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首页> 外文期刊>Plant Biotechnology Journal >Genome‐wide association analysis and differential expression analysis of resistance to Sclerotinia stem rot in Brassica napus
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Genome‐wide association analysis and differential expression analysis of resistance to Sclerotinia stem rot in Brassica napus

机译:芸薹属植物肺炎酸松腐蚀性的基因组关联分析及差异表达分析

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Summary Brassica napus is one of the most important oil crops in the world, and stem rot caused by the fungus Sclerotinia sclerotiorum results in major losses in yield and quality. To elucidate resistance genes and?pathogenesis-related?genes, genome-wide association analysis of 347 accessions was performed using the Illumina 60K Brassica SNP (single nucleotide polymorphism) array. In addition, the detached stem inoculation assay was used to select five highly resistant (R) and susceptible (S) B.?napus lines, 48?h postinoculation with S.?sclerotiorum for transcriptome sequencing. We identified 17 significant associations for stem resistance on chromosomes A8 and C6, five of which were on A8 and 12 on C6. The SNPs identified on A8 were located in a 409-kb haplotype block, and those on C6 were consistent with previous QTL mapping efforts. Transcriptome analysis suggested that S.?sclerotiorum infection activates the immune system, sulphur metabolism, especially glutathione (GSH) and glucosinolates in both R and S genotypes. Genes found to be specific to the R genotype related to the jasmonic acid pathway, lignin biosynthesis, defence response, signal transduction and encoding transcription factors. Twenty-four genes were identified in both the SNP-trait association and transcriptome sequencing analyses, including a tau class glutathione S-transferase ( GSTU ) gene cluster. This study provides useful insight into the molecular mechanisms underlying the plant's response to S.?sclerotiorum .
机译:摘要Brassica Napus是世界上最重要的石油作物之一,茎腐菌菌毒蕈酸肺刺株导致产量和质量的主要损失。为了阐明抗性基因和α病因相关的?基因,使用Illumina 60k Brassica SnP(单核苷酸多态性)阵列进行347种载体的基因组关联分析。此外,使用脱离的茎接种测定来选择五种高度抗性(R)和易感性B.?napus线,48〜H后序与用于转录组测序的S.?晶体。我们确定了17个关于染色体A8和C6上的茎抗性的显着关联,其中5个在C6上的A8和12上。在A8上识别的SNP位于409-kB单倍型块中,C6上的SNP与先前的QTL绘图工作一致。转录组分析表明,S.?Sclerotiorum感染在R和S基因型中激活免疫系统,硫代谢,尤其是谷胱甘肽(GSH)和葡萄糖素酸盐。发现基因特异于茉莉酸途径,木质素生物合成,防御反应,信号转导和编码转录因子相关的基因型。在SNP-Trait结合和转录组测序分析中鉴定了二十四个基因,包括Tau类谷胱甘肽S-转移酶(GSTU)基因簇。本研究提供了对植物对S.®Clerotiorum的反应的分子机制有用的见解。

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