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Hybridization effects on phenotypic plasticity: experimental compensatory growth in farmed-wild Atlantic salmon

机译:杂交对表型可塑性的影响:养殖野生大西洋鲑鱼的实验性补偿性生长。

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摘要

Compensatory growth (CG) is a means by which organisms can increase their growth rate above their routine growth rate after a period of environmentally induced growth depression. Despite a focus on the implications of CG for aquaculture, little research has evaluated the effect of domesticated–wild hybridization on CG. Any deviation in the mean compensatory ability of hybrids relative to their wild progenitors, or any notable costs to compensation in terms of body morphology, could affect the ability of hybrids to persist in changing environments. We compared CG of farmed, wild and hybrid (F1, F2, wild backcross) juvenile Atlantic salmon (Salmo salar). Wild salmon experienced both lower routine and CG rates relative to farmed salmon, while hybrids were intermediate. However, the compensatory responses (slopes of the reaction norms) for each cross were parallel, indicating that hybridization did not affect the CG response itself. Morphological costs to compensation were not detected. In addition to contributing to risk assessments of the consequences of interbreeding between wild and escaped domesticated organisms, we conclude that plasticity studies on domesticated–wild hybrids and their progenitors are useful for testing basic predictions about the evolution of phenotypic plasticity, as well as understanding the evolutionary significance of hybrids.
机译:补偿性生长(CG)是一种方法,通过这种方法,生物体可以在经过一段时间的环境诱导的生长抑制后将其生长速度提高到高于常规生长速度。尽管关注CG对水产养殖的影响,但很少有研究评估驯化-野生杂交对CG的影响。杂种相对于其野生祖细胞的平均代偿能力的任何偏差,或在身体形态方面进行补偿的任何显着成本,都可能影响杂种在变化的环境中持续生存的能力。我们比较了养殖大西洋鲑(Salmo salar),野生和杂种(F1,F2,野生回交)的CG。与养殖鲑鱼相比,野生鲑鱼的常规和CG率均较低,而杂种为中等。但是,每个杂交的代偿反应(反应标准的斜率)是平行的,表明杂交并不影响CG反应本身。没有发现补偿的形态学费用。除了有助于对野生和逃逸的驯化生物之间的杂交后果进行风险评估之外,我们得出的结论是,对驯化的野生杂交种及其祖先进行的可塑性研究对于测试关于表型可塑性演变的基本预测以及理解杂种的进化意义。

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