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对性角色反转物种威尔逊瓣蹼鹬大脑中催乳素结合活性和下丘脑促性腺激素释放激素浓度的性别及繁殖阶段差异的分析。

An analysis of sex and breeding stage differences in prolactin binding activity in brain and hypothalamic GnRH concentration in Wilson's phalarope, a sex role-reversed species.

作者信息

Buntin J D, Halawani M E, Ottinger M A, Fan Y, Fivizzani A J

机构信息

Department of Biological Sciences, University of Wisconsin-Milwaukee 53201, USA.

出版信息

Gen Comp Endocrinol. 1998 Jan;109(1):119-32. doi: 10.1006/gcen.1997.7017.

Abstract

Wilson's Phalarope (Phalaropus tricolor) is a sex role-reversed species in which incubation of eggs and care of young is performed exclusively by the male. Plasma levels of prolactin (PRL), the hormone most associated with parental care in birds, are higher in incubating males than in nonincubating males or females. Conversely, plasma testosterone levels are reduced in males during incubation. In an attempt to characterize the physiological basis of this unusual parental care system we used quantitative film autoradiography and densitometry to measure the specific binding in vitro of 125I-ovine PRL to 12 brain regions in females, nonincubating males, and incubating males during the normal breeding season. We also measured hypothalamic chicken gonadotropin-releasing hormone I (cGnRH-I) in three brain areas in these same birds, as well as plasma levels of PRL and testosterone. Analysis revealed that cGnRH-I concentrations in the preoptic area and plasma testosterone levels were significantly lower in incubating males than in nonincubating males. Specific binding of 125I-ovine PRL was detected in choroid plexus and in several diencephalic brain regions of both sexes, with highest binding activity recorded in the dorsolateral thalamus, medial habenula, nucleus subrotundus, and preoptic area. When adjustments were made for the large number of comparisons performed, specific binding did not vary significantly by sex or breeding stage in any single brain region. However, average specific binding values in nonincubating males exceeded those of incubating males in 9 of the 11 PRL-sensitive regions examined. Increased occupancy of the receptor by endogenous PRL during incubation could have contributed to this result, since plasma PRL levels were elevated in incubating males. In addition, PRL binding activity in several of these brain regions tended to correlate negatively with plasma PRL. The two exceptions to this general pattern were the preoptic area and the lateral septum, where mean specific binding was 14-15% higher in incubating males than in nonincubating males. This raises the interesting possibility that PRL sensitivity is up-regulated during incubation in some regions of the male phalarope brain, such as the preoptic area and lateral septum, that have been implicated in PRL-modulated changes in behavior and reproductive activity during this breeding stage.

摘要

威尔逊瓣蹼鹬(Phalaropus tricolor)是一种性别角色反转的物种,在该物种中,孵卵和照料幼鸟完全由雄性承担。催乳素(PRL)是鸟类中与亲代抚育关系最为密切的激素,正在孵卵的雄性体内的血浆PRL水平高于未孵卵的雄性或雌性。相反,在孵卵期间,雄性体内的血浆睾酮水平会降低。为了描述这种不同寻常的亲代抚育系统的生理基础,我们在正常繁殖季节,使用定量胶片放射自显影术和光密度测定法,来测量125I-羊PRL与雌性、未孵卵雄性和正在孵卵雄性的12个脑区的体外特异性结合。我们还测量了这些相同鸟类三个脑区中的下丘脑鸡促性腺激素释放激素I(cGnRH-I),以及PRL和睾酮的血浆水平。分析表明,正在孵卵的雄性视前区的cGnRH-I浓度和血浆睾酮水平显著低于未孵卵的雄性。在两性的脉络丛和几个间脑脑区均检测到了125I-羊PRL的特异性结合,其中背外侧丘脑、内侧缰核、圆形下核和视前区的结合活性最高。在对大量比较进行校正后,任何单个脑区的特异性结合在性别或繁殖阶段上均无显著差异。然而,在所检查的11个PRL敏感区中的9个区域,未孵卵雄性的平均特异性结合值超过了正在孵卵的雄性。由于正在孵卵的雄性体内血浆PRL水平升高,孵卵期间内源性PRL对受体占有率的增加可能导致了这一结果。此外,这些脑区中的几个区域的PRL结合活性往往与血浆PRL呈负相关。这种一般模式的两个例外是视前区和外侧隔区,正在孵卵的雄性在这两个区域的平均特异性结合比未孵卵的雄性高14 - 15%。这就提出了一个有趣的可能性,即在瓣蹼鹬雄性大脑的某些区域,如视前区和外侧隔区,在孵卵期间PRL敏感性会上调,而这些区域在这一繁殖阶段与PRL调节的行为和生殖活动变化有关。

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