首页> 外文期刊>Mycologia >Genomewide annotation and comparative genomics of cytochrome P450 monooxygenases (P450s) in the polypore species Bjerkandera adusta, Ganoderma sp and Phlebia brevispora
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Genomewide annotation and comparative genomics of cytochrome P450 monooxygenases (P450s) in the polypore species Bjerkandera adusta, Ganoderma sp and Phlebia brevispora

机译:全基因组注释和多基因物种Bjerkandera adusta,Ganoderma sp和Phlebia brevispora中细胞色素P450单加氧酶(P450s)的基因组学和比较基因组学

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摘要

Genomewide annotation of cytochrome P450 monooxygenases (P450s) in three white-rot species of the fungal order Polyporales, namely Bjerkandera adusta, Ganoderma sp. and Phlebia brevispora, revealed a large contingent of P450 genes (P450ome) in their genomes. A total of 199 P450 genes in B. adusta and 209 P450 genes each in Ganoderma sp. and P. brevispora were identified. These P450omes were classified into families and subfamilies as follows: B. adusta (39 families, 86 subfamilies), Ganoderma sp. (41 families, 105 subfamilies) and P. brevispora (42 families, 111 subfamilies). Of note, the B. adusta genome lacked the CYP505 family (P450foxy), a group of P450-CPR fusion proteins. The three polypore species revealed differential enrichment of individual P450 families in their genomes. The largest GYP families in the three genomes were CYP5144 (67 P450s), CYP5359 (46 P450s) and CYP5344 (43 P450s) in B. adusta, Ganoderma sp. and P. brevispora, respectively. Our analyses showed that tandem gene duplications led to expansions in certain P450 families. An estimated 33% (72 P450s), 28% (55 P450s) and 23% (49 P450s) of P450ome genes were duplicated in P. brevispora, B. adusta and Ganoderma sp., respectively. Family-wise comparative analysis revealed that 22 GYP families are common across the three Polypore species. Comparative P450ome analysis with Ganoderma lucidum revealed the presence of 143 orthologs and 56 paralogs in Ganoderma sp. Multiple P450s were found near the characteristic biosynthetic genes for secondary metabolites, namely polyketide synthase (PKS), non-ribosomal peptide synthetase (NRPS), terpene cyclase and terpene synthase in the three genomes, suggesting a likely role of these P450s in secondary metabolism in these Polyporales. Overall, the three species had a richer P450 diversity both in terms of the P450 genes and P450 subfamilies as compared to the model white-rot and brown-rot polypore species Phanerochaete chrysosporium and Postia placenta.
机译:全基因组注释的真菌秩序多孔菌的三个白腐物种中的细胞色素P450单加氧酶(P450s),即Bjerkandera adusta,Ganoderma sp.。和短小夜蛾(Phlebia brevispora)揭示了其基因组中有大量P450基因(P450ome)。在印度芽孢杆菌中共有199个P450基因,在灵芝菌中每个都有209个P450基因。和短小孢子虫被鉴定。这些P450omes分为以下科和亚科:B. adusta(39个科,86个亚科),灵芝。 (41个家庭,105个亚科)和短小孢子虫(42个家庭,111个亚科)。值得注意的是,印度双歧杆菌基因组缺乏CYP505家族(P450foxy),这是一组P450-CPR融合蛋白。这三种多孔物种揭示了其基因组中各个P450家族的差异富集。在三个基因组中最大的GYP家族是灵芝芽孢杆菌中的CYP5144(67 P450s),CYP5359(46 P450s)和CYP5344(43 P450s)。和P. brevispora。我们的分析表明,串联基因重复导致某些P450家族的扩展。估计在短短疫病菌,B。adusta和灵芝菌种中分别复制了33%(72 P450s),28%(55 P450s)和23%(49 P450s)的P450ome基因。按家庭进行的比较分析表明,在三种Polypore物种中共有22个GYP家庭。用灵芝进行的比较性P450ome分析表明,灵芝菌种中存在143个直系同源物和56个旁系同源物。在三个基因组的次生代谢物的生物合成特征基因附近发现了多个P450,即聚酮化合物合酶(PKS),非核糖体肽合成酶(NRPS),萜烯环化酶和萜烯合酶,这提示这些P450可能在次级代谢中发挥作用。这些Polyporales。总体而言,与模型白腐和棕腐多孔物种Phanerochaete chrysosporium和Postia胎盘相比,这三个物种在P450基因和P450亚家族方面均具有更丰富的P450多样性。

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