Department of Bioscience, Aarhus University, 8000 Aarhus C, Denmark.
Genes (Basel). 2019 Feb 12;10(2):137. doi: 10.3390/genes10020137.
Variation in DNA methylation patterns among genes, individuals, and populations appears to be highly variable among taxa, but our understanding of the functional significance of this variation is still incomplete. We here present the first whole genome bisulfite sequencing of a chelicerate species, the social spider . We show that DNA methylation occurs mainly in CpG context and is concentrated in genes. This is a pattern also documented in other invertebrates. We present RNA sequence data to investigate the role of DNA methylation in gene regulation and show that, within individuals, methylated genes are more expressed than genes that are not methylated and that methylated genes are more stably expressed across individuals than unmethylated genes. Although no causal association is shown, this lends support for the implication of DNA CpG methylation in regulating gene expression in invertebrates. Differential DNA methylation between populations showed a small but significant correlation with differential gene expression. This is consistent with a possible role of DNA methylation in local adaptation. Based on indirect inference of the presence and pattern of DNA methylation in chelicerate species whose genomes have been sequenced, we performed a comparative phylogenetic analysis. We found strong evidence for exon DNA methylation in the horseshoe crab and in all spider and scorpion species, while most Parasitiformes and Acariformes species seem to have lost DNA methylation.
基因、个体和种群之间的 DNA 甲基化模式的变化在分类群中似乎高度可变,但我们对这种变化的功能意义的理解仍然不完整。我们在这里展示了第一个螯肢动物物种,社会性蜘蛛的全基因组亚硫酸氢盐测序。我们表明,DNA 甲基化主要发生在 CpG 背景中,并集中在基因中。这也是在其他无脊椎动物中记录的模式。我们提供 RNA 序列数据来研究 DNA 甲基化在基因调控中的作用,并表明在个体内,甲基化基因的表达水平高于非甲基化基因,并且甲基化基因在个体间的表达比非甲基化基因更稳定。虽然没有显示出因果关系,但这为 DNA CpG 甲基化在调节无脊椎动物基因表达中的作用提供了支持。种群间的差异 DNA 甲基化与差异基因表达之间存在小但显著的相关性。这与 DNA 甲基化在局部适应中的可能作用一致。基于对已测序的螯肢动物物种中 DNA 甲基化的存在和模式的间接推断,我们进行了比较系统发育分析。我们发现马蹄蟹和所有蜘蛛和蝎子物种中存在强烈的外显子 DNA 甲基化证据,而大多数寄生目和蜱螨目物种似乎已经失去了 DNA 甲基化。