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Low temperature and low salinity drive putatively adaptive growth differences in populations of threespine stickleback

机译:低温和低盐度在三棘棘背种群中驱动可能的适应性生长差异

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摘要

Colonisation can expose organisms to novel combinations of abiotic and biotic factors and drive adaptive divergence. Yet, studies investigating the interactive effects of multiple abiotic factors on the evolution of physiological traits remain rare. Here we examine the effects of low salinity, low temperature, and their interaction on the growth of three North American populations of threespine stickleback (Gasterosteus aculeatus). In north-temperate freshwater habitats, stickleback populations experience a combination of low salinity and low winter temperatures that are not experienced by the ancestral marine and anadromous populations. Here we show that both salinity and temperature, and their interaction, have stronger negative effects on marine and anadromous populations than a freshwater population. Freshwater stickleback showed only a ~20% reduction in specific growth rate when exposed to 4 °C, while marine and anadromous stickleback showed sharp declines (82% and 74% respectively) under these conditions. The modest decreases in growth in freshwater stickleback in fresh water in the cold strongly suggest that this population has the capacity for physiological compensation to offset the negative thermodynamic effects of low temperature on growth. These results are suggestive of adaptive evolution in response to the interactive effects of low salinity and low temperature during freshwater colonisation.
机译:殖民化会使生物体接触到非生物和生物因子的新颖组合,并推动适应性分化。然而,研究多种非生物因素对生理性状进化的相互作用的研究仍然很少。在这里,我们研究了低盐度,低温及其相互作用对北美三脊背棘鱼(Gasterosteus aculeatus)生长的影响。在北温带淡水生境中,stick背种群经历了盐度低和冬季气温低的组合,这是祖先海洋和浮生种群所没有的。在这里,我们表明盐度和温度以及它们之间的相互作用比淡水种群对海洋和浮生种群具有更大的负面影响。在这些条件下,暴露于4 C时,淡水棘背鱼的比重增长率仅降低约20%,而海洋和无脊背棘背鱼的比重却急剧下降(分别为82%和74%)。寒冷地区淡水中的淡水棘背鱼生长的适度下降强烈表明该种群具有生理补偿能力,可以抵消低温对生长的负面热力学影响。这些结果表明淡水定居过程中响应低盐度和低温相互作用的适应性进化。

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