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在非洲黑腹果蝇群体中不完全的选择清除揭示了负频率依赖性选择的流行。

Prevalence of negative frequency-dependent selection, revealed by incomplete selective sweeps in African populations of Drosophila melanogaster.

机构信息

Department of Life Science and Division of EcoScience, Ewha Womans University, Seoul 03760, Korea.

出版信息

BMB Rep. 2018 Jan;51(1):1-2. doi: 10.5483/bmbrep.2018.51.1.226.

DOI:10.5483/bmbrep.2018.51.1.226
PMID:29187282
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5796626/
Abstract

Positive selection on a new beneficial mutation generates a characteristic pattern of DNA sequence polymorphism when it reaches an intermediate allele frequency. On genome sequences of African Drosophila melanogaster, we detected such signatures of selection at 37 candidate loci and identified "sweeping haplotypes (SHs)" that are increasing or have increased rapidly in frequency due to hitchhiking. Based on geographic distribution of SH frequencies, we could infer whether selective sweeps occurred starting from de novo beneficial mutants under simple constant selective pressure. Single SHs were identified at more than half of loci. However, at many other loci, we observed multiple independent SHs, implying soft selective sweeps due to a high beneficial mutation rate or parallel evolution across space. Interestingly, SH frequencies were intermediate across multiple populations at about a quarter of the loci despite relatively low migration rates inferred between African populations. This invokes a certain form of frequency-dependent selection such as heterozygote advantage. At one locus, we observed a complex pattern of multiple independent that was compatible with recurrent frequency-dependent positive selection on new variants. In conclusion, genomic patterns of positive selection are very diverse, with equal contributions of hard and soft sweeps and a surprisingly large proportion of frequencydependent selection in D. melanogaster populations. [BMB Reports 2018; 51(1): 1-2].

摘要

当一个新的有益突变达到中间等位基因频率时,它会对 DNA 序列多态性产生特征性的选择。在非洲黑腹果蝇的基因组序列中,我们在 37 个候选基因座上检测到了这种选择的特征,并确定了由于连锁而增加或快速增加频率的“扫荡单倍型(SH)”。基于 SH 频率的地理分布,我们可以推断选择清扫是否是从简单的恒定选择压力下的新有益突变体开始的。超过一半的基因座都发现了单个 SH。然而,在许多其他基因座上,我们观察到多个独立的 SH,这表明由于有益突变率较高或空间上的平行进化,选择压力较弱。有趣的是,尽管在非洲人群之间推断出的迁移率相对较低,但在大约四分之一的基因座上,SH 频率在多个种群中处于中间水平。这引发了某种形式的频率依赖选择,例如杂合优势。在一个基因座上,我们观察到多个独立的复杂模式,这与新变体的复发性频率依赖正选择是一致的。总之,正选择的基因组模式非常多样化,硬选择和软选择的贡献相等,并且在 D. melanogaster 种群中频率依赖选择的比例惊人地高。[BMB 报告 2018;51(1):1-2]。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5d2f/5796626/8d5c91d92806/bmb-51-001f1.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5d2f/5796626/8d5c91d92806/bmb-51-001f1.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5d2f/5796626/8d5c91d92806/bmb-51-001f1.jpg

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