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Old wine in new bottles: reaction norms in salmonid fishes

机译:新瓶装旧酒:鲑鱼的反应规范

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摘要

Genetic variability in reaction norms reflects differences in the ability of individuals, populations and ultimately species to respond to environmental change. By increasing our understanding of how genotype × environment interactions influence evolution, studies of genetic variation in phenotypic plasticity serve to refine our capacity to predict how populations will respond to natural and anthropogenic environmental variability, including climate change. Given the extraordinary variability in morphology, behaviour and life history in salmonids, one might anticipate the research milieu on reaction norms in these fishes to be empirically rich and intellectually engaging. Here, I undertake a review of genetic variability in continuous and discontinuous (threshold) norms of reaction in salmonid fishes, as determined primarily (but not exclusively) by common-garden experiments. Although in its infancy from a numerical publication perspective, there is taxonomically broad evidence of genetic differentiation in continuous, threshold and bivariate reaction norms among individuals, families and populations (including inter-population hybrids and backcrosses) for traits as divergent as embryonic development, age and size at maturity, and gene expression. There is compelling inferential evidence that plasticity is heritable and that population differences in reaction norms can reflect adaptive responses, by natural selection, to local environments. As a stimulus for future work, a series of 20 research questions are identified that focus on reaction-norm variability, selection, costs and constraints, demographic and conservation consequences, and genetic markers and correlates of phenotypic plasticity.
机译:反应规范中的遗传变异反映了个体,种群以及最终物种对环境变化的反应能力的差异。通过加深我们对基因型×环境相互作用如何影响进化的理解,对表型可塑性遗传变异的研究有助于提高我们的能力,以预测人口将如何应对自然和人为环境变化,包括气候变化。鉴于鲑鱼形态,行为和生活史的巨大差异,人们可能会期望对这些鱼类的反应规范进行研究的经验丰富并且具有智力上的吸引力。在这里,我回顾了鲑鱼鱼的连续和不连续(阈值)反应规范中的遗传变异性,这主要是(但不是专门地)由普通花园实验确定的。尽管从数字出版物的角度来看尚处于起步阶段,但在分类学上有广泛的证据表明,个体,家庭和群体(包括种群间杂种和回交)在连续,阈值和双变量反应规范中的遗传分化具有与胚胎发育,年龄不同的特征成熟时的大小,基因表达。有令人信服的推断性证据表明,可塑性是可遗传的,并且反应规范中的种群差异可以反映出通过自然选择对当地环境的适应性反应。作为对未来工作的刺激,确定了一系列20个研究问题,这些问题侧重于反应范数的变异性,选择,成本和约束,人口和保护后果以及表型可塑性的遗传标记和相关性。

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