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Optimal reproductive phenology under size‐dependent cannibalism

机译:相依食人主义下的最佳生殖物候

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摘要

Intra‐cohort cannibalism is an example of a size‐mediated priority effect. If early life stages cannibalize slightly smaller individuals, then parents face a trade‐off between breeding at the best time for larval growth or development and predation risk from offspring born earlier. This game‐theoretic situation among parents may drive adaptive reproductive phenology toward earlier breeding. However, it is not straightforward to quantify how cannibalism affects seasonal egg fitness or to distinguish emergent breeding phenology from alternative adaptive drivers. Here, we devise an age‐structured game‐theoretic mathematical model to find evolutionary stable breeding phenologies. We predict how size‐dependent cannibalism acting on eggs, larvae, or both changes emergent breeding phenology and find that breeding under inter‐cohort cannibalism occurs earlier than the optimal match to environmental conditions. We show that emergent breeding phenology patterns at the level of the population are sensitive to the ontogeny of cannibalism, that is, which life stage is subject to cannibalism. This suggests that the nature of cannibalism among early life stages is a potential driver of the diversity of reproductive phenologies seen across taxa and may be a contributing factor in situations where breeding occurs earlier than expected from environmental conditions.
机译:群组内同类相食是规模介导的优先效应的一个例子。如果早期阶段蚕食了较小的个体,那么父母将面临在最佳时期进行幼虫生长或发育的繁殖与早期出生后代的捕食风险之间的权衡。父母之间的这种博弈论情况可能会促使适应性生殖物候趋向于早期繁殖。然而,要量化食人行为如何影响季节性卵的适应性或将新出现的育种物候学与其他适应性驱动因素区分开来,并不是一件容易的事。在这里,我们设计了一个年龄结构的博弈论数学模型来寻找进化稳定的育种物候。我们预测了大小相依的食人族如何作用于卵,幼虫或两者,如何改变新出现的育种物候,并发现在同类人间食人族下进行的繁殖要早于与环境条件的最佳匹配。我们表明,在种群水平上出现的繁殖育种物候模式对自相残杀的个体发育敏感,也就是说,哪个生命阶段受到自相残杀的影响。这表明,食人症在生命早期阶段的性质是整个分类单元中生殖物候学多样性的潜在驱动因素,并且可能是在繁殖比环境条件早于预期的情况下起作用的因素。

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