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Comparative genomic and transcriptional analyses of the carbohydrate-active enzymes and secretomes of phytopathogenic fungi reveal their significant roles during infection and development

机译:对植物病原性真菌的碳水化合物活性酶和分泌基因组进行的基因组和转录比较分析表明它们在感染和发育过程中起着重要作用

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摘要

Our comparative genomic analysis showed that the numbers of plant cell wall (PCW)- and fungal cell wall (FCW)-degradation-associated carbohydrate-active enzymes (CAZymes) in necrotrophic and hemibiotrophic fungi are significantly larger than that in most biotrophic fungi. However, our transcriptional analyses of CAZyme-encoding genes in Melampsora larici-populina, Puccinia graminis and Sclerotinia sclerotiorum showed that many genes encoding PCW- and FCW-degradation-associated CAZymes were significantly up-regulated during the infection of both necrotrophic fungi and biotrophic fungi, indicating an existence of a universal mechanism underlying PCW degradation and FCW reorganization or modification, which are both intimately involved in necrotrophic and biotrophic fungal infection. Furthermore, our results showed that the FCW reorganization or modification was also related to the fungal development. Additionally, our transcriptional analysis of the secretome of S. sclerotiorum showed that many secreted protein-encoding genes were dramatically induced during infection. Among them, a small, cysteine-rich protein SsCVNH was experimentally confirmed to be essential for the virulence and sclerotial development, indicating that the small secreted proteins might also play crucial roles as potential effectors in host-non-specific necrotrophic fungi.
机译:我们的比较基因组分析表明,坏死性和半营养性真菌中植物细胞壁(PCW)和真菌细胞壁(FCW)降解相关的碳水化合物活性酶(CAZymes)的数量明显多于大多数生物营养性真菌。然而,我们对毛Mel属,淡紫色和小核盘菌中CAZyme编码基因的转录分析表明,在坏死性真菌和生物营养性真菌感染期间,许多编码PCW和FCW降解相关的CAZymes的基因均显着上调。 ,表明存在PCW降解和FCW重组或修饰背后的通用机制,两者均与坏死性和生物营养性真菌感染密切相关。此外,我们的结果表明,FCW的重组或修饰也与真菌的发育有关。此外,我们对核盘菌分泌基因组的转录分析表明,在感染过程中会大量诱导许多分泌蛋白的编码基因。其中,实验证实了一种富含半胱氨酸的小蛋白SsCVNH对于毒力和硬化发育至关重要,表明这些分泌的小蛋白在宿主非特异性坏死性真菌中也可能起着潜在的作用。

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