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The evolution of anisogamy: a game-theoretic approach.

机译:异性恋的演变:一种博弈论方法。

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摘要

A popular theory has proposed that anisogamy originated through disruptive selection acting on an ancestral isogamous population, though recent work has emphasized the importance of other factors in its evolution. We re-examine the disruptive selection theory, starting from an isogamous population with two mating types and taking into account the functional relationship, g(m), between the fitness of a gamete and its size, m, as well as the relationship, f(S), between the fitness of a zygote and its size, S. Evolutionary game theory is used to determine the existence and continuous stability of isogamous and anisogamous strategies for the two mating types under various models for the two functions g(m) and f(S). In the ancestral unicellular state, these two functions are likely to have been similar; this leads to isogamy whether they are sigmoidal or concave, though in the latter case allowance must be made for a minimal gamete size. The development of multicellularity may leave g(m) relatively unchanged while f(S) moves to the right, leading to the evolution of anisogamy. Thus, the disruptive selection theory provides a powerful explanation of the origin of anisogamy, though other selective forces may have been involved in the subsequent specialization of micro- and macrogametes.
机译:流行的理论认为,同性异性起源于对祖先同性配偶群体的破坏性选择,尽管最近的工作强调了其他因素在其进化中的重要性。我们从具有两种交配类型的同性配偶群体开始,并考虑配子的适应性与其大小m之间的函数关系g(m)以及关系f,来重新研究破坏性选择理论(S),在合子的适合度及其大小之间。S.进化博弈论用于确定两种函数g(m)和(g)的各种模型下两种交配类型的同配​​和同配策略的存在和连续稳定性。 f(S)。在祖先单细胞状态下,这两个功能可能相似。尽管无论是乙状还是凹形,这都会导致同性配偶,尽管在后一种情况下,必须允许最小配子尺寸。多细胞性的发展可能使g(m)相对保持不变,而f(S)向右移动,从而导致异性同构的发展。因此,破坏性选择理论为异性配偶的起源提供了有力的解释,尽管其他选择力可能参与了随后的微型配子和大型配子的专门化。

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