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麻雀和超级基因:生态表观遗传学的作用。

Sparrows and supergenes: Ecological epigenetics in action.

机构信息

Department of Evolutionary Anthropology, Duke University, Durham, North Carolina, USA.

Department of Biology, Duke University, Durham, North Carolina, USA.

出版信息

Mol Ecol. 2021 Jul;30(14):3391-3393. doi: 10.1111/mec.16028. Epub 2021 Jul 12.

Abstract

Despite the promise of ecological epigenetics, there remain few cases that clearly link epigenetic variation in wild animal populations to evolutionary change. In this issue of Molecular Ecology, Sun et al. provide such an example in white-throated sparrows-a fascinating system in which a large chromosomal rearrangement generates a "supergene" polymorphism linked to plumage colour, aggression and parenting behaviour. By combining whole genome bisulphite sequencing with RNA-sequencing and chromatin accessibility data, they show that the two alleles of this chromosomal polymorphism also exhibit substantial differences in DNA methylation levels, with implications for gene expression and transposable element activity. Their results provide a compelling case study for how genetic and epigenetic evolution proceed in concert. They also demonstrate the importance of integrating multiple types of genomic information to understand how gene regulation evolves, providing a model for future work in nonmodel species.

摘要

尽管生态表观遗传学前景广阔,但仍鲜有案例能将野生动物种群中的表观遗传变异与进化变化明确联系起来。在本期的《分子生态学》中,孙等人提供了这样一个例子:在白喉雀中,一个大型染色体重排产生了一个“超级基因”多态性,与羽毛颜色、攻击性和育雏行为有关。通过结合全基因组亚硫酸氢盐测序与 RNA 测序和染色质可及性数据,他们表明该染色体多态性的两个等位基因在 DNA 甲基化水平上也存在显著差异,这对基因表达和转座元件活性有影响。他们的研究结果为遗传和表观遗传进化如何协同进行提供了一个引人注目的案例研究。它们还表明,整合多种类型的基因组信息对于理解基因调控如何进化是很重要的,为非模式物种的未来工作提供了一个模型。

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