Group of Evolution, Ecology & Conservation (EECO), Universidad del Quindío, Carrera 15, Calle 12N, 630004, Armenia, Quindío, Colombia.
Cavanilles Institute of Biodiversity and Evolutionary Biology, University of Valencia, Paterna, Spain.
Sci Rep. 2024 Aug 20;14(1):19342. doi: 10.1038/s41598-024-69883-6.
Environmental gradients in the sea may coincide with phenotypic or genetic gradients resulting from an evolutionary balance between selection and dispersal. The population differentiation of the swimming crab, Liocarcinus depurator, an important by-catch species in the Mediterranean Sea and North-East Atlantic, was assessed using both genetic and morphometric approaches. A total of 472 specimens were collected along its distribution area, and 17 morphometric landmarks, one mitochondrial gene (COI) and 11 polymorphic microsatellite markers were scored in 350, 287 and 280 individuals, respectively. Morphometric data lacked significant differences, but genetic analyses showed significant genetic differentiation between Atlantic and Mediterranean populations, with a steeper gradient in COI compared to microsatellite markers. Interestingly, nuclear differentiation was due to an outlier locus with a gradient in the Atlantic-Mediterranean transition area overlapping with the mtDNA gradient. Such overlapping clines are likely to be maintained by natural selection. Our results suggest a scenario of past isolation with local adaptation and secondary contact between the two basins. Local adaptation during the process of vicariance may reinforce genetic differentiation at loci maintained by environmental selection even after secondary contact.
海洋中的环境梯度可能与表型或遗传梯度相吻合,这是选择和扩散之间的进化平衡的结果。利用遗传和形态计量学方法评估了游泳蟹 Liocarcinus depurator 的种群分化,Liocarcinus depurator 是地中海和东北大西洋的一种重要副渔获物种。在其分布区域共采集了 472 个样本,在 350、287 和 280 个个体中分别记录了 17 个形态计量学标志、1 个线粒体基因(COI)和 11 个多态性微卫星标记。形态计量学数据没有显著差异,但遗传分析显示大西洋和地中海种群之间存在显著的遗传分化,COI 的梯度比微卫星标记更为陡峭。有趣的是,核分化是由于一个具有梯度的局外基因座引起的,该梯度与 mtDNA 梯度在大西洋-地中海过渡区域重叠。这种重叠的渐变可能是由自然选择维持的。我们的结果表明,过去存在隔离和两个盆地之间的二次接触的情况。在隔离过程中发生的局部适应可能会在二次接触后,通过环境选择维持的基因座上进一步加强遗传分化。