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------广泛保存和谱系特异性多样化的基因组范围的 DNA 甲基化模式在节肢动物中。

------Widespread conservation and lineage-specific diversification of genome-wide DNA methylation patterns across arthropods.

机构信息

Department of Genetics, University of Cambridge, Cambridge, United Kingdom.

MRC London Institute of Medical Sciences, London, United Kingdom.

出版信息

PLoS Genet. 2020 Jun 25;16(6):e1008864. doi: 10.1371/journal.pgen.1008864. eCollection 2020 Jun.

Abstract

Cytosine methylation is an ancient epigenetic modification yet its function and extent within genomes is highly variable across eukaryotes. In mammals, methylation controls transposable elements and regulates the promoters of genes. In insects, DNA methylation is generally restricted to a small subset of transcribed genes, with both intergenic regions and transposable elements (TEs) depleted of methylation. The evolutionary origin and the function of these methylation patterns are poorly understood. Here we characterise the evolution of DNA methylation across the arthropod phylum. While the common ancestor of the arthropods had low levels of TE methylation and did not methylate promoters, both of these functions have evolved independently in centipedes and mealybugs. In contrast, methylation of the exons of a subset of transcribed genes is ancestral and widely conserved across the phylum, but has been lost in specific lineages. A similar set of genes is methylated in all species that retained exon-enriched methylation. We show that these genes have characteristic patterns of expression correlating to broad transcription initiation sites and well-positioned nucleosomes, providing new insights into potential mechanisms driving methylation patterns over hundreds of millions of years.

摘要

胞嘧啶甲基化是一种古老的表观遗传修饰,但在真核生物中,其在基因组中的功能和范围具有高度的可变性。在哺乳动物中,甲基化控制转座元件并调节基因的启动子。在昆虫中,DNA 甲基化通常仅限于转录基因的一小部分,基因间区和转座元件(TEs)都没有甲基化。这些甲基化模式的进化起源和功能还了解甚少。在这里,我们描述了 DNA 甲基化在节肢动物门中的进化。虽然节肢动物的共同祖先的 TE 甲基化水平较低,并且不甲基化启动子,但这两种功能都在蜈蚣和粉蚧中独立进化。相比之下,转录基因的外显子的甲基化是祖先进化的,并且在整个门中广泛保守,但在特定的谱系中已经丢失。在保留外显子富集甲基化的所有物种中,都有一组类似的基因被甲基化。我们表明,这些基因具有与广泛的转录起始位点和位置良好的核小体相关的特征表达模式,为驱动数亿年来的甲基化模式的潜在机制提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4f92/7343188/fcbed474e186/pgen.1008864.g001.jpg

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