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性腺类固醇与雄性非洲鲶鱼(Clarias gariepinus)脑和垂体中物种特异性促性腺激素释放激素系统的成熟

Gonadal steroids and the maturation of the species-specific gonadotropin-releasing hormone system in brain and pituitary of the male African catfish (Clarias gariepinus).

作者信息

Dubois E A, Slob S, Zandbergen M A, Peute J, Goos H J

机构信息

Comparative Endocrinology, Faculty of Biology, Graduate School of Developmental Biology, University of Utrecht, Utrecht, The Netherlands.

出版信息

Comp Biochem Physiol B Biochem Mol Biol. 2001 Jun;129(2-3):381-7. doi: 10.1016/s1096-4959(01)00328-1.

Abstract

The effect of testosterone (T), 11-ketotestosterone (KT) and estradiol (E(2)) on the development of the catfish gonadotropin-releasing hormone system (cfGnRH) of male African catfish (Clarias gariepinus), at the onset of puberty [between 10 and 12 weeks post hatching (ph)] was investigated. The cfGnRH neurons, located in the ventral forebrain, were visualized by immunofluorescence and their numbers were determined and the amounts of cfGnRH-associated peptide (cfGAP) in the pituitary were measured by RIA. Steroid treatments did not significantly alter the numbers of immunoreactive GnRH neurons. However, T and E(2) caused an increase in the amount of GnRH, demonstrated by the intensity of the immunostaining of GnRH neurons and fibers in the brain and the amount of cfGAP in the pituitary. Treatment with KT, the main circulating androgen in adult male catfish, neither changed the number of cfGnRH neurons, nor elevated the cfGnRH content in the pituitary. In previous experiments with younger, prepubertal fish (2-6 weeks ph), T caused an elevation of the number of cfGnRH neurons to the same level as present in pubertal fish of 12-14 weeks. We conclude that the onset of puberty in the male African catfish coincides with the completion of the steroid-dependent structural maturation of the cfGnRH system in the brain. T and/or E(2), however, are still able to exert a positive influence on the amounts of cfGnRH during the later stages of pubertal development, thus still playing a role in the control of the cfGnRH system.

摘要

研究了睾酮(T)、11 - 酮睾酮(KT)和雌二醇(E₂)对雄性非洲鲶鱼(Clarias gariepinus)青春期开始时(孵化后10至12周)鲶鱼促性腺激素释放激素系统(cfGnRH)发育的影响。位于腹侧前脑的cfGnRH神经元通过免疫荧光进行可视化,确定其数量,并通过放射免疫分析测量垂体中cfGnRH相关肽(cfGAP)的含量。类固醇处理并未显著改变免疫反应性GnRH神经元的数量。然而,T和E₂导致GnRH含量增加,这通过大脑中GnRH神经元和纤维的免疫染色强度以及垂体中cfGAP的含量得以证明。用成年雄性鲶鱼的主要循环雄激素KT处理,既未改变cfGnRH神经元的数量,也未提高垂体中cfGnRH的含量。在先前对更年幼的青春期前鱼类(孵化后2 - 6周)的实验中,T使cfGnRH神经元数量增加至与12 - 14周青春期鱼类相同的水平。我们得出结论,雄性非洲鲶鱼青春期的开始与大脑中cfGnRH系统依赖类固醇的结构成熟的完成相吻合。然而,T和/或E₂在青春期发育的后期阶段仍能够对cfGnRH的量产生积极影响,因此在cfGnRH系统的控制中仍发挥作用。

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