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Methylation and gene expression differences between reproductive and sterile bumblebee workers

机译:繁殖和无菌大黄蜂工人的甲基化和基因表达差异

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摘要

Phenotypic plasticity is the production of multiple phenotypes from a single genome and is notably observed in social insects. Multiple epigenetic mechanisms have been associated with social insect plasticity, with DNA methylation being explored to the greatest extent. DNA methylation is thought to play a role in caste determination in Apis mellifera, and other social insects, but there is limited knowledge on its role in other bee species. In this study, we analyzed whole genome bisulfite sequencing and RNA‐seq data sets from head tissue of reproductive and sterile castes of the eusocial bumblebee Bombus terrestris. We found that genome‐wide methylation in B. terrestris is similar to other holometabolous insects and does not differ between reproductive castes. We did, however, find differentially methylated genes between castes, which are enriched for multiple biological processes including reproduction. However, we found no relationship between differential methylation and differential gene expression or differential exon usage between castes. Our results also indicate high intercolony variation in methylation. These findings suggest that methylation is associated with caste differences but may serve an alternate function, other than direct caste determination in this species. This study provides the first insights into the nature of a bumblebee caste‐specific methylome as well as its interaction with gene expression and caste‐specific alternative splicing, providing greater understanding of the role of methylation in phenotypic plasticity within social bee species. Future experimental work is needed to determine the function of methylation and other epigenetic mechanisms in insects.
机译:表型可塑性是由单个基因组产生的多种表型,并且在社交昆虫中尤为明显。多种表观遗传机制已与社会昆虫可塑性相关联,DNA甲基化得到了最大程度的探索。 DNA甲基化被认为在蜜蜂和其他社会性昆虫的种姓确定中起作用,但是关于其在其他蜜蜂物种中的作用的知识尚有限。在这项研究中,我们分析了来自正常社会大黄蜂Bombus terrestris生殖和不育种姓头部组织的全基因组亚硫酸氢盐测序和RNA-seq数据集。我们发现,陆地藜中的全基因组甲基化与其他全代谢昆虫相似,并且在生殖种姓之间没有差异。但是,我们确实发现了种姓之间甲基化差异的基因,这些基因富含多种生物学过程,包括生殖。然而,我们发现种姓之间差异甲基化与差异基因表达或差异外显子使用之间没有关系。我们的结果还表明甲基化之间的高菌落变异。这些发现表明甲基化与种姓差异有关,但可能具有替代功能,除了直接确定该种姓。这项研究首次了解了大黄蜂种姓甲基化基因组的性质,以及其与基因表达和种姓特异性替代剪接的相互作用,从而使人们更好地了解了甲基化在社交蜜蜂物种表型可塑性中的作用。需要未来的实验工作来确定昆虫中甲基化的功能和其他表观遗传机制。

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