Repeated Shifts in Sociality Are Associated With Fine-tuning of Highly Conserved and Lineage-Specific Enhancers in a Socially Flexible Bee.

IF 11 1区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Molecular biology and evolution Pub Date : 2024-11-01 DOI:10.1093/molbev/msae229
Beryl M Jones, Andrew E Webb, Scott M Geib, Sheina Sim, Rena M Schweizer, Michael G Branstetter, Jay D Evans, Sarah D Kocher
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Abstract

Comparative genomic studies of social insects suggest that changes in gene regulation are associated with evolutionary transitions in social behavior, but the activity of predicted regulatory regions has not been tested empirically. We used self-transcribing active regulatory region sequencing, a high-throughput enhancer discovery tool, to identify and measure the activity of enhancers in the socially variable sweat bee, Lasioglossum albipes. We identified over 36,000 enhancers in the L. albipes genome from 3 social and 3 solitary populations. Many enhancers were identified in only a subset of L. albipes populations, revealing rapid divergence in regulatory regions within this species. Population-specific enhancers were often proximal to the same genes across populations, suggesting compensatory gains and losses of regulatory regions may preserve gene activity. We also identified 1,182 enhancers with significant differences in activity between social and solitary populations, some of which are conserved regulatory regions across species of bees. These results indicate that social trait variation in L. albipes is associated with the fine-tuning of ancient enhancers as well as lineage-specific regulatory changes. Combining enhancer activity with population genetic data revealed variants associated with differences in enhancer activity and identified a subset of differential enhancers with signatures of selection associated with social behavior. Together, these results provide the first empirical map of enhancers in a socially flexible bee and highlight links between cis-regulatory variation and the evolution of social behavior.

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在社会性灵活的蜜蜂中,社会性的反复转变与高度保守和品系特异性增强子的微调有关。
对社会性昆虫的比较基因组研究表明,基因调控的变化与社会行为的进化转变有关,但预测的调控区域的活性尚未经过实证检验。我们使用高通量增强子发现工具 STARR-seq 来鉴定和测量社会变异汗蜂 Lasioglossum albipes 中增强子的活性。我们从三个社会种群和三个独居种群的 L. albipes 基因组中发现了超过 36,000 个增强子。许多增强子仅在一部分白唇汗蜂种群中被发现,这揭示了该物种内部调控区域的快速分化。种群特异性增强子往往靠近不同种群中的相同基因,这表明调控区域的补偿性增减可能会保持基因的活性。我们还发现了 1182 个增强子,它们在社会种群和独居种群之间具有显著的活性差异,其中一些是跨蜜蜂物种的保守调控区。这些结果表明,白唇蜂的社会性状变异与古老的增强子的微调以及特定品系的调控变化有关。将增强子活性与种群遗传数据相结合,发现了与增强子活性差异相关的变异,并确定了一个差异增强子子集,该子集具有与社会行为相关的选择特征。总之,这些结果首次提供了具有社会灵活性的蜜蜂中增强子的经验图谱,并突出了顺式调控变异与社会行为进化之间的联系。
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来源期刊
Molecular biology and evolution
Molecular biology and evolution 生物-进化生物学
CiteScore
19.70
自引率
3.70%
发文量
257
审稿时长
1 months
期刊介绍: Molecular Biology and Evolution Journal Overview: Publishes research at the interface of molecular (including genomics) and evolutionary biology Considers manuscripts containing patterns, processes, and predictions at all levels of organization: population, taxonomic, functional, and phenotypic Interested in fundamental discoveries, new and improved methods, resources, technologies, and theories advancing evolutionary research Publishes balanced reviews of recent developments in genome evolution and forward-looking perspectives suggesting future directions in molecular evolution applications.
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