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Japanese Quail as a Model System for Studying the Neuroendocrine Control of Reproductive and Social Behaviors

机译:日本鹌鹑作为研究生殖和社会行为的神经内分泌控制的模型系统

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摘要

Japanese quail (Coturnix japonica; referred to simply as quail in this article) readily exhibit sexual behavior and related social behaviors in captive conditions and have therefore proven valuable for studies of how early social experience can shape adult mate preference and sexual behavior. Quail have also been used in sexual conditioning studies illustrating how natural stimuli predict successful reproduction via Pavlovian processes. In addition, they have proven to be a good model to study how variation in photoperiod regulates reproduction and how variation in gonadal steroid hormones controls sexual behavior. For example, studies have shown that testosterone activates male-typical behaviors after being metabolized into estrogenic and androgenic metabolites. A critical site of action for these metabolites is the preoptic medial nucleus (POM), which is larger in males than in females. The enzyme aromatase converts testosterone to estradiol and is enriched in the POM in a male-biased fashion. Quail studies were the first to show that this enzyme is regulated both relatively slowly via genomic actions of steroids and more quickly via phosphorylation. With this base of knowledge and the recent cloning of the entire genome of the closely related chicken, quail will be valuable for future studies connecting gene expression to sexual and social behaviors.
机译:日本鹌鹑(Coturnix japonica;在本文中简称为鹌鹑)在圈养条件下很容易表现出性行为和相关的社会行为,因此对于早期社会经验如何影响成年伴侣的偏爱和性行为已被证明是有价值的。鹌鹑还用于性适应研究中,说明自然刺激如何通过巴甫洛夫病过程预测成功繁殖。此外,它们已被证明是研究光周期变化如何调节生殖以及性腺类固醇激素变化如何控制性行为的良好模型。例如,研究表明,睾丸激素被代谢为雌激素和雄激素代谢产物后会激活男性的典型行为。这些代谢物的关键作用部位是视前内侧核(POM),男性比女性大。芳香化酶将睾丸激素转化为雌二醇,并以男性偏见的方式富含POM。鹌鹑研究是第一个显示该酶通过类固醇的基因组作用相对较慢且通过磷酸化更快速地调控的酶。有了这种知识基础,并且最近克隆了密切相关的鸡的整个基因组,鹌鹑对于将基因表达与性行为和社交行为联系起来的未来研究将具有重要价值。

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