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Systematic Identification and Evolutionary Analysis of Catalytically Versatile Cytochrome P450 Monooxygenase Families Enriched in Model Basidiomycete Fungi

机译:系统丰富的模型担子菌真菌中催化的多功能细胞色素P450单加氧酶家族的系统鉴定和进化分析。

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摘要

Genome sequencing of basidiomycetes, a group of fungi capable of degrading/mineralizing plant material, revealed the presence of numerous cytochrome P450 monooxygenases (P450s) in their genomes, with some exceptions. Considering the large repertoire of P450s found in fungi, it is difficult to identify P450s that play an important role in fungal metabolism and the adaptation of fungi to diverse ecological niches. In this study, we followed Sir Charles Darwin’s theory of natural selection to identify such P450s in model basidiomycete fungi showing a preference for different types of plant components degradation. Any P450 family comprising a large number of member P450s compared to other P450 families indicates its natural selection over other P450 families by its important role in fungal physiology. Genome-wide comparative P450 analysis in the basidiomycete species, Phanerochaete chrysosporium, Phanerochaete carnosa, Agaricus bisporus, Postia placenta, Ganoderma sp. and Serpula lacrymans, revealed enrichment of 11 P450 families (out of 68 P450 families), CYP63, CYP512, CYP5035, CYP5037, CYP5136, CYP5141, CYP5144, CYP5146, CYP5150, CYP5348 and CYP5359. Phylogenetic analysis of the P450 family showed species-specific alignment of P450s across the P450 families with the exception of P450s of Phanerochaete chrysosporium and Phanerochaete carnosa, suggesting paralogous evolution of P450s in model basidiomycetes. P450 gene-structure analysis revealed high conservation in the size of exons and the location of introns. P450s with the same gene structure were found tandemly arranged in the genomes of selected fungi. This clearly suggests that extensive gene duplications, particularly tandem gene duplications, led to the enrichment of selective P450 families in basidiomycetes. Functional analysis and gene expression profiling data suggest that members of the P450 families are catalytically versatile and possibly involved in fungal colonization of plant material. To our knowledge, this is the first report on the identification and comparative-evolutionary analysis of P450 families enriched in model basidiomycetes.
机译:担子菌(一组能够降解/矿化植物材料的真菌)的基因组测序揭示了其基因组中存在许多细胞色素P450单加氧酶(P450),但有一些例外。考虑到在真菌中发现的P450种类繁多,很难鉴定在真菌代谢和真菌适应各种生态位中起重要作用的P450。在这项研究中,我们遵循了查尔斯·达尔文爵士的自然选择理论,在模型担子菌真菌中鉴定出这类P450,这些P450对不同类型的植物成分降解表现出偏爱。与其他P450家族相比,任何包含大量P450成员的P450家族都通过在真菌生理学中的重要作用,表明其相对于其他P450家族的自然选择。全基因组比较P450分析中的担子菌种,Phanerochaete chrysosporium,Phanerochaete carnosa,双孢蘑菇,Postia胎盘,灵芝菌。和Serpula lacrymans揭示了11个P450家族(在68个P450家族中),CYP63,CYP512,CYP5035,CYP5037,CYP5136,CYP5141,CYP5144,CYP5146,CYP5150,CYP5348和CYP5359的富集。对P450家族的系统发育分析表明,除Phanerochaete chrysosporium和Phanerochaete carnosa的P450以外,P450家族中P450的物种特异性比对,表明P450s在模型担子菌中是同源进化的。 P450基因结构分析显示外显子的大小和内含子的位置高度保守。发现具有相同基因结构的P450串联排列在所选真菌的基因组中。这清楚地表明广泛的基因重复,特别是串联基因重复,导致了担子菌中选择性P450家族的富集。功能分析和基因表达谱数据表明,P450家族的成员具有催化作用,可能参与了植物材料的真菌定植。据我们所知,这是关于鉴定和比较进化模型分析丰富的P450家族的第一份报告。

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