Comparative Genome-Wide Analysis Underscores the Rapid Expansion of Cytochrome P450s for Secondary Metabolism in the Mycoparasite Pezizomycetes

Puleng Rosinah Syed, Tiara Padayachee, Philasande Gamede, Bridget Valeria Zinhle Nkosi, David R Nelson, R. Karpoormath, K. Syed
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Abstract

Mycoparasite secondary metabolites control fungal infections or diseases in agriculture and human health. Among genes involved in synthesizing secondary metabolites, cytochrome P450 monooxygenases (CYPs/P450s) play a key role in synthesizing and attributing diversity to the secondary metabolites. Despite the importance of P450s, a comparative analysis of P450s in mycoparasites has yet to be reported. This study is aimed at addressing this research gap. Genome-wide analysis of P450s in 43 fungi representing six fungal phyla and three distinct lifestyles, such as mycoparasitic (24 species), saprophytic (5 species), and ectomycorrhizal (14 species), revealed the expansion of P450s in Pezizomycete mycoparasites for the synthesis of secondary metabolites. The number of P450s and their families and subfamilies, the number of secondary-metabolite biosynthetic gene clusters (SMBGCs), and the number of P450s that are part of these SMBGCs were found to be highest in Pezizomycete mycoparasites compared to their counterparts of saprophytes and ectomycorrhiza, indicating P450s also play a key role in mycoparasitism. An analysis of P450 location as part of SMBGCs and the available literature on Pezizomycete P450s revealed that P450s play a key role in the synthesis of anti-fungal secondary metabolites such as trichothecene sesquiterpene, harzianum A, heptelidic acid, and gliotoxin. The mycoparasite Trichoderma virens Tv29.8 P450 CYP68Q3 is found to be a bifunctional enzyme with epoxidation and oxidation capability, and CYP5117A3 performs a Baeyer–Villiger oxidation reaction with regioselectivity. This study serves as a reference for future annotation of P450s in mycoparasites.
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全基因组比较分析证实了真菌寄生虫中用于次级代谢的细胞色素 P450s 的快速扩展
真菌寄生虫次生代谢物控制着农业和人类健康中的真菌感染或疾病。在参与合成次生代谢物的基因中,细胞色素 P450 单氧化酶(CYPs/P450s)在合成次生代谢物并使其多样化方面发挥着关键作用。尽管 P450s 十分重要,但有关真菌寄生虫中 P450s 的比较分析尚未见报道。本研究旨在填补这一研究空白。对代表 6 个真菌门和 3 种不同生活方式(如寄生真菌(24 种)、营养生长真菌(5 种)和外生菌根真菌(14 种))的 43 种真菌中的 P450s 进行全基因组分析,结果显示,P450s 在表皮真菌寄生真菌中用于合成次生代谢物的范围有所扩大。与吸浆菌和外生菌根菌相比,P450s 及其家族和亚家族的数量、次级代谢物生物合成基因簇(SMBGCs)的数量以及作为这些 SMBGCs 组成部分的 P450s 的数量在 Pezizomycete 真菌寄生虫中都是最高的,这表明 P450s 在真菌寄生中也起着关键作用。通过分析作为 SMBGCs 一部分的 P450 的位置以及现有的关于 Pezizomycete P450s 的文献,发现 P450s 在合成抗真菌次生代谢物(如单端孢霉烯倍半萜、Harzianum A、庚酸和胶霉素)中发挥着关键作用。研究发现,霉菌寄生虫毛霉 Tv29.8 P450 CYP68Q3 是一种具有环氧化和氧化能力的双功能酶,CYP5117A3 可进行具有区域选择性的拜尔-维利格氧化反应。这项研究为今后注释真菌寄生虫中的 P450s 提供了参考。
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