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首页> 外文期刊>Evolutionary Applications >Egg size and the adaptive capacity of early life history traits in Chinook salmon (Oncorhynchus tshawytscha)
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Egg size and the adaptive capacity of early life history traits in Chinook salmon (Oncorhynchus tshawytscha)

机译:奇努克鲑鱼(Oncorhynchus tshawytscha)的卵大小和早期生活史特征的适应能力

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Offspring traits are greatly influenced by maternal effects, and these maternal effects may provide an important pathway through which populations can adapt to changing thermal environments. We investigated the effect of egg size on the among- and within-population variation in early life history traits among introduced Great Lakes Chinook salmon ( Oncorhynchus tshawytscha ) populations under varying thermal conditions. We reared Chinook salmon from three populations in a common-garden hatchery study at 6.5, 9.4, and 15.2°C and measured a variety of fitness-related traits during development. We found that most of the among-population variation in early life history traits was explained by egg size. However, the contribution of egg size to the among-population variation decreased with an increase in temperature suggesting that other effects, such as genetic, contribute at high temperature. Within populations, egg size explained much of the dam variance and maternal effect for traits in every temperature, whereas egg size generally had little to no influence on the sire variance and heritability. Overall, our results demonstrate the significant contribution egg size makes to shaping early life history phenotypes among and within populations, and suggest that egg size is an important pathway through which offspring phenotypes can evolve on contemporary timescales.
机译:后代性状在很大程度上受到母体影响,这些母体效应可能为种群适应不断变化的热环境提供了重要途径。我们调查了鸡蛋大小对在不同热条件下引入的大湖奇努克鲑(Oncorhynchus tshawytscha)种群早期生活史特征中种群内和种群内变异的影响。在一项普通的孵化场研究中,我们在6.5、9.4和15.2°C下从三个种群中饲养了奇努克鲑鱼,并在发育过程中测量了各种与健身相关的特征。我们发现,早期生活史特征中的大多数种群间变异均由卵大小解释。但是,鸡蛋大小对种群间变异的贡献随着温度的升高而降低,这表明在高温下,其他影响(例如遗传)也起作用。在种群中,卵大小解释了在每种温度下性状的大坝变异和母体效应的大部分原因,而卵大小通常对父系变异和遗传力几乎没有影响。总体而言,我们的结果表明,卵大小对塑造人群之间和内部的早期生活史表型具有重要作用,并表明卵大小是后代表型可以在当代时间尺度上进化的重要途径。

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