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雌雄配子大小不同并不总是促进雄性交配竞争特征的进化。

Anisogamy Does Not Always Promote the Evolution of Mating Competition Traits in Males.

出版信息

Am Nat. 2024 Feb;203(2):230-253. doi: 10.1086/727968. Epub 2024 Jan 12.

Abstract

AbstractAnisogamy has evolved in most sexually reproducing multicellular organisms allowing the definition of male and female sexes, producing small and large gametes. Anisogamy, as the initial sexual dimorphism, is a good starting point to understand the evolution of further sexual dimorphisms. For instance, it is generally accepted that anisogamy sets the stage for more intense mating competition in males than in females. We argue that this idea stems from a restrictive assumption on the conditions under which anisogamy evolved in the first place: the absence of sperm limitation (assuming that all female gametes are fertilized). Here, we relax this assumption and present a model that considers the coevolution of gamete size with a mating competition trait, starting in a population without dimorphism. We vary gamete density to produce different scenarios of gamete limitation. We show that while at high gamete density the evolution of anisogamy always results in male investment in competition, gamete limitation at intermediate gamete densities allows for either females or males to invest more into mating competition. Our results thus suggest that anisogamy does not always promote mating competition among males. The conditions under which anisogamy evolves matter, as does the competition trait.

摘要

摘要

在大多数有性繁殖的多细胞生物中,雌雄配子的大小不同(即雌雄配子大小存在差异),这种雌雄配子大小的差异被称为雌雄异体现象,它定义了雄性和雌性性别,并产生了小配子和大配子。雌雄异体作为最初的性二态性,是理解进一步的性二态性进化的良好起点。例如,人们普遍认为,雌雄配子的大小差异使得雄性之间的交配竞争比雌性之间更为激烈。我们认为,这种观点源于对雌雄配子大小差异首先进化的条件的一种限制假设:不存在精子限制(假设所有的雌性配子都能受精)。在这里,我们放松了这个假设,并提出了一个模型,该模型考虑了配子大小与交配竞争特征的共同进化,从没有性二态性的种群开始。我们通过改变配子密度来产生不同的配子限制情景。我们的结果表明,虽然在高配子密度下,雌雄配子大小差异的进化总是导致雄性在竞争中投入更多,但在中等配子密度下,配子限制允许雌性或雄性在交配竞争中投入更多。因此,我们的结果表明,雌雄配子的大小差异并不总是促进雄性之间的交配竞争。雌雄配子大小差异进化的条件以及竞争特征都很重要。

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