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The Wolfiporia cocos Genome and Transcriptome Shed Light on the Formation of Its Edible and Medicinal Sclerotium

机译:Wolfiporia Cocos基因组和转录组脱光,形成其可食用和药用菌丝杆菌的形成

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Wolfiporia cocos (F. A. Wolf) has been praised as a food delicacy and medicine for centuries in China. Here, we present the genome and transcriptome of the Chinese strain CGMCC5.78 of W. cocos . High-confidence functional prediction was made for 9277 genes among the 10,908 total predicted gene models in the W. cocos genome. Up to 2838 differentially expressed genes (DEGs) were identified to be related to sclerotial development by comparing the transcriptomes of mycelial and sclerotial tissues. These DEGs are involved in mating processes, differentiation of fruiting body tissues, and metabolic pathways . A number of genes encoding enzymes and regulatory factors related to polysaccharide and triterpenoid production were strikingly regulated . A potential triterpenoid gene cluster including the signature lanosterol synthase ( LSS ) gene and its modified components were annotated. In addition, five nonribosomal peptide synthase ( NRPS )-like gene clusters, eight polyketide synthase ( PKS ) gene clusters, and 15 terpene gene clusters were discovered in the genome. The differential expression of the velevt family proteins, transcription factors, carbohydrate-active enzymes, and signaling components indicated their essential roles in the regulation of fungal development and secondary metabolism in W. cocos. These genomic and transcriptomic resources will be valuable for further investigations of the molecular mechanisms controlling sclerotial formation and for its improved medicinal applications.
机译:Wolfiporia Cocos(F. A. Wolf)被称为中国几个世纪以来的食品美味和药物。在这里,我们介绍了中国菌株CGMCC5.78的基因组和转录组。在W.Cocos基因组中的10,908个预测基因模型中,对9277个基因进行了高置信功能预测。通过比较菌丝体和硬菌组织的转录组,确定高达2838个差异表达的基因(DEGS)与菌发显性有关。这些DEG参与配合过程,分化结果体组织和代谢途径。令人惊讶地调节编码与多糖和三萜类化合物相关的酶和调节因素的许多基因。将包括标志性Lanterols合酶(LSS)基因及其改性组分的潜在三萜类基因组进行注释。此外,在基因组中发现了五种非纤维素肽合酶(NRPS) - 样基因簇,八个聚酮化合酶(PKS)基因簇和15萜烯基因簇。 Velevt家族蛋白质,转录因子,碳水化合物 - 活性酶和信号组分的差异表达表明了它们在调节真菌发育和W.Cocos中的次生新陈代谢的基本作用。这些基因组和转录组资源对于进一步调查控制核典型形成的分子机制以及其改善的药用应用来说是有价值的。

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