Genome-wide analysis of the harbour porpoise (Phocoena phocoena) indicates isolation-by-distance across the North Atlantic and potential local adaptation in adjacent waters

IF 2 3区 环境科学与生态学 Q2 BIODIVERSITY CONSERVATION
Marijke Autenrieth, Katja Havenstein, Binia De Cahsan, Julia Canitz, Harald Benke, Anna Roos, Christophe Pampoulie, Guðjón Már Sigurðsson, Ursula Siebert, Morten Tange Olsen, Vincent Biard, Mads Peter Heide-Jørgensen, Ayaka Amaha Öztürk, Bayram Öztürk, John W. Lawson, Ralph Tiedemann
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Abstract

The harbour porpoise (Phocoena phocoena), a highly mobile cetacean species of the Northern Hemisphere, inhabits basins that vary broadly in salinity, temperature, and food availability; such variation can drive divergent adaptation among local populations. To shed light on range-wide population structure and local adaptation, we generated ddRAD sequencing data spanning the entire North Atlantic and the Baltic Sea, as well as the Black Sea as an outgroup, and mapped this data to the high-quality draft genome of the species. We identified 11,978 genome-wide SNPs from 150 individuals, which we used for population genetic inferences. Our results support genetic differentiation between North Atlantic and Baltic Sea populations, with Kattegat as a transition zone. Across the North Atlantic the population differentiation is subtle from west to east, congruent with an isolation-by-distance pattern, but indicates a separation of southern North Sea harbour porpoises. We identified genomic outlier regions, i.e., scaffold regions where SNPs with high FST across North Atlantic populations co-occur. Together with the draft genome annotation, these regions could point towards candidate genes for differential local adaptation processes among populations. Furthermore, they enable the development of a SNP panel for routine population assignment which will be useful in a conservation and management context. We identified six outlier loci putatively under positive selection, based on the population structure inferred from the complete SNP set. Our study highlights the value of genome resources in conservation and management and provides a crucial additional resource for the study of harbour porpoise evolution and phylogeny.

Abstract Image

对海港鼠海豚(Phocoena Phocoena)的全基因组分析表明,它们在北大西洋的距离隔离以及在邻近水域的潜在局部适应能力
港海豚(Phocoena Phocoena)是北半球一种高度流动的鲸类动物,栖息在盐度、温度和食物供应变化很大的盆地;这种变异会促使当地人群产生不同的适应性。为了揭示大范围的种群结构和局部适应性,我们生成了横跨整个北大西洋和波罗的海以及黑海的ddRAD测序数据,并将这些数据映射到该物种的高质量基因组草图中。我们从150个个体中鉴定出11978个全基因组snp,并将其用于群体遗传推断。我们的结果支持北大西洋和波罗的海种群之间的遗传分化,卡特加特是一个过渡区。横跨北大西洋的种群分化从西到东是微妙的,符合按距离隔离的模式,但表明北海南部港口鼠海豚是分离的。我们确定了基因组异常区域,即北大西洋人群中具有高FST的snp共同发生的支架区域。与基因组注释草案一起,这些区域可能指向种群之间差异局部适应过程的候选基因。此外,它们能够开发用于常规种群分配的SNP面板,这将在保护和管理环境中有用。基于从完整SNP集推断的种群结构,我们在正选择下确定了6个离群位点。本研究突出了基因组资源在保护和管理中的价值,并为港湾鼠海豚进化和系统发育的研究提供了重要的额外资源。
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来源期刊
Conservation Genetics
Conservation Genetics 环境科学-生物多样性保护
CiteScore
3.80
自引率
4.50%
发文量
58
审稿时长
1 months
期刊介绍: Conservation Genetics promotes the conservation of biodiversity by providing a forum for data and ideas, aiding the further development of this area of study. Contributions include work from the disciplines of population genetics, molecular ecology, molecular biology, evolutionary biology, systematics, forensics, and others. The focus is on genetic and evolutionary applications to problems of conservation, reflecting the diversity of concerns relevant to conservation biology. Studies are based on up-to-date technologies, including genomic methodologies. The journal publishes original research papers, short communications, review papers and perspectives.
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