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首页> 外文期刊>Plant Molecular Biology Reporter >Analysis of Differential Transcript Expression Reveals Time-Dependent Leaf Responses to Sclerotinia sclerotiorum in Wild and Cultivated Sunflower
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Analysis of Differential Transcript Expression Reveals Time-Dependent Leaf Responses to Sclerotinia sclerotiorum in Wild and Cultivated Sunflower

机译:差异转录表达的分析揭示了野生和栽培向日葵中对核盘菌的时间依赖性叶响应

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The necrotrophic pathogen Sclerotinia sclerotiorum is a causal agent of rot diseases in sunflower and is described as one of the most damaging pathogens of cultivated sunflower. Resistance to this pathogen is found in some genotypes of wild sunflower in particular characterised by significantly reduced lesion lengths in capitulum, stems and leaves. This study was conducted to characterise transcriptomic alterations during interaction of host and pathogen in lesion-surrounding areas of the leaf using differential display RT-PCR and to compare molecular responses between a resistant and a susceptible genotype. Leaves were examined during the first stages of pathogenesis (dpi 2, 3 and 4) after inoculation with S. sclerotiorum. By means of computational analysis of fluorescently labelled expression data, expression patterns were evaluated and significant differentially expressed transcripts were selected. The expression profile revealed that a response measured by the number of significant differentially expressed transcripts differed between the resistant and susceptible genotype in timing. Nine differentially expressed transcripts were successfully sequenced of which two transcripts originated from the mRNA population of the pathogen, two transcripts were derived from the susceptible cultivar of Helianthus annuus and five transcripts were isolated from the resistant genotype of Helianthus maximiliani. Semi-quantitative real-time PCR was accomplished to verify the significant differential expression of the potentially resistance-associated transcripts coumarate-CoA-ligase and cysteine protease transcript in the resistant H. maximiliani accession and differential expression of a chlorophyll-a/b-binding-protein and an S-adenosyl-methionine-synthetase transcript originating from the susceptible H. annuus cultivar.
机译:坏死性病原菌核盘菌是向日葵腐烂病的病原体,被描述为栽培向日葵中最具破坏性的病原体之一。在野生向日葵的某些基因型中发现了对这种病原体的抗性,特别是其特征是显着减少了花序,茎和叶的病灶长度。这项研究的目的是使用差异显示RT-PCR表征叶片病灶周围区域中宿主与病原体相互作用期间的转录组学变化,并比较耐药基因型和易感基因型之间的分子反应。在接种葡萄球菌后,在发病的第一阶段(dpi 2、3和4)检查叶片。通过荧光标记表达数据的计算分析,评估表达模式并选择显着差异表达的转录本。表达谱显示,在抗性和易感基因型之间,通过显着差异表达的转录物数量测量的反应在抗性和易感基因型之间有所不同。成功测序了九个差异表达的转录本,其中两个转录本来源于病原体的mRNA群体,两个转录本来自易感的向日葵品种,五个转录本是从最大的向日葵抗性基因型中分离出来的。半定量实时PCR的完成是为了验证潜在抗性相关转录本香豆酸盐-CoA-连接酶和半胱氨酸蛋白酶转录本在抗性最大嗜血杆菌中的显着差异表达以及叶绿素-a / b结合的差异表达-蛋白和S.腺苷甲硫氨酸合成酶的转录本,来自易感的H. annuus品种。

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