首页> 外文期刊>Evolution: International Journal of Organic Evolution >r- and K-selection in fluctuating populations is determined by the evolutionary trade-off between two fitness measures: Growth rate and lifetime reproductive success
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r- and K-selection in fluctuating populations is determined by the evolutionary trade-off between two fitness measures: Growth rate and lifetime reproductive success

机译:波动群体中的R-和K选择由两个健身措施之间的进化权衡决定:增长率和终身生殖成功

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摘要

In a stable environment, evolution maximizes growth rates in populations that are not density regulated and the carrying capacity in the case of density regulation. In a fluctuating environment, evolution maximizes a function of growth rate, carrying capacity and environmental variance, tending to r-selection and K-selection under large and small environmental noise, respectively. Here we analyze a model inwhich birth and death rates depend on density through the same function but with independent strength of density dependence. As a special case, both functions may be linear, corresponding to logistic dynamics. It is shown that evolution maximizes a function of the deterministic growth rate r_0 and the lifetime reproductive success (LRS) R_0, both defined at small densities, as well as the environmental variance. Under large noise this function is dominated by r_0 and average lifetimes are small, whereas R_0 dominates and lifetimes are larger under small noise. Thus, K-selection is closely linked to selection for large R_0 so that evolution tends to maximize LRS in a stable environment. Consequently, different quantities (r_0 and R_0) tend to be maximized at low and high densities, respectively, favoring density-dependent changes in the optimal life history.
机译:在稳定的环境中,进化最大化在密度调节的密度调节的群体中的生长速率和携带能力。在一个波动的环境中,进化最大化了生长速率,承载能力和环境方差,分别趋于大小环境噪声的r-selection和k选择。在这里,我们分析了一个模型的出生和死亡率取决于密度通过相同的功能,而是具有独立的密度依赖性。作为一个特殊情况,这两个功能都可以是线性的,对应于逻辑动态。结果表明,演化最大化了确定性生长速率R_0的函数和终身生殖成功(LRS)R_0,两者在小密度下限定,以及环境方差。在很大的噪音下,该功能由R_0主导,平均寿命小,而R_0主导和寿命在小噪音下较大。因此,K选择与大型R_0的选择密切相关,使得进化趋于最大化LR在稳定的环境中。因此,不同的数量(R_0和R_0)倾向于在低密度和高密度下最大化,偏好于最佳寿命历史中的密度依赖性变化。

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