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Evolution of age-dependent sex-reversal under adaptive dynamics

机译:适应动力学下年龄相关性逆转的演变

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We investigate the evolution of the age (or size) at sex-reversal in a model of sequential hermaphroditism, by means of the function-valued adaptive dynamics. The trait is the probability law of the age at sex-reversal considered as a random variable. Our analysis starts with the ecological model which was first introduced and analyzed by Calsina and Ripoll (Math Biosci 208(2), 393-418, 2007). The structure of the population is extended to a genotype class and a new model for an invading/mutant population is introduced. The invasion fitness functional is derived from the ecological setting, and it turns out to be controlled by a formula of Shaw-Mohler type. The problem of finding evolutionarily stable strategies is solved by means of infinite-dimensional linear optimization. We have found that these strategies correspond to sex-reversal at a single particular age (or size) even if the set of feasible strategies is considerably broader and allows for a probabilistic sex-reversal. Several examples, including in addition the population-dynamical stability, are illustrated. For a special case, we can show that an unbeatable size at sex-reversal must be larger than 69.3% of the expected size at death.
机译:我们通过功能值自适应动力学研究了在连续性雌雄同体模型中性逆转时年龄(或大小)的演变。性状是被视为随机变量的性别逆转年龄的概率定律。我们的分析从Calsina和Ripoll首次引入和分析的生态模型开始(Math Biosci 208(2),393-418,2007)。人口的结构扩展到一个基因型类别,并引入了一个新的入侵/突变人口模型。入侵适应度函数是从生态环境中得出的,并且证明它是由Shaw-Mohler型公式控制的。通过无限维线性优化解决了寻找进化稳定策略的问题。我们发现,这些策略对应于单个特定年龄(或年龄)的性逆转,即使可行策略的范围相当广泛并且允许概率性逆转。举例说明了几个例子,包括人口动力学稳定性。对于特殊情况,我们可以证明,逆转时无与伦比的大小必须大于死亡时预期大小的69.3%。

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