Genomic Evidence for the Purging of Deleterious Genetic Variation in the Endangered North Atlantic Right Whale.

IF 3.5 2区 生物学 Q1 EVOLUTIONARY BIOLOGY
Evolutionary Applications Pub Date : 2024-12-23 eCollection Date: 2024-12-01 DOI:10.1111/eva.70055
Richard W Orton, Philip K Hamilton, Timothy R Frasier
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Abstract

The reduced genetic diversity and frequent inbreeding associated with small population size may underpin the accumulation and expression of deleterious mutations (mutation load) in some declining populations. However, demographic perturbations and inbreeding coupled with purifying selection can also purge declining populations of deleterious mutations, leading to intriguing recoveries. To better understand the links between deleterious genetic variation and population status, we assess patterns of genetic diversity, inbreeding, and mutation load across the genomes of three species of Balaenidae whale with different demographic histories and recoveries following the end of commercial whaling in the 1980s. Unlike bowhead (BH) and Southern right whales (SRW), which show signs of recent recovery, reproductive rates of the endangered North Atlantic right whale (NARW) remain lower than expected. We show that the NARW is currently marked by low genetic diversity, historical inbreeding, and a high mutation load. Still, we reveal evidence that genetic purging has reduced the frequency of highly deleterious alleles in NARW, which could increase chances of future population recovery. We also identify a suite of mutations putatively linked to congenital defects that occur at high frequencies in nulliparous NARW females but are rare in NARW with high reproductive success. These same mutations are nearly absent in BH and SRW in this study, suggesting that the purging of key variants may shape the probability of population recovery. As anthropogenic disturbances continue to reduce the sizes of many populations in nature, resolving the links between population dynamics and mutation load could become increasingly important.

濒危北大西洋露脊鲸有害遗传变异清除的基因组证据。
遗传多样性的减少和与小种群规模相关的频繁近亲繁殖可能是有害突变(突变负荷)在一些衰落种群中积累和表达的基础。然而,人口结构的扰动和近交加上净化选择也可以清除种群中有害突变的减少,从而导致有趣的恢复。为了更好地了解有害遗传变异与种群状况之间的联系,我们评估了三种Balaenidae鲸鱼的遗传多样性、近交和突变负荷模式,这些鲸鱼具有不同的人口统计历史和20世纪80年代商业捕鲸结束后的恢复情况。与最近出现恢复迹象的弓头鲸(BH)和南露脊鲸(SRW)不同,濒临灭绝的北大西洋露脊鲸(NARW)的繁殖率仍低于预期。我们发现,NARW目前的特点是遗传多样性低,历史近交和高突变负荷。尽管如此,我们揭示的证据表明,基因净化已经降低了NARW中高度有害等位基因的频率,这可能会增加未来种群恢复的机会。我们还发现了一组被认为与先天性缺陷有关的突变,这些突变在未生育的NARW女性中发生率很高,但在生育成功率高的NARW女性中却很少见。在本研究中,这些相同的突变在BH和SRW中几乎不存在,这表明清除关键变异可能会影响种群恢复的可能性。随着人为干扰不断减少自然界中许多种群的规模,解决种群动态和突变负荷之间的联系可能变得越来越重要。
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来源期刊
Evolutionary Applications
Evolutionary Applications 生物-进化生物学
CiteScore
8.50
自引率
7.30%
发文量
175
审稿时长
6 months
期刊介绍: Evolutionary Applications is a fully peer reviewed open access journal. It publishes papers that utilize concepts from evolutionary biology to address biological questions of health, social and economic relevance. Papers are expected to employ evolutionary concepts or methods to make contributions to areas such as (but not limited to): medicine, agriculture, forestry, exploitation and management (fisheries and wildlife), aquaculture, conservation biology, environmental sciences (including climate change and invasion biology), microbiology, and toxicology. All taxonomic groups are covered from microbes, fungi, plants and animals. In order to better serve the community, we also now strongly encourage submissions of papers making use of modern molecular and genetic methods (population and functional genomics, transcriptomics, proteomics, epigenetics, quantitative genetics, association and linkage mapping) to address important questions in any of these disciplines and in an applied evolutionary framework. Theoretical, empirical, synthesis or perspective papers are welcome.
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