Genomic and transcriptomic analyses of the medicinal fungus antrodia cinnamomea for its metabolite biosynthesis and sexual development

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Abstract

Antrodia cinnamomea, a polyporus mushroom of Taiwan, has long been used as a remedy for cancer, hypertension, and hangover, with an annual market of over $100 million (US) in Taiwan. We obtained a 32.15-Mb genome draft containing 9,254 genes. Genome ontology enrichment and pathway analyses shed light on sexual development and the biosynthesis of sesquiterpenoids, triterpenoids, ergostanes, antroquinonol, and antrocamphin. We identified genes differentially expressed between mycelium and fruiting body and 242 proteins in the mevalonate pathway, terpenoid pathways, cytochrome P450s, and polyketide synthases, which may contribute to the production of medicinal secondary metabolites. Genes of secondary metabolite biosynthetic pathways showed expression enrichment for tissuespecific compounds, including 14-α-demethylase (CYP51F1) in fruiting body for converting lanostane to ergostane triterpenoids, coenzymes Q (COQ) for antroquinonol biosynthesis in mycelium, and polyketide synthase for antrocamphin biosynthesis in fruiting body. Our data will be useful for developing a strategy to increase the production of useful metabolites.

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Lu, M. Y. J., Fan, W. L., Wang, W. F., Chen, T., Tang, Y. C., Chu, F. H., … Li, W. H. (2014). Genomic and transcriptomic analyses of the medicinal fungus antrodia cinnamomea for its metabolite biosynthesis and sexual development. Proceedings of the National Academy of Sciences of the United States of America, 111(44), E4743–E4752. https://doi.org/10.1073/pnas.1417570111

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