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The cytochrome P450 complement (CYPome) of Mycosphaerella graminicola

机译:细小支球菌的细胞色素P450补体(CYPome)

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摘要

Mycosphaerella graminicola is a key fungal pathogen of wheat and a major target for azole fungicides, many of whose central mode of action is through inhibition of cytochrome P450 51 (lanosterol 14α-demethylase) in the ergosterol biosynthetic pathway. The range of activities of other fungal CYPs is thought to be a reflection of the differences between different organisms and their range of secondary metabolic pathways as a response to their niche environments, for example, in the production of mycotoxins. The present study collates information from a range of databases, to classify the CYPs found in M. graminicola and assign them an internationally recognized nomenclature, which, when referenced to the recent publication of the JGI version 2.0 genome model, creates a current, robust model for the CYP complement (CYPome) of M. graminicola. These CYPome data, which examined 82 CYPs and one pseudo-gene, may be utilized not only to further characterize and describe the physiology of the organism but also to enhance our understanding of CYP function and diversity.
机译:重链霉菌是小麦的关键真菌病原体,也是唑类杀真菌剂的主要靶标,它们的许多主要作用方式是通过抑制麦角固醇生物合成途径中的细胞色素P450 51(羊毛甾醇14α-脱甲基酶)。其他真菌CYP的活性范围被认为反映了不同生物之间的差异以及它们对次生环境的响应,例如在霉菌毒素生产中,其次级代谢途径的范围。本研究从一系列数据库中收集信息,以对发现于格氏鼠中的CYP进行分类,并为它们分配国际认可的命名法,当参考最近发布的JGI 2.0版基因组模型时,该模型将创建一个当前的健壮模型Graminicola的CYP补体(CYPome)。这些CYPome数据检查了82种CYP和一个假基因,不仅可以用来进一步表征和描述生物的生理学,而且可以增进我们对CYP功能和多样性的了解。

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