica Italian rice cultivars with contrasting response to blast infection: GV displays durable and broad resistance while VN is highly susceptible. RNA-seq was used to dissect the early molecular processes deployed during the resistance response of GV at 24 h after blast inoculation. Differential gene expression analysis identified 1,070 and 1,484 modulated genes, of which 726 and 699 were up regulated in response to infection in GV and VN, respectively. Gene ontology (GO) enrichment analyses revealed a set of GO terms enriched in both varieties but, despite this commonality, the gene sets contributing to common GO enriched terms were dissimilar. The expression patterns of genes grouped in GV-specific enriched GO terms were examined in detail including at the transcript isoform level. GV exhibited a dramatic up-regulation of genes encoding diterpene phytoalexin biosynthetic enzymes, flavin-containing monooxygenase, class I chitinase and glycosyl hydrolase 17. The sensitivity and high dynamic range of RNA-seq allowed the identification of genes critically involved in conferring GV resistance during the early steps of defence perception-signalling. These included chitin oligosaccharides sensing factors, wall associated kinases, MAPK cascades and WRKY transcription factors. Candidate genes with expression patterns consistent with a potential role as GV-specific functional resistance (R) gene(s) were also identified. This first application of RNA-seq to dissect durable blast resistance supports a crucial role of the prompt induction of a battery of responses including defence-related genes as well as members of gene families involved in signalling and pathogen-related gene expression regulation.
机译:稻瘟病是水稻最严重的真菌病,对稻瘟病具有持久的抵抗力,代表了农学上的相关特征。 Gigante Vercelli(GV)和Vialone Nano(VN)是两个古老的温带粳稻意大利水稻品种,对稻瘟病的反应不同:GV表现出持久而广泛的抗性,而VN则极易感。 RNA-seq用于解剖在鼓风接种后24小时GV的耐药性响应过程中部署的早期分子过程。差异基因表达分析确定了1,070个和1,484个调节基因,其中726和699个分别受GV和VN感染的影响而被上调。基因本体论(GO)富集分析揭示了在两个变种中都富集的一组GO术语,但是尽管有这种共性,但促成常见GO富集术语的基因集却不相同。详细检查了以GV特异性富集的GO术语分组的基因的表达模式,包括在转录本亚型水平上。 GV展示了编码二萜植物抗毒素生物合成酶,含黄素的单加氧酶,I类几丁质酶和糖基水解酶17的基因的急剧上调。RNA-seq的灵敏性和高动态范围使人们能够鉴定出关键的参与赋予GV抗性的基因防御感知信号的早期步骤。这些包括几丁质寡糖感测因子,壁相关激酶,MAPK级联和WRKY转录因子。还鉴定了具有与作为GV特异性功能抗性(R)基因的潜在作用一致的表达模式的候选基因。 RNA-seq首次用于剖析持久的抗稻瘟病抗性,对迅速诱导一系列反应(包括与防御相关的基因以及涉及信号传导和病原体相关的基因表达调控的基因家族的成员)起到了至关重要的作用。

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