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DNA 甲基化与一种熊蜂物种的密码子简并性有关。

DNA methylation is associated with codon degeneracy in a species of bumblebee.

机构信息

Department of Genetics and Genome Biology, The University of Leicester, Leicester, UK.

Laboratory of Socioecology and Social Evolution, Department of Biology, KU Leuven, Leuven, Belgium.

出版信息

Heredity (Edinb). 2023 Apr;130(4):188-195. doi: 10.1038/s41437-023-00591-z. Epub 2023 Jan 19.

Abstract

Social insects display extreme phenotypic differences between sexes and castes even though the underlying genome can be almost identical. Epigenetic processes have been proposed as a possible mechanism for mediating these phenotypic differences. Using whole genome bisulfite sequencing of queens, males, and reproductive female workers we have characterised the sex- and caste-specific methylome of the bumblebee Bombus terrestris. We have identified a potential role for DNA methylation in histone modification processes which may influence sex and caste phenotypic differences. We also find differentially methylated genes generally show low levels of DNA methylation which may suggest a separate function for lowly methylated genes in mediating transcriptional plasticity, unlike highly methylated genes which are usually involved in housekeeping functions. We also examined the relationship between the underlying genome and the methylome using whole genome re-sequencing of the same queens and males. We find DNA methylation is enriched at zero-fold degenerate sites. We suggest DNA methylation may be acting as a targeted mutagen at these sites, providing substrate for selection via non-synonymous changes in the underlying genome. However, we did not see any relationship between DNA methylation and rates of positive selection in our samples. In order to fully assess a possible role for DNA methylation in adaptive processes a specifically designed study using natural population data is needed.

摘要

社会性昆虫在性别和职型之间表现出极端的表型差异,尽管潜在的基因组几乎相同。有人提出,表观遗传过程可能是介导这些表型差异的一种机制。我们利用蜂王、雄蜂和有生殖能力的雌蜂的全基因组亚硫酸氢盐测序,对熊蜂(Bombus terrestris)的性别和职型特异性甲基组进行了描述。我们发现 DNA 甲基化可能在组蛋白修饰过程中发挥作用,这可能会影响性别和职型的表型差异。我们还发现,一般来说,差异甲基化基因的 DNA 甲基化水平较低,这可能表明低甲基化基因在介导转录可塑性方面具有独立的功能,而不同于通常参与维持功能的高甲基化基因。我们还使用相同的蜂王和雄蜂的全基因组重测序来研究潜在基因组与甲基组之间的关系。我们发现 DNA 甲基化在零倍简并位点富集。我们认为,DNA 甲基化可能在这些位点作为靶向诱变剂发挥作用,通过潜在基因组中的非同义突变为选择提供底物。然而,我们在样本中没有发现 DNA 甲基化与正选择率之间的任何关系。为了全面评估 DNA 甲基化在适应过程中的可能作用,需要使用自然种群数据进行专门设计的研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a001/10076500/de1d0c6e0759/41437_2023_591_Fig1_HTML.jpg

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