Genetic divergence and adaptation of an isolated European lobster population in the Netherlands

IF 3.1 2区 农林科学 Q1 FISHERIES ICES Journal of Marine Science Pub Date : 2024-05-08 DOI:10.1093/icesjms/fsae059
Charlie D Ellis, Josephine R Paris, Tom L Jenkins, Marnix R van Stralen, Nathalie A Steins, Jildou Schotanus, Jamie R Stevens
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Abstract

Identifying isolated populations is a key step towards enacting effective conservation management. European lobsters (Homarus gammarus) from Oosterschelde in the Netherlands are subject to fishery pressure and have previously been reported as genetically differentiated. They are also putatively of transplanted origin and have subsequently endured recent bottlenecking and environmental change. We assessed Oosterschelde lobsters to evaluate their demographic independence and appraise potential founder effects and evolutionary responses to isolation. Using restriction-site associated DNA sequencing, we genotyped 6185 single nucleotide polymorphisms across 188 individuals from 27 sites across the Atlantic range of H. gammarus to investigate population genetic diversity, structure, and potential adaptation. Our results show that Oosterschelde lobsters are genetically divergent from other stocks. We evidence extensive differentiation via both neutral and outlier loci, indicative of strong biophysical and demographic isolation, and detect signatures of reduced genetic diversity that may reflect weak founder effects or subsequent population contractions. Among outlier loci, we identify candidates for range-wide local adaptation via variants in genes of important biological functionality and link a private allele of Oosterschelde to a locus potentially conveying adaptive tolerance to environmental hypoxia. Given our findings, we advise proactive monitoring of Oosterschelde lobsters to explore whether existing management measures effectively conserve this discrete, self-recruiting population.
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荷兰一个孤立的欧洲龙虾种群的基因分化和适应性
识别孤立种群是实施有效保护管理的关键一步。荷兰奥斯特舍尔德(Oosterschelde)的欧洲龙虾(Homarus gammarus)受到渔业压力的影响,此前曾有报告称它们在基因上存在差异。这些龙虾也被认为是移植来的,随后经历了近期的瓶颈和环境变化。我们对 Oosterschelde 龙虾进行了评估,以评价其人口独立性,并评估潜在的始祖效应和对隔离的进化反应。通过限制位点相关DNA测序,我们对来自大西洋地区27个地点的188个个体的6185个单核苷酸多态性进行了基因分型,以研究种群遗传多样性、结构和潜在的适应性。我们的研究结果表明,Oosterschelde龙虾在遗传上与其他种群存在差异。我们通过中性基因位点和离群基因位点发现了广泛的分化,这表明了强烈的生物物理和人口隔离,并发现了遗传多样性降低的迹象,这可能反映了微弱的始祖效应或随后的种群收缩。在离群位点中,我们通过具有重要生物功能的基因变异,确定了在整个分布区进行局部适应的候选位点,并将 Oosterschelde 的一个私有等位基因与一个可能传递对环境缺氧的适应性耐受力的位点联系起来。鉴于我们的发现,我们建议对 Oosterschelde 龙虾进行前瞻性监测,以探索现有的管理措施是否能有效保护这一离散的、自我招募的种群。
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来源期刊
ICES Journal of Marine Science
ICES Journal of Marine Science 农林科学-海洋学
CiteScore
6.60
自引率
12.10%
发文量
207
审稿时长
6-16 weeks
期刊介绍: The ICES Journal of Marine Science publishes original articles, opinion essays (“Food for Thought”), visions for the future (“Quo Vadimus”), and critical reviews that contribute to our scientific understanding of marine systems and the impact of human activities on them. The Journal also serves as a foundation for scientific advice across the broad spectrum of management and conservation issues related to the marine environment. Oceanography (e.g. productivity-determining processes), marine habitats, living resources, and related topics constitute the key elements of papers considered for publication. This includes economic, social, and public administration studies to the extent that they are directly related to management of the seas and are of general interest to marine scientists. Integrated studies that bridge gaps between traditional disciplines are particularly welcome.
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