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Synergy from reproductive division of labor and genetic complexity drive the evolution of sex

机译:生殖分工和遗传复杂性的协同作用驱动性别的演变

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摘要

Computer experiments that mirror the evolutionary dynamics of sexual and asexual organisms as they occur in nature were used to test features proposed to explain the evolution of sexual recombination. Results show that this evolution is better described as a network of interactions between possible sexual forms, including diploidy, thelytoky, facultative sex, assortation, bisexuality, and division of labor between the sexes, rather than a simple transition from parthenogenesis to sexual recombination. Diploidy was shown to be fundamental for the evolution of sex; bisexual reproduction emerged only among anisogamic diploids with a synergistic division of reproductive labor; and facultative sex was more likely to evolve among haploids practicing assortative mating. Looking at the evolution of sex as a complex system through individual-based simulations explains better the diversity of sexual strategies known to exist in nature, compared to classical analytical models.
机译:计算机实验反映了性和无性生物在自然界中发生的进化动力学,用于测试提出的解释性重组过程的特征。结果表明,这种进化更好地描述为可能的性形式之间的相互作用网络,包括二倍体,食性,兼性,分类,双性恋和两性之间的劳动分工,而不是从单性生殖到性重组的简单过渡。二倍体被证明是性别进化的基础。双性生殖仅在具有生殖分工协同作用的异异二倍体中出现。进行性交交配的单倍体之间容易发生兼性。与传统的分析模型相比,通过基于个体的模拟将性进化视为一个复杂的系统,可以更好地说明自然界已知的性策略的多样性。

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