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Winning the invasion roulette: escapes from fish farms increase admixture and facilitate establishment of non-native rainbow trout

机译:赢得入侵轮盘:从养鱼场逃脱增加混合并促进非本地虹鳟的建立

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摘要

Aquaculture is a major source of invasive aquatic species, despite the fact that cultured organisms often have low genetic diversity and tend to be maladapted to survive in the wild. Yet, to what extent aquaculture escapees become established by means of high propagule pressure and multiple origins is not clear. We analysed the genetic diversity of 15 established populations and four farmed stocks of non-native rainbow trout in Chile, a species first introduced for recreational fishing around 1900, but which has in recent decades escaped in large numbers from fish farms and become widespread. Aquaculture propagule pressure was a good predictor of the incidence of farm escapees, which represented 16% of all free-ranging rainbow trout and were present in 80% of the study rivers. Hybrids between farm escapes and established trout were present in all rivers at frequencies ranging between 7 and 69%, and population admixture was positively correlated with genetic diversity. We suggest that non-native salmonids introduced into the Southern Hemisphere could benefit from admixture because local adaptations may not have yet developed, and there may be initially little fitness loss resulting from outbreeding depression.
机译:水产养殖是入侵水生物种的主要来源,尽管事实是养殖生物通常具有较低的遗传多样性,并且往往适应不良而无法在野外生存。然而,尚不清楚在多大压力下通过高繁殖力和多种来源建立水产养殖逃逸场所。我们分析了智利15个已建立种群和4种非本地虹鳟养殖种群的遗传多样性,该物种是在1900年左右首次引入休闲捕鱼的,但近几十年来已从养鱼场大量逃脱并变得广泛。水产养殖繁殖体压力很好地预测了农场逃逸者的发生率,占所有放养虹鳟的16%,并且在80%的研究河流中都存在。所有河流中都存在着农场逃逸和鳟鱼之间的杂种,频率介于7%和69%之间,种群混合与遗传多样性呈正相关。我们建议引入南半球的非本地鲑科鱼类可从混合中受益,因为可能尚未发展出局部适应性,并且最初因近亲抑郁而造成的适应性丧失可能很小。

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