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Impact of climate change and human-mediated introgression on southern European Atlantic salmon populations

机译:气候变化和人为介导的渗入对欧洲南部大西洋鲑鱼种群的影响

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摘要

This study focuses on temporal changes in Atlantic salmon (Salmo salar) populations from the vulnerable periphery of the species range (northern Spain). Using microsatellite markers to assess population structuring and introgression of exogenous genes in four different temporal samples collected across 20 years, we have determined the relative weights of climate and stocking practices in shaping contemporary regional population genetic patterns. Climate, represented by the North Atlantic Oscillation Index, was identified as the main factor for determining the level of population genetic differentiation. Populations within the region have become homogenized through gene flow enhanced by straying of adult salmon from natal rivers and subsequent interchange of genes among rivers due to warmer temperatures. At the same time, and in line with documented changes in stock transfer strategies, evidence of genetic introgression from past stock transfers has decreased throughout the study period, becoming a secondary factor in erasing population structuring. The ability to disentangle the effects of climatic changes and anthropogenic factors (fisheries management practices) is essential for effective long-term conservation of this iconic species. We emphasize the importance of evaluating all factors which may be linked to stocking practices in vulnerable species, particularly those sensitive to climate change.
机译:这项研究的重点是该物种范围外围脆弱地区(西班牙北部)大西洋鲑(Salmo salar)种群的时间变化。使用微卫星标记评估20年来收集的四个不同时间样本中的外源基因的种群结构和基因渗入,我们确定了塑造当代区域人口遗传模式的气候和放养实践的相对权重。以北大西洋涛动指数为代表的气候被确定为决定种群遗传分化水平的主要因素。该区域内的种群通过流经成年河流成年鲑的成年鲑鱼以及随后由于温度升高而在河川之间进行基因互换而增强了基因流动,从而使其同质化。同时,与文献记载的种群转移策略的变化相一致,在整个研究期间,过去种群转移引起的基因渗入的证据有所减少,成为消除种群结构的次要因素。消除气候变化和人为因素(渔业管理实践)影响的能力对于有效地长期保护这一标志性物种至关重要。我们强调评估所有可能与脆弱物种尤其是对气候变化敏感的物种的放养做法有关的因素的重要性。

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