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首页> 外文期刊>BMC Genomics >Genomic discovery of the hypsin gene and biosynthetic pathways for terpenoids in Hypsizygus marmoreus
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Genomic discovery of the hypsin gene and biosynthetic pathways for terpenoids in Hypsizygus marmoreus

机译:Hypsizygus Marmoreus中萜烯类化合物和生物合成途径的基因组发现

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Hypsizygus marmoreus (Beech mushroom) is a popular ingredient in Asian cuisine. The medicinal effects of its bioactive compounds such as hypsin and hypsiziprenol have been reported, but the genetic basis or biosynthesis of these components is unknown. In this study, we sequenced a reference strain of H. marmoreus (Haemi 51,987-8). We evaluated various assembly strategies, and as a result the Allpaths and PBJelly produced the best assembly. The resulting genome was 42.7 Mbp in length and annotated with 16,627 gene models. A putative gene (Hypma_04324) encoding the antifungal and antiproliferative hypsin protein with 75% sequence identity with the previously known N-terminal sequence was identified. Carbohydrate active enzyme analysis displayed the typical feature of white-rot fungi where auxiliary activity and carbohydrate-binding modules were enriched. The genome annotation revealed four terpene synthase genes responsible for terpenoid biosynthesis. From the gene tree analysis, we identified that terpene synthase genes can be classified into six clades. Four terpene synthase genes of H. marmoreus belonged to four different groups that implies they may be involved in the synthesis of different structures of terpenes. A terpene synthase gene cluster was well-conserved in Agaricomycetes genomes, which contained known biosynthesis and regulatory genes. Genome sequence analysis of this mushroom led to the discovery of the hypsin gene. Comparative genome analysis revealed the conserved gene cluster for terpenoid biosynthesis in the genome. These discoveries will further our understanding of the biosynthesis of medicinal bioactive molecules in this edible mushroom.
机译:Hypsizygus marmoreus(山毛榉蘑菇)是亚洲美食的普遍成分。报道了其生物活性化合物如Hypsin和Hypsizhenrolol的药物作用,但这些组分的遗传基础或生物合成是未知的。在这项研究中,我们测序了H.Marmoreus的参考菌株(HAEMI 51,987-8)。我们评估了各种装配策略,因此出现了全路和PBJELLY生产的最佳装配。得到的基因组的长度为42.7mbp,用16,627个基因模型注释。鉴定了用75%序列同一性编码抗真菌和抗增殖性Hypsin蛋白的推定基因(Hypma_04324),与先前已知的n末端序列。碳水化合物活性酶分析显示了白腐真菌的典型特征,其中富含辅助活性和碳水化合物结合模块。基因组注释揭示了四种萜烯合酶基因,其负责萜类化合物生物合成。从基因树分析中,我们认为萜烯合酶基因可以分为六个片状。 H.Marmoreus的四个萜烯合酶基因属于四种不同的组,意味着它们可能参与萜烯不同结构的合成。萜烯合酶基因簇在姬昔组织基因组中储蓄很好,其含有已知的生物合成和调节基因。这种蘑菇的基因组序列分析导致了鼠乳蛋白基因的发现。对比基因组分析显示了基因组中萜类化合物生物合成的保守基因簇。这些发现将进一步了解该食用蘑菇中药用生物活性分子的生物合成的理解。

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