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RNA-Seq Analysis of a Soybean Near-Isogenic Line Carrying Bacterial Leaf Pustule-Resistant and -Susceptible Alleles

机译:大豆近等基因系携带抗细菌性脓疱和敏感等位基因的RNA-Seq分析

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摘要

Bacterial leaf pustule (BLP) disease is caused by Xanthomonas axonopodis pv. glycines (Xag). To investigate the plant basal defence mechanisms induced in response to Xag, differential gene expression in near-isogenic lines (NILs) of BLP-susceptible and BLP-resistant soybean was analysed by RNA-Seq. Of a total of 46 367 genes that were mapped to soybean genome reference sequences, 1978 and 783 genes were found to be up- and down-regulated, respectively, in the BLP-resistant NIL relative to the BLP-susceptible NIL at 0, 6, and 12h after inoculation (hai). Clustering analysis revealed that these genes could be grouped into 10 clusters with different expression patterns. Functional annotation based on gene ontology (GO) categories was carried out. Among the putative soybean defence response genes identified (GO:0006952), 134 exhibited significant differences in expression between the BLP-resistant and -susceptible NILs. In particular, pathogen-associated molecular pattern (PAMP) and damage-associated molecular pattern (DAMP) receptors and the genes induced by these receptors were highly expressed at 0 hai in the BLP-resistant NIL. Additionally, pathogenesis-related (PR)-1 and -14 were highly expressed at 0 hai, and PR-3, -6, and -12 were highly expressed at 12 hai. There were also significant differences in the expression of the core JA-signalling components MYC2 and JASMONATE ZIM-motif. These results indicate that powerful basal defence mechanisms involved in the recognition of PAMPs or DAMPs and a high level of accumulation of defence-related gene products may contribute to BLP resistance in soybean.
机译:细菌性脓疱病(BLP)是由Xanthomonas axonopodis pv引起的。甘氨酸(Xag)。为了调查响应Xag诱导的植物基础防御机制,通过RNA-Seq分析了BLP敏感和BLP耐药大豆的近等基因系(NIL)中的差异基因表达。在映射到大豆基因组参考序列的总共46367个基因中,相对于BLP敏感NIL在0、6时,发现BLP抗性NIL中的1978和783基因分别被上调和下调。 ,以及接种后12小时(hai)。聚类分析表明,这些基因可以分为具有不同表达模式的10个簇。进行了基于基因本体(GO)类别的功能注释。在鉴定出的推定大豆防御反应基因(GO:0006952)中,有134个在BLP抗性和易感性NIL之间表现出显着差异。尤其是,病原体相关分子模式(PAMP)和损伤相关分子模式(DAMP)受体以及由这些受体诱导的基因在抗BLP的NIL中在0 hai高表达。此外,发病相关的(PR)-1和-14在0 hai高表达,而PR-3,-6和-12在12 hai高表达。核心JA信令组件MYC2和JASMONATE ZIM-motif的表达也存在显着差异。这些结果表明,参与PAMPs或DAMPs识别的强大基础防御机制以及与防御相关的基因产物的大量积累可能有助于大豆的BLP抗性。

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