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Evolution of H3K27me3-marked chromatin is linked to gene expression evolution and to patterns of gene duplication and diversification

机译:H3K27me3标记的染色质的进化与基因表达进化以及基因复制和多样化的模式有关

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摘要

Histone modifications are critical for the regulation of gene expression, cell type specification, and differentiation. However, evolutionary patterns of key modifications that regulate gene expression in differentiating organisms have not been examined. Here we mapped the genomic locations of the repressive mark histone 3 lysine 27 trimethylation (H3K27me3) in four species of Drosophila, and compared these patterns to those in C. elegans. We found that patterns of H3K27me3 are highly conserved across species, but conservation is substantially weaker among duplicated genes. We further discovered that retropositions are associated with greater evolutionary changes in H3K27me3 and gene expression than tandem duplications, indicating that local chromatin constraints influence duplicated gene evolution. These changes are also associated with concomitant evolution of gene expression. Our findings reveal the strong conservation of genomic architecture governed by an epigenetic mark across distantly related species and the importance of gene duplication in generating novel H3K27me3 profiles.
机译:组蛋白修饰对于调节基因表达,细胞类型规格和分化至关重要。但是,尚未研究调节分化生物中基因表达的关键修饰的进化模式。在这里,我们绘制了四个果蝇中阻遏标记组蛋白3赖氨酸27三甲基化(H3K27me3)的基因组位置,并将这些模式与秀丽隐杆线虫进行了比较。我们发现H3K27me3的模式是跨物种高度保守的,但在重复的基因之间的保守性却很弱。我们进一步发现,与串联重复相比,重排与H3K27me3和基因表达的更大进化变化相关,这表明局部染色质限制会影响重复的基因进化。这些变化也与基因表达的伴随进化有关。我们的发现揭示了在远缘相关物种中由表观遗传标记控制的基因组结构的强烈保守性,以及基因复制在产生新型H3K27me3谱图中的重要性。

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