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Mixed evidence for reduced local adaptation in wild salmon resulting from interbreeding with escaped farmed salmon: complexities in hybrid fitness

机译:与逃逸的养殖鲑鱼杂交繁殖导致野生鲑鱼局部适应性降低的混合证据:混合适应性的复杂性

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摘要

Interbreeding between artificially-selected and wild organisms can have negative fitness consequences for the latter. In the Northwest Atlantic, farmed Atlantic salmon recurrently escape into the wild and enter rivers where small, declining populations of wild salmon breed. Most farmed salmon in the region derive from an ancestral source population that occupies a nonacidified river (pH 6.0–6.5). Yet many wild populations with which escaped farmed salmon might interbreed inhabit acidified rivers (pH 4.6–5.2). Using common garden experimentation, and examining two early-life history stages across two generations of interbreeding, we showed that wild salmon populations inhabiting acidified rivers had higher survival at acidified pH than farmed salmon or F1 farmed-wild hybrids. In contrast, however, there was limited evidence for reduced performance in backcrosses, and F2 farmed-wild hybrids performed better or equally well to wild salmon. Wild salmon also survived or grew better at nonacidified than acidified pH, and wild and farmed salmon survived equally well at nonacidified pH. Thus, for acid tolerance and the stages examined, we found some evidence both for and against the theory that repeated farmed-wild interbreeding may reduce adaptive genetic variation in the wild and thereby negatively affect the persistence of depleted wild populations.
机译:人工选择的生物与野生生物之间的杂交可能会对后者产生不利的适应性后果。在西北大西洋,养殖的大西洋鲑鱼经常逃逸到野外,进入河流,那里的野生鲑鱼种群数量不断减少。该地区大多数养殖鲑鱼均来自祖先种群,该种群源于未酸化的河流(pH 6.0-6.5)。然而,许多逃脱养殖鲑鱼的野生种群可能会在酸性河(pH 4.6-5.2)中繁殖。使用普通的花园实验,并研究了两代杂交的两个早期生命历史阶段,我们发现,居住在酸化河流中的野生鲑鱼种群在酸化pH值下的存活率高于养殖鲑鱼或F1养殖野生杂交体。但是,与此相反,仅有有限的证据表明回交表现降低,而F2养殖的野生杂种表现得比野生鲑鱼更好或同样好。野生鲑鱼在非酸化条件下也能生存或生长得比酸化的pH更好,野生鲑鱼和养殖鲑鱼在非酸化条件下同样能生存。因此,对于耐酸性和所考察的阶段,我们发现了一些证据,支持和反对这样的理论,即反复进行的野生野生杂交可以减少野生环境中的适应性遗传变异,从而对枯竭的野生种群的持久性产生负面影响。

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