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Genomic insight into pathogenicity of dematiaceous fungus Corynespora cassiicola

机译:基因组学洞察皮肤病真菌Corynespora cassiicola的致病性

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摘要

Corynespora cassiicola is a common plant pathogen that causes leaf spot disease in a broad range of crop, and it heavily affect rubber trees in Malaysia (; ). The isolation of UM 591 from a patient’s contact lens indicates the pathogenic potential of this dematiaceous fungus in human. However, the underlying factors that contribute to the opportunistic cross-infection have not been fully studied. We employed genome sequencing and gene homology annotations in attempt to identify these factors in UM 591 using data obtained from publicly available bioinformatics databases. The assembly size of UM 591 genome is 41.8 Mbp, and a total of 13,531 (≥99 bp) genes have been predicted. UM 591 is enriched with genes that encode for glycoside hydrolases, carbohydrate esterases, auxiliary activity enzymes and cell wall degrading enzymes. Virulent genes comprising of CAZymes, peptidases, and hypervirulence-associated cutinases were found to be present in the fungal genome. Comparative analysis result shows that UM 591 possesses higher number of carbohydrate esterases family 10 (CE10) CAZymes compared to other species of fungi in this study, and these enzymes hydrolyses wide range of carbohydrate and non-carbohydrate substrates. Putative melanin, siderophore, ent-kaurene, and lycopene biosynthesis gene clusters are predicted, and these gene clusters denote that UM 591 are capable of protecting itself from the UV and chemical stresses, allowing it to adapt to different environment. Putative sterigmatocystin, HC-toxin, cercosporin, and gliotoxin biosynthesis gene cluster are predicted. This finding have highlighted the necrotrophic and invasive nature of UM 591.
机译:棒状杆菌(Corynespora cassiicola)是一种常见的植物病原体,可在多种作物中引起叶斑病,并严重影响马来西亚的橡胶树(;)。从患者的隐形眼镜中分离出UM 591,表明这种皮肤病真菌对人的致病潜力。但是,尚未完全研究导致机会性交叉感染的潜在因素。我们使用基因组测序和基因同源性注释,试图使用从可公开获得的生物信息学数据库中获得的数据来识别UM 591中的这些因素。 UM 591基因组的装配大小为41.8 Mbp,并且已经预测到总共13,531(≥99bp)个基因。 UM 591富含编码糖苷水解酶,碳水化合物酯酶,辅助活性酶和细胞壁降解酶的基因。发现在真菌基因组中存在由CAZymes,肽酶和高毒力相关角质酶组成的毒性基因。对比分析结果表明,与本研究中的其他真菌相比,UM 591具有更高数量的10类碳水化合物酯酶(CE10)CAZymes,这些酶可水解各种碳水化合物和非碳水化合物底物。预测了假定的黑色素,铁载体,正丁香烯和番茄红素的生物合成基因簇,这些基因簇表明UM 591能够保护自身免受紫外线和化学胁迫,从而使其能够适应不同的环境。预测的葡萄球菌毒素,HC-毒素,头孢菌素和胶质毒素生物合成基因簇被预测。这一发现突出了UM 591的坏死性和侵入性。

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