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首页> 外文期刊>BMC Genomics >Transcriptomic analysis reveals candidate genes regulating development and host interactions of Colletotrichum fructicola
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Transcriptomic analysis reveals candidate genes regulating development and host interactions of Colletotrichum fructicola

机译:转录组分析揭示了候选基因调节Colletottrichum Fructicola的发育和宿主相互作用

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摘要

Colletotrichum is a fungal genus in Ascomycota that contain many?plant pathogens. Among all Colletotrichum genomes that have been sequenced, C. fructicola contains the largest number of candidate virulence factors, such as plant cell wall degrading enzymes, secondary metabolite (SM) biosynthetic enzymes, secreted proteinases, and small secreted proteins. Systematic analysis of the expressional patterns of these factors would be an important step toward identifying key virulence determinants. In this study, we obtained and compared the global transcriptome profiles of four types of infection-related structures: conidia, appressoria, infected apple leaves, and cellophane infectious hyphae (bulbous hyphae spreading inside cellophane) of C. fructicola. We also compared the expression changes of candidate virulence factors among these structures in a systematic manner. A total of?3189 genes were differentially expressed in at least one pairwise comparison. Genes showing in planta-specific expressional upregulations were enriched with small secreted proteins (SSPs), cytochrome P450s, carbohydrate-active enzymes (CAZYs) and secondary metabolite (SM) synthetases, and included homologs of several known candidate effectors and one SM gene cluster specific to the Colletotrichum genus. In conidia, tens of genes functioning in triacylglycerol biosynthesis showed coordinately expressional upregulation, supporting the viewpoint that C. fructicola builds up lipid droplets as energy reserves. Several phosphate starvation responsive genes were coordinately up-regulated during early plant colonization, indicating a phosphate-limited in planta environment immediately faced by biotrophic infectious hyphae. This study systematically analyzes the expression patterns of candidate virulence genes, and reveals biological activities related to the development of several infection-related structures of C. fructicola. Our findings lay a foundation for further dissecting infection mechanisms in Colletotrichum?and identifying disease control targets.
机译:Colletotrichum是ascomcota的真菌属,包含许多植物病原体。在已经测序的所有核细胞基因组中,C.Fructicola含有最多的候选毒力因子,例如植物细胞壁降解酶,次级代谢物(SM)生物合成酶,分泌的蛋白酶和小分泌蛋白质。对这些因素的表达模式的系统分析将是识别关键毒力决定簇的重要步骤。在这项研究中,我们获得并比较了四种类型的感染相关结构的全局转录组谱:Catidia,Appressoria,受感染的苹果叶,C.Mucticola的玻璃烷传染酸壳(玻璃烷中的球形菌丝蔓延)。我们还以系统的方式比较了这些结构之间候选毒力因子的表达变化。在至少一个成对比较中,总共3189个基因差异表达。在植物特异性型致力上调中显示的基因富含小分泌的蛋白质(SSP),细胞色素P450s,碳水化合物 - 活性酶(Cazys)和次级代谢物(Sm)合成酶,并包括几种已知的候选效果和特异性的一个SM基因簇的同源物到胶凝藻属。在基因亚洲,在三酰基甘油生物合成中起作用的数十基因显示辅助表达上调,支持C.Mucticola为能量储备产生脂液滴的观点。在早期植物定植期间,几种磷酸盐饥饿响应基因在早期植物殖民化期间调节,表明植物环境中的磷酸盐限制,立即被生物养殖传染性菌丝面临。该研究系统地分析了候选毒力基因的表达模式,并揭示了与若干感染相关的C.Fructicola有关的生物学活性。我们的研究结果奠定了进一步疏松胶凝土感染机制的基础?并鉴定疾病控制靶标。

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