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Adaptive evolution of anti-predator ability promotes the diversity of prey species: Critical function analysis

机译:反捕食能力的适应性进化促进了捕食物种的多样性:关键功能分析

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摘要

In this paper, with the method of adaptive dynamics and critical function analysis, we investigate the evolutionary diversification of prey species. We assume that prey species can evolve safer strategies such that it can reduce the predation risk, but this has a cost in terms of its reproduction. First, by using the method of critical function analysis, we identify the general properties of trade-off functions that allow for continuously stable strategy and evolutionary branching in the prey strategy. It is found that if the trade-off curve is globally concave, then the evolutionarily singular strategy is continuously stable. However, if the trade-off curve is concave-convex-concave and the prey's sensitivity to crowding is not strong, then the evolutionarily singular strategy may be an evolutionary branching point, near which the resident and mutant prey can coexist and diverge in their strategies. Second, we find that after branching has occurred in the prey strategy, if the trade-off curve is concave-convex-concave, the prey population will eventually evolve into two different types, which can coexist on the long-term evolutionary timescale. The algebraical analysis reveals that an attractive dimorphism will always be evolutionarily stable and that no further branching is possible for the concave-convex-concave trade-off relationship.
机译:本文采用自适应动力学和临界函数分析的方法,研究了捕食物种的进化多样性。我们假设猎物物种可以进化出更安全的策略,从而可以降低捕食风险,但是在繁殖方面会付出一定的代价。首先,通过使用关键函数分析的方法,我们确定了权衡函数的一般属性,这些函数允许在猎物策略中持续稳定的策略和进化分支。发现如果折衷曲线是全局凹的,那么进化奇异策略是连续稳定的。但是,如果权衡曲线是凹凸的,并且猎物对拥挤的敏感性不强,那么进化奇异策略可能是进化分支,居民和变异猎物可以在该分支附近共存并偏离策略。其次,我们发现在猎物策略中出现分支之后,如果权衡曲线为凹凸曲线,则猎物种群最终将演化为两种不同的类型,可以在长期演化时间尺度上共存。代数分析表明,有吸引力的二态性在进化上将始终是稳定的,并且对于凹凸关系的进一步分支是不可能的。

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