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控制两栖动物生殖行为的类固醇-神经肽相互作用。

Steroid-neuropeptide interactions that control reproductive behaviors in an amphibian.

作者信息

Moore F L, Lowry C A, Rose J D

机构信息

Department of Zoology, Oregon State University, Corvallis 97331-2914.

出版信息

Psychoneuroendocrinology. 1994;19(5-7):581-92. doi: 10.1016/0306-4530(94)90042-6.

Abstract

Investigations into the neuroendocrine regulation of reproductive behaviors in an amphibian (Taricha granulosa) reveal the same basic repertoire of chemical messengers as regulators of male behaviors in other vertebrates. These studies have identified seasonal neural interactions between gonadal steroids and neuropeptides that facilitate male courtship behavior. In addition, this species has served to elucidate how stress-induced suppression of courtship is mediated by corticosterone action through a neuronal membrane receptor and subsequent, rapid neurophysiological effects. These findings indicate that a principal mechanism by which steroids and neuropeptides control male reproductive behavior is the modulation of neural processing of specific sensory stimuli.

摘要

对一种两栖动物(粗皮渍螈)生殖行为的神经内分泌调节的研究表明,作为其他脊椎动物雄性行为的调节因子,其化学信使的基本组成相同。这些研究确定了性腺类固醇和神经肽之间的季节性神经相互作用,这种相互作用促进了雄性求偶行为。此外,该物种有助于阐明应激诱导的求偶行为抑制是如何通过神经元膜受体上的皮质酮作用以及随后的快速神经生理效应来介导的。这些发现表明,类固醇和神经肽控制雄性生殖行为的一个主要机制是对特定感觉刺激的神经处理进行调节。

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