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鸟类和爬行动物求偶行为中的两性差异:两种不遵循哺乳动物规则的系统。

Sexual dimorphisms in avian and reptilian courtship: two systems that do not play by mammalian rules.

作者信息

Wade J

机构信息

Department of Psychology and Zoology, Programs in Neuroscience and Ecology, Evolution and Behavioral Biology, Michigan State University, East Lansing 48824-1117, USA.

出版信息

Brain Behav Evol. 1999;54(1):15-27. doi: 10.1159/000006608.

Abstract

Sexual dimorphisms in the central nervous system exist in numerous vertebrate species, and in many cases these structural differences between males and females parallel differences in the display of reproductive behaviors. Often both the behavioral and anatomical differences are controlled by exposure to gonadal steroid hormones, either during ontogeny or in adulthood. This article reviews some of the evidence supporting the hypothesis that in mammals, testosterone or its metabolites regulate the structure and function of neural and muscle systems involved in the control of masculine sexual behaviors. It then describes data suggesting that the mechanisms regulating sexually dimorphic courtship systems in zebra finches and green anole lizards are not completely parallel to the mammalian systems. Finally, some directions for future study are suggested, with the hope that they will stimulate thought about the nature of comparisons made across vertebrate models when investigators are attempting to determine both which morphological sex differences are important to the control of the reproductive behaviors, and which mechanisms regulating both structure and function are widely employed or are unique.

摘要

中枢神经系统中的性别二态性存在于众多脊椎动物物种中,在许多情况下,雄性和雌性之间的这些结构差异与生殖行为表现的差异相似。通常,行为和解剖学上的差异在个体发育期间或成年期都受性腺甾体激素的影响。本文回顾了一些支持以下假设的证据:在哺乳动物中,睾酮或其代谢产物调节参与控制雄性性行为的神经和肌肉系统的结构和功能。然后描述了一些数据,这些数据表明调节斑胸草雀和绿安乐蜥性别二态求偶系统的机制与哺乳动物系统并不完全相同。最后,提出了一些未来研究的方向,希望能激发人们在思考跨脊椎动物模型进行比较的本质时进行思考,即当研究人员试图确定哪些形态学上的性别差异对生殖行为的控制很重要,以及哪些调节结构和功能的机制被广泛应用或具有独特性。

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