人类伴侣关系的进化是男性偏好的交配性别比例的结果?

IF 2 4区 数学 Q2 BIOLOGY
Matthew C Nitschke, Viney Kumar, Katrina E Milliner, Kristen Hawkes, Peter S Kim
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引用次数: 0

摘要

与我们最近的灵长类亲戚相比,人类的生命历史更长寿,其中包括一个独特的绝经后生命阶段。考虑到哺乳动物的生殖生理,雌性在生命早期建立了有限的细胞储备,这些细胞可以成为卵母细胞,然后通过细胞死亡不断消耗,而雄性在成年期产生新的精子,绝经后阶段使可育池中的性别比例,称为成年性别比例(ASR),男性偏向。此外,这会影响到一个更精细的比率,即操作性别比(OSR),定义为目前能够怀孕的男性与女性的比例。在这里,我们构建了一个ODE模型,其中雄性通过多次交配或配偶保护策略来争夺父权。我们的重点是研究具有不同生活史的种群之间策略选择的差异,其中包括成年雌性不同的生育后阶段。通过对系统的仿真,确定了优势策略及其对各种参数组合的依赖关系。我们的研究结果表明,OSR和ASR的增加与优势策略从多次交配到保护的变化密切相关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evolution of Human Pair Bonds as a Consequence of Male-Biased Mating Sex Ratios?

Compared to our closest primate relatives, human life history involves greater longevity, which includes a distinctive postmenopausal life stage. Given mammalian reproductive physiology in which females build a finite stock of cells that can become oocytes early in life, which then continuously deplete mostly through cell death while males produce new sperm throughout adulthood, the postmenopausal stage makes the sex ratio in the fertile pool, called the adult sex ratio (ASR), male biased. Additionally, this affects a more fine-grained ratio, the operational sex ratio (OSR), defined as the ratio of males to females currently able to conceive. Here, we construct an ODE model in which males compete for paternities using either a multiple-mating or mate-guarding strategy. Our focus is on investigating the differences of strategy choice between populations with varying life histories, which include a distinct post-fertile stage for adult females. By simulating the system, we determine the dominant strategy and its dependence on various parameter combinations. Our results show that an increase in OSR and ASR correlates well with a change in the dominant strategy from multiple mating to guarding.

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来源期刊
CiteScore
3.90
自引率
8.60%
发文量
123
审稿时长
7.5 months
期刊介绍: The Bulletin of Mathematical Biology, the official journal of the Society for Mathematical Biology, disseminates original research findings and other information relevant to the interface of biology and the mathematical sciences. Contributions should have relevance to both fields. In order to accommodate the broad scope of new developments, the journal accepts a variety of contributions, including: Original research articles focused on new biological insights gained with the help of tools from the mathematical sciences or new mathematical tools and methods with demonstrated applicability to biological investigations Research in mathematical biology education Reviews Commentaries Perspectives, and contributions that discuss issues important to the profession All contributions are peer-reviewed.
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