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Comparative Transcriptome Analysis of the Necrotrophic Fungus Ascochyta rabiei during Oxidative Stress: Insight for Fungal Survival in the Host Plant

机译:坏死性真菌Ascochyta rabiei氧化应激过程中的比较转录组分析:寄主植物中真菌存活的见解。

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摘要

Localized cell death, known as the hypersensitive response (HR), is an important defense mechanism for neutralizing phytopathogens. The hallmark of the HR is an oxidative burst produced by the host plant. We aimed to identify genes of the necrotrophic chickpea blight fungus Ascochyta rabiei that are involved in counteracting oxidative stress. A subtractive cDNA library was constructed after menadione treatment, which resulted in the isolation of 128 unigenes. A reverse northern blot was used to compare transcript profiles after H2O2, menadione and sodium nitroprusside treatments. A total of 70 unigenes were found to be upregulated by more than two-fold following menadione treatment at different time intervals. A large number of genes not previously associated with oxidative stress were identified, along with many stress-responsive genes. Differential expression patterns of several genes were validated by quantitative real-time PCR (qRT-PCR) and northern blotting. In planta qRT-PCR of several selected genes also showed differential expression patterns during infection and disease progression. These data shed light on the molecular responses of the phytopathogen A. rabiei to overcome oxidative and nitrosative stresses and advance the understanding of necrotrophic fungal pathogen survival mechanisms.
机译:局部细胞死亡称为超敏反应(HR),是中和植物病原体的重要防御机制。 HR的标志是宿主植物产生的氧化性爆发。我们旨在鉴定坏死性鹰嘴豆疫病真菌Ascochyta rabiei的基因,这些基因与抵抗氧化应激有关。在甲萘醌处理后构建了一个减性cDNA文库,从而分离出128个单基因。 H2O2,甲萘醌和硝普钠处理后,使用反向Northern印迹比较转录物谱。甲萘醌治疗后,在不同的时间间隔内,共有70种单基因被上调两倍以上。鉴定了许多以前与氧化应激不相关的基因,以及许多应激反应基因。通过定量实时PCR(qRT-PCR)和Northern印迹验证了几种基因的差异表达模式。在植物中,几种选定基因的qRT-PCR在感染和疾病进展期间也显示出差异表达模式。这些数据阐明了植物病原体A. rabiei克服氧化和亚硝化应激并促进对坏死性真菌病原体存活机制的理解的分子反应。

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