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首页> 外文期刊>Scientific reports. >Chromosome-level genome map provides insights into diverse defense mechanisms in the medicinal fungus Ganoderma sinense
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Chromosome-level genome map provides insights into diverse defense mechanisms in the medicinal fungus Ganoderma sinense

机译:染色体水平的基因组图谱提供了对药用真菌 Ganoderma sinense 的多种防御机制的见解

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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.
机译:真菌已经进化出强大的基因组和化学防御系统,以保护自己免受遗传不稳定和其他生物的侵害。然而,在真菌担子菌中,涉及真菌防御的确切分子基础仍然是未知的。在这里,分析了完整的基因组序列,以及DNA甲基化模式和小RNA转录组,以提供模型性真菌灵芝中次生代谢和防御过程的整体概述。我们报道了G. sinense的48.96?Mb基因组序列,由12条染色体组成,编码15,688个基因。重点介绍了参与次级代谢产物生物合成的30多个基因簇以及负责其转运和调控的大量基因。此外,中华绒螯蟹揭示了基因组防御机制的组成部分,即重复诱导的点突变(RIP),DNA甲基化和小RNA介导的基因沉默。对基因组和甲基化组的系统生物信息学研究表明,RIP和DNA甲基化可通过灭活侵入性遗传物质和转座因子来共同保持中华绒螯蟹基因组的稳定性。中华绒螯蟹基因组和表观基因组的阐明为我们进一步了解次级代谢和真菌防御机制提供了无与伦比的机会。

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