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Evidence of reduced individual heterogeneity in adult survival of long-lived species

机译:长寿物种成年存活中个体异质性降低的证据

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The canalization hypothesis postulates that the rate at which trait variation generates variation in the average individual fitness in a population determines how buffered traits are against environmental and genetic factors. The ranking of a species on the slow-fast continuum - the covariation among life-history traits describing species-specific life cycles along a gradient going from a long life, slow maturity, and low annual reproductive output, to a short life, fast maturity, and high annual reproductive output - strongly correlates with the relative fitness impact of a given amount of variation in adult survival. Under the canalization hypothesis, long-lived species are thus expected to display less individual heterogeneity in survival at the onset of adulthood, when reproductive values peak, than short-lived species. We tested this life-history prediction by analysing long-term time series of individual-based data in nine species of birds and mammals using capture-recapture models. We found that individual heterogeneity in survival was higher in species with short-generation time (< 3 years) than in species with long generation time (> 4 years). Our findings provide the first piece of empirical evidence for the canalization hypothesis at the individual level from the wild.
机译:渠化假说假设,性状变异产生种群平均个体适应性变化的速率决定了缓冲性状如何抵抗环境和遗传因素。物种在慢-快连续体上的排名-生命历史特征之间的协变,描述了特定物种的生命周期,其梯度范围从长寿命,缓慢成熟和低年繁殖量到寿命短,成熟快以及较高的年繁殖量-与成年生存中给定数量的变化对相对健康的影响密切相关。在渠道化假设下,因此预期长寿物种在成年期开始时(繁殖价值达到顶峰)将比短寿物种表现出更少的个体异质性。我们通过使用捕获-捕获模型分析了九种鸟类和哺乳动物中基于个体的数据的长期时间序列,从而测试了这种生命历史预测。我们发现,短代时间(<3年)的物种的生存个体异质性高于长代时间(> 4年)的物种。我们的发现为野外个体水平上的渠化假设提供了第一批经验证据。

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