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首页> 外文期刊>The American Naturalist: Devoted to the Conceptual Unification of the Biological Sciences >Energetic Physiology Mediates Individual Optimization of Breeding Phenology in a Migratory Arctic Seabird
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Energetic Physiology Mediates Individual Optimization of Breeding Phenology in a Migratory Arctic Seabird

机译:高能生理介导了迁徙北极海鸟繁殖物候的个体优化

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The influence of variation in individual state on key reproductive decisions impacting fitness is well appreciated in evolutionary ecology. Rowe et al. (1994) developed a condition-dependent individual optimization model predicting that three key factors impact the ability of migratory female birds to individually optimize breeding phenology to maximize fitness in seasonal environments: arrival condition, arrival date, and ability to gain in condition on the breeding grounds. While empirical studies have confirmed that greater arrival body mass and earlier arrival dates result in earlier laying, no study has assessed whether individual variation in energetic management of condition gain effects this key fitness-related decision. Using an 8-year data set from over 350 prebreeding female Arctic common eiders (Somateria mollissima), we tested this component of the model by examining whether individual variation in two physiological traits influencing energetic management (plasma triglycerides: physiological fattening rate; baseline corticosterone: energetic demand) predicted individual variation in breeding phenology after controlling for arrival date and body mass. As predicted by the optimization model, individuals with higher fattening rates and lower energetic demand had the earliest breeding phenology (shortest delays between arrival and laying; earliest laying dates). Our results are the first to empirically determine that individual flexibility in prebreeding energetic management influences key fitness-related reproductive decisions, suggesting that individuals have the capacity to optimally manage reproductive investment.
机译:在进化生态学中,个体状态的变化对影响适应性的关键生殖决策的影响是众所周知的。 Rowe等。 (1994)开发了一个条件依赖的个体优化模型,该模型预测了三个关键因素会影响候鸟成年个体优化育种物候以最大程度地适应季节性环境的能力:到达条件,到达日期和繁殖条件的获得能力理由。尽管经验研究已经证实,更大的到达体重和更早的到达日期会导致更早的产蛋,但尚无研究评估状况增强的能量管理中的个体差异是否会影响这一与健身有关的关键决定。我们使用了来自350多头雌性北极普通绒毛猴(Somateria mollissima)的8年数据集,通过检查两个生理特征的个体差异是否影响能量管理(血浆甘油三酸酯:生理增脂率;基线皮质酮)来测试模型的这一组成部分:能量需求)控制到达日期和体重后,预测了繁殖物候的个体差异。正如优化模型所预测的那样,育肥率较高且能量需求较低的个体具有最早的育种物候(到达和产蛋之间的延迟最短;产蛋日期最早)。我们的结果是第一个凭经验确定个体在预育精力管理中的灵活性会影响与健身相关的关键生殖决策的建议,这表明个体有能力最佳地管理生殖投资。

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