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担子菌生物营养型植物病原菌中细胞色素P450单加氧酶的全基因组注释及比较分析

Genome-Wide Annotation and Comparative Analysis of Cytochrome P450 Monooxygenases in Basidiomycete Biotrophic Plant Pathogens.

作者信息

Qhanya Lehlohonolo Benedict, Matowane Godfrey, Chen Wanping, Sun Yuxin, Letsimo Elizabeth Mpholoseng, Parvez Mohammad, Yu Jae-Hyuk, Mashele Samson Sitheni, Syed Khajamohiddin

机构信息

Unit for Drug Discovery Research, Department of Health Sciences, Faculty of Health and Environmental Sciences, Central University of Technology, Bloemfontein 9300, Free State, South Africa.

College of Food Science and Technology, Huazhong Agricultural University, Wuhan, Hubei Province, China.

出版信息

PLoS One. 2015 Nov 4;10(11):e0142100. doi: 10.1371/journal.pone.0142100. eCollection 2015.

Abstract

Fungi are an exceptional source of diverse and novel cytochrome P450 monooxygenases (P450s), heme-thiolate proteins, with catalytic versatility. Agaricomycotina saprophytes have yielded most of the available information on basidiomycete P450s. This resulted in observing similar P450 family types in basidiomycetes with few differences in P450 families among Agaricomycotina saprophytes. The present study demonstrated the presence of unique P450 family patterns in basidiomycete biotrophic plant pathogens that could possibly have originated from the adaptation of these species to different ecological niches (host influence). Systematic analysis of P450s in basidiomycete biotrophic plant pathogens belonging to three different orders, Agaricomycotina (Armillaria mellea), Pucciniomycotina (Melampsora laricis-populina, M. lini, Mixia osmundae and Puccinia graminis) and Ustilaginomycotina (Ustilago maydis, Sporisorium reilianum and Tilletiaria anomala), revealed the presence of numerous putative P450s ranging from 267 (A. mellea) to 14 (M. osmundae). Analysis of P450 families revealed the presence of 41 new P450 families and 27 new P450 subfamilies in these biotrophic plant pathogens. Order-level comparison of P450 families between biotrophic plant pathogens revealed the presence of unique P450 family patterns in these organisms, possibly reflecting the characteristics of their order. Further comparison of P450 families with basidiomycete non-pathogens confirmed that biotrophic plant pathogens harbour the unique P450 families in their genomes. The CYP63, CYP5037, CYP5136, CYP5137 and CYP5341 P450 families were expanded in A. mellea when compared to other Agaricomycotina saprophytes and the CYP5221 and CYP5233 P450 families in P. graminis and M. laricis-populina. The present study revealed that expansion of these P450 families is due to paralogous evolution of member P450s. The presence of unique P450 families in these organisms serves as evidence of how a host/ecological niche can influence shaping the P450 content of an organism. The present study initiates our understanding of P450 family patterns in basidiomycete biotrophic plant pathogens.

摘要

真菌是多样且新颖的细胞色素P450单加氧酶(P450s)的特殊来源,P450s是血红素-硫醇盐蛋白,具有催化多功能性。伞菌亚纲腐生菌提供了关于担子菌P450s的大部分现有信息。这导致在担子菌中观察到相似的P450家族类型,伞菌亚纲腐生菌之间的P450家族差异很小。本研究证明了担子菌生物营养型植物病原体中存在独特的P450家族模式,这些模式可能源于这些物种对不同生态位的适应(宿主影响)。对属于三个不同目(伞菌亚纲(蜜环菌)、柄锈菌亚纲(落叶松-杨栅锈菌、亚麻栅锈菌、耳匙菌和禾柄锈菌)和黑粉菌亚纲(玉蜀黍黑粉菌、玉米丝轴黑粉菌和异常腥黑粉菌))的担子菌生物营养型植物病原体中的P450s进行系统分析,发现存在大量推定的P450s,数量从267个(蜜环菌)到14个(耳匙菌)不等。对P450家族的分析表明,这些生物营养型植物病原体中存在41个新的P450家族和27个新的P450亚家族。对生物营养型植物病原体之间的P450家族进行目级比较,发现这些生物体中存在独特的P450家族模式,这可能反映了它们所属目的特征。将P450家族与担子菌非病原体进一步比较证实,生物营养型植物病原体在其基因组中含有独特的P450家族。与其他伞菌亚纲腐生菌相比,蜜环菌中的CYP63、CYP5037、CYP5136、CYP5137和CYP5341 P450家族有所扩展,禾柄锈菌和落叶松-杨栅锈菌中的CYP5221和CYP5233 P450家族也有所扩展。本研究表明,这些P450家族的扩展是由于成员P450的旁系同源进化。这些生物体中独特P450家族的存在证明了宿主/生态位如何影响生物体P450含量的形成。本研究开启了我们对担子菌生物营养型植物病原体中P450家族模式的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b25c/4633277/8b1d58f17f2a/pone.0142100.g001.jpg

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