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斑马鱼垂体发育的分子遗传学

Molecular genetics of pituitary development in zebrafish.

作者信息

Pogoda Hans-Martin, Hammerschmidt Matthias

机构信息

Max-Planck Institute of Immunobiology, Stübeweg 51, D-79108 Freiburg, Germany.

出版信息

Semin Cell Dev Biol. 2007 Aug;18(4):543-58. doi: 10.1016/j.semcdb.2007.04.004. Epub 2007 Apr 19.

Abstract

The pituitary gland of vertebrates consists of two major parts, the neurohypophysis (NH) and the adenohypophysis (AH). As a central part of the hypothalamo-hypophyseal system (HHS), it constitutes a functional link between the nervous and the endocrine system to regulate basic body functions, such as growth, metabolism and reproduction. The development of the AH has been intensively studied in mouse, serving as a model for organogenesis and differential cell specification. However, given that the AH is a relatively recent evolutionary advance of the chordate phylum, it is also interesting to understand its development in lower chordate systems. In recent years, the zebrafish has emerged as a powerful lower vertebrate system for developmental studies, being amenable for large-scale genetic approaches, embryological manipulations, and in vivo imaging. Here, we present an overview of current knowledge of the mechanisms and genetic control of pituitary formation during zebrafish development. First, we describe the components of the zebrafish HHS, and the different pituitary cell types and hormones, followed by a description of the different steps of normal pituitary development. The central part of the review deals with the genes found to be essential for zebrafish AH development, accompanied by a description of the corresponding mutant phenotypes. Finally, we discuss future directions, with particular focus on evolutionary aspects, and some novel functional aspects with growing medical and social relevance.

摘要

脊椎动物的垂体由两个主要部分组成,即神经垂体(NH)和腺垂体(AH)。作为下丘脑 - 垂体系统(HHS)的核心部分,它构成了神经和内分泌系统之间的功能联系,以调节基本身体功能,如生长、代谢和繁殖。腺垂体的发育在小鼠中已得到深入研究,可作为器官发生和细胞分化特化的模型。然而,鉴于腺垂体是脊索动物门相对较新的进化成果,了解其在低等脊索动物系统中的发育也很有趣。近年来,斑马鱼已成为用于发育研究的强大的低等脊椎动物系统,适用于大规模遗传方法、胚胎操作和体内成像。在此,我们概述了斑马鱼发育过程中垂体形成的机制和遗传控制的当前知识。首先,我们描述斑马鱼下丘脑 - 垂体系统的组成部分、不同的垂体细胞类型和激素,随后描述正常垂体发育的不同步骤。综述的核心部分涉及已发现对斑马鱼腺垂体发育至关重要的基因,并伴有相应突变体表型的描述。最后,我们讨论未来的方向,特别关注进化方面以及一些具有日益增长的医学和社会相关性的新功能方面。

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