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Variation in juvenile growth rates among and within latitudinal populations of the medaka

机译:aka高地的纬度种群之间和之内的青少年增长率的变化

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摘要

In ectotherms, lower temperatures at high latitudes would theoretically reduce annual growth rates of individuals. If slower growth and resulting smaller body size reduce fitness, individuals at high latitudes may evolve compensatory growth. This study compares individual growth rates among and within 12 latitudinal populations of the medaka (Oryzias latipes). Growth rates during juvenile stage were measured in a common, temperature-controlled (28pC) environment. The results revealed that juvenile growth rates differed significantly among the populations. Growth rates were, moreover, significantly correlated with latitudes of source populations, such that higher-latitude individuals grew faster. Significant variation in growth rates among full-sib families within populations was also demonstrated. The results strongly suggest that higher-latitude O. latipes have acquired a greater capacity for growth as an adaptation to shorter growing seasons (which would reduce annual growth rates), thus refuting probability processes, i.e., genetic drift, founder, or bottleneck effects, as a cause of the among-population variation.
机译:在理论上,在高纬度地区降低温度理论上会降低个人的年增长率。如果较慢的生长以及由此导致的较小的体型降低了健康状况,则高纬度地区的人们可能会出现代偿性生长。这项研究比较了aka(Oryzias latipes)的12个纬度种群之间和之内的个体增长率。在常见的温度控制(28pC)环境中测量了少年时期的生长率。结果表明,青少年的增长率在不同人群之间存在显着差异。此外,增长率与来源人口的纬度显着相关,因此纬度较高的个体增长得更快。人口中全同胞家庭之间的增长率也存在显着差异。结果有力地表明,高纬度的油松(O. latipes)已经适应了较短的生长季节,从而获得了更大的生长能力(这会降低年增长率),从而驳斥了概率过程,例如遗传漂移,创始人或瓶颈效应,导致人口差异的原因。

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