Chromosome-level genome map provides insights into diverse defense mechanisms in the medicinal fungus Ganoderma sinense

生物 基因组 基因 遗传学 DNA甲基化 转录组 表观基因组 转座因子 次生代谢 灵芝 灵芝 基因表达 食品科学 生物合成
作者
Yingjie Zhu,Jiang Xu,Chao Sun,Shiguo Zhou,Haibin Xu,David R. Nelson,Jun Qian,Jingyuan Song,Hongmei Luo,Li Xiang,Ying Li,Zhichao Xu,Aijia Ji,Lizhi Wang,Shanfa Lu,Alice Hayward,Wei Sun,Xiwen Li,David C. Schwartz,Yitao Wang,Shilin Chen
出处
期刊:Scientific Reports [Springer Nature]
卷期号:5 (1) 被引量:70
标识
DOI:10.1038/srep11087
摘要

Fungi have evolved powerful genomic and chemical defense systems to protect themselves against genetic destabilization and other organisms. However, the precise molecular basis involved in fungal defense remain largely unknown in Basidiomycetes. Here the complete genome sequence, as well as DNA methylation patterns and small RNA transcriptomes, was analyzed to provide a holistic overview of secondary metabolism and defense processes in the model medicinal fungus, Ganoderma sinense. We reported the 48.96 Mb genome sequence of G. sinense, consisting of 12 chromosomes and encoding 15,688 genes. More than thirty gene clusters involved in the biosynthesis of secondary metabolites, as well as a large array of genes responsible for their transport and regulation were highlighted. In addition, components of genome defense mechanisms, namely repeat-induced point mutation (RIP), DNA methylation and small RNA-mediated gene silencing, were revealed in G. sinense. Systematic bioinformatic investigation of the genome and methylome suggested that RIP and DNA methylation combinatorially maintain G. sinense genome stability by inactivating invasive genetic material and transposable elements. The elucidation of the G. sinense genome and epigenome provides an unparalleled opportunity to advance our understanding of secondary metabolism and fungal defense mechanisms.

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