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Single nucleotide polymorphisms reveal a genetic cline across the north‐east Atlantic and enable powerful population assignment in the European lobster

机译:单核苷酸多态性揭示了整个东北大西洋的遗传谱系并能在欧洲龙虾中进行有力的种群分配

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摘要

Resolving stock structure is crucial for fisheries conservation to ensure that the spatial implementation of management is commensurate with that of biological population units. To address this in the economically important European lobster ( ), genetic structure was explored across the species' range using a small panel of single nucleotide polymorphisms (SNPs) previously isolated from restriction‐site‐associated DNA sequencing; these SNPs were selected to maximize differentiation at a range of both broad and fine scales. After quality control and filtering, 1,278 lobsters from 38 sampling sites were genotyped at 79 SNPs. The results revealed a pronounced phylogeographic break between the Atlantic and Mediterranean basins, while structure within the Mediterranean was also apparent, partitioned between lobsters from the central Mediterranean and the Aegean Sea. In addition, a genetic cline across the north‐east Atlantic was revealed using both putatively neutral and outlier SNPs, but the precise driver(s) of this clinal pattern—isolation by distance, secondary contact, selection across an environmental gradient, or a combination of these factors—remains undetermined. Putatively neutral markers differentiated lobsters from Oosterschelde, an estuary on the Dutch coast, a finding likely explained by past bottlenecks and limited gene flow with adjacent North Sea populations. Building on the findings of our spatial genetic analysis, we were able to test the accuracy of assigning lobsters at various spatial scales, including to basin of origin (Atlantic or Mediterranean), region of origin and sampling location. The predictive model assembled using 79 SNPs correctly assigned 99.7% of lobsters not used to build the model to their basin of origin, but accuracy decreased to region of origin and again to sampling location. These results are of direct relevance to managers of lobster fisheries and hatcheries, and provide the basis for a genetic tool for tracing the origin of European lobsters in the food supply chain.
机译:解决种群结构对于渔业保护至关重要,以确保管理的空间实施与生物种群单位的管理相称。为了解决具有重要经济意义的欧洲龙虾()中的问题,我们使用先前从限制性位点相关的DNA测序中分离出的一小部分单核苷酸多态性(SNP)在整个物种范围内探索了遗传结构;选择这些SNP可以在广泛和精细范围内最大化差异。经过质量控制和过滤后,在79个SNP位点对来自38个采样点的1278个龙虾进行了基因分型。结果表明,大西洋和地中海盆地之间有明显的植物学断裂,而地中海内部的结构也很明显,分布在地中海中部和爱琴海的龙虾之间。此外,使用推定的中性和离群单核苷酸多态性(SNPs)揭示了横跨东北大西洋的遗传系,但这种最终模式的精确驱动因素是:距离隔离,二次接触,跨环境梯度的选择或组合这些因素中的-仍未确定。推测中性的标记物将龙虾与荷兰海岸河口的Oosterschelde区别开来,这一发现可能是由于过去的瓶颈和邻近北海种群的有限基因流动所造成的。根据我们的空间遗传分析结果,我们能够测试在各种空间尺度上分配龙虾的准确性,包括分配给起源盆地(大西洋或地中海),起源区域和采样位置。使用79个SNP组装的预测模型正确地将不用于构建模型的龙虾的99.7%分配给了它们的原产地,但是准确性降低到了原产地,并再次降低了采样位置。这些结果与龙虾渔业和孵化场的管理者直接相关,并为遗传工具追踪食品供应链中欧洲龙虾的起源提供了基础。

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