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一项全球性的基因组序列变异调查为研究蜜蜂 Apis mellifera 的进化历史提供了深入了解。

A worldwide survey of genome sequence variation provides insight into the evolutionary history of the honeybee Apis mellifera.

机构信息

Department of Medical Biochemistry and Microbiology, Science for Life Laboratory, Uppsala University, Uppsala, Sweden.

1] Department of Medical Biochemistry and Microbiology, Science for Life Laboratory, Uppsala University, Uppsala, Sweden. [2].

出版信息

Nat Genet. 2014 Oct;46(10):1081-8. doi: 10.1038/ng.3077. Epub 2014 Aug 24.

Abstract

The honeybee Apis mellifera has major ecological and economic importance. We analyze patterns of genetic variation at 8.3 million SNPs, identified by sequencing 140 honeybee genomes from a worldwide sample of 14 populations at a combined total depth of 634×. These data provide insight into the evolutionary history and genetic basis of local adaptation in this species. We find evidence that population sizes have fluctuated greatly, mirroring historical fluctuations in climate, although contemporary populations have high genetic diversity, indicating the absence of domestication bottlenecks. Levels of genetic variation are strongly shaped by natural selection and are highly correlated with patterns of gene expression and DNA methylation. We identify genomic signatures of local adaptation, which are enriched in genes expressed in workers and in immune system- and sperm motility-related genes that might underlie geographic variation in reproduction, dispersal and disease resistance. This study provides a framework for future investigations into responses to pathogens and climate change in honeybees.

摘要

蜜蜂(Apis mellifera)具有重要的生态和经济意义。我们分析了从全球 14 个种群中采集的 140 个蜜蜂基因组中的 830 万个 SNP 的遗传变异模式,这些基因组的测序深度总计为 634 倍。这些数据为了解该物种的进化历史和遗传基础上的局部适应提供了线索。我们发现,种群数量波动很大,与历史气候变化相吻合,尽管现代种群具有很高的遗传多样性,表明没有经历过驯化瓶颈。遗传变异水平受自然选择的强烈影响,与基因表达和 DNA 甲基化模式高度相关。我们确定了与局部适应相关的基因组特征,这些特征在工蜂中表达的基因以及与免疫系统和精子活力相关的基因中富集,这些基因可能是生殖、扩散和抗病性的地理变异的基础。这项研究为未来研究蜜蜂对病原体和气候变化的反应提供了框架。

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