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褐鳟早期生活史特征的本地适应性:对气候变化适应性的影响。

Local adaptation in brown trout early life-history traits: implications for climate change adaptability.

作者信息

Jensen Lasse Fast, Hansen Michael M, Pertoldi Cino, Holdensgaard Gert, Mensberg Karen-Lise Dons, Loeschcke Volker

机构信息

National Institute of Aquatic Resources, Technical University of Denmark, Vejlsøvej 39, 8600 Silkeborg, Denmark.

出版信息

Proc Biol Sci. 2008 Dec 22;275(1653):2859-68. doi: 10.1098/rspb.2008.0870.

Abstract

Knowledge of local adaptation and adaptive potential of natural populations is becoming increasingly relevant due to anthropogenic changes in the environment, such as climate change. The concern is that populations will be negatively affected by increasing temperatures without the capacity to adapt. Temperature-related adaptability in traits related to phenology and early life history are expected to be particularly important in salmonid fishes. We focused on the latter and investigated whether four populations of brown trout (Salmo trutta) are locally adapted in early life-history traits. These populations spawn in rivers that experience different temperature conditions during the time of incubation of eggs and embryos. They were reared in a common-garden experiment at three different temperatures. Quantitative genetic differentiation (QST) exceeded neutral molecular differentiation (FST) for two traits, indicating local adaptation. A temperature effect was observed for three traits. However, this effect varied among populations due to locally adapted reaction norms, corresponding to the temperature regimes experienced by the populations in their native environments. Additive genetic variance and heritable variation in phenotypic plasticity suggest that although increasing temperatures are likely to affect some populations negatively, they may have the potential to adapt to changing temperature regimes.

摘要

由于环境的人为变化,如气候变化,了解自然种群的局部适应性和适应潜力变得越来越重要。人们担心,种群在没有适应能力的情况下会受到气温上升的负面影响。在鲑科鱼类中,与物候和早期生活史相关的性状中与温度相关的适应性预计尤为重要。我们关注后者,并研究了四个褐鳟(Salmo trutta)种群在早期生活史性状上是否存在局部适应性。这些种群在卵和胚胎孵化期间在经历不同温度条件的河流中产卵。它们在三种不同温度的共同花园实验中饲养。两个性状的数量遗传分化(QST)超过了中性分子分化(FST),表明存在局部适应性。观察到三个性状有温度效应。然而,由于局部适应的反应规范,这种效应在种群间有所不同,这与种群在其原生环境中经历的温度模式相对应。加性遗传方差和表型可塑性的遗传变异表明,尽管气温升高可能会对一些种群产生负面影响,但它们可能有潜力适应不断变化的温度模式。

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