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Resource Elasticity of Offspring Survival and the Optimal Evolution of Sex Ratios

机译:后代生存的资源弹性与性别比的最佳演变

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摘要

The fitness of any organisms includes the survival and reproductive rate of adults and the survival of their offspring. Environmental selection pressures might not affect these two aspects of an organism equally. Assuming that an organism first allocates its limited resources to maintain its survival under environmental selection pressure, our model, based on the evolutionarily stable strategy theory, surprisingly shows that the sex ratio is greatly affected by the environmental pressure intensity and by the reproductive resource elasticity of offspring survival. Moreover, the concept of the resource elasticity of offspring survival intrinsically integrates the ecological concepts of K selection and r selection. The model shows that in a species with reproductive strategy K, increased environmental selection pressure will reduce resource allocation to the male function. By contrast, in a species with reproductive strategy r, harsher environmental selection pressure will increase allocation to the male function. The elasticity of offspring survival might vary not only across species, but also across many other factors affecting the same species (e.g., age structure, spatial heterogeneity), which explains sex ratio differences across species or age structures and spatial heterogeneity in the same species.
机译:任何生物体的健康状况都包括成年动物的存活率和繁殖率以及其后代的存活率。环境选择压力可能不会平等地影响生物体的这两个方面。假设有机体首先分配其有限的资源以在环境选择压力下维持其生存,我们的模型基于进化稳定策略理论,出人意料地表明性别比受环境压力强度和生殖资源弹性的影响很大。后代的生存。此外,后代生存资源弹性的概念本质上整合了K选择和r选择的生态概念。该模型表明,在具有繁殖策略K的物种中,环境选择压力的增加将减少男性功能的资源分配。相反,在具有繁殖策略r的物种中,更严格的环境选择压力将增加对雄性功能的分配。后代生存的弹性不仅可能在物种之间变化,而且在影响同一物种的许多其他因素(例如年龄结构,空间异质性)之间也可能有所不同,这解释了物种间性别比差异或同一物种的年龄结构和空间异质性。

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