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首页> 外文期刊>The Royal Society Proceedings B: Biological Sciences >Sperm competition and sexually size dimorphic brains in birds.
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Sperm competition and sexually size dimorphic brains in birds.

机译:鸟类的精子竞争和两性大脑的性大小。

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Natural selection may favour sexually similar brain size owing to similar selection pressures in males and females, while sexual selection may lead to sexually dimorphic brains. For example, sperm competition involves clear-cut sex differences in behaviour, as males display, mate guard and copulate with females, while females choose among males, and solicit or reject copulations. These behaviours may require fundamentally different neural government in the two sexes leading to sex-dependent brain evolution. Using two phylogenetic approaches in a comparative study, we tested for roles of both natural and sexual-selection pressures on brain size evolution of birds. In accordance with the natural-selection theory, relative brain size of males coevolved with that of females, which may be the result of adaptation to similar environmental constraints such as feeding innovation. However, the mode of brain size evolution differed between the sexes, and factors associated with sperm competition as reflected by extra-pair paternity may give rise to sexually size dimorphic brains. Specifically, species in which females have larger brains than males were found to have a higher degree of extra-pair paternity independently of potentially confounding factors, whereas species in which males have relatively larger brains than females appeared to have lower rates of extra-pair paternity. Hence, the evolution of sperm competition may select for complex behaviours together with the associated neural substrates in the sex that has a higher potential to control extra-pair copulations at the observed levels. Brain function may thus be affected differently in males and females by sexual selection.
机译:由于男性和女性的选择压力相似,自然选择可能有利于性相似的大脑大小,而性选择可能会导致性二态性大脑。例如,精子竞争涉及明显的性别差异,如雄性显示,与雌性交配并与雌性交配,而雌性则在雄性中选择并征求或拒绝交配。这些行为可能需要导致两性性别依赖的大脑进化的两性根本不同的神经控制。在一项比较研究中,使用两种系统发育方法,我们测试了自然选择压力和性选择压力对鸟类大脑大小进化的作用。根据自然选择理论,雄性的相对大脑大小与雌性的相对进化,这可能是适应类似环境限制(如喂养创新)的结果。然而,性别之间大脑大小演变的模式有所不同,并且由成对父子关系所反映的与精子竞争相关的因素可能会导致性大小双态的大脑。具体而言,发现女性大脑比男性大的物种具有更高的配对亲子关系,而与潜在的混杂因素无关,而男性比女性大脑更大的物种似乎具有较低的配对亲子率。 。因此,精子竞争的进化可能会选择复杂的行为以及性行为中相关的神经基质,从而有较高的潜力将双性交配控制在观察水平。因此,通过性别选择,男性和女性的脑功能可能受到不同的影响。

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