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Centrosomes in the zebrafish (Danio rerio): a review including the related basal body

机译:斑马鱼(Danio rerio)中的中心体:包括相关基体的综述

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摘要

Ever since Edouard Van Beneden and Theodor Boveri first formally described the centrosome in the late 1800s, it has captivated cell biologists. The name clearly indicated its central importance to cell functioning, even to these early investigators. We now know of its role as a major microtubule-organizing center (MTOC) and of its dynamic roles in cell division, vesicle trafficking and for its relative, the basal body, ciliogenesis. While centrosomes are found in most animal cells, notably it is absent in most oocytes and higher plant cells. Nevertheless, it appears that critical components of the centrosome act as MTOCs in these cells as well. The zebrafish has emerged as an exciting and promising new model organism, primarily due to the pioneering efforts of George Streisinger to use zebrafish in genetic studies and due to Christiane Nusslein-Volhard, Wolfgang Driever and their teams of collaborators, who applied forward genetics to elicit a large number of mutant lines. The transparency and rapid external development of the embryo allow for experiments not easily done in other vertebrates. The ease of producing transgenic lines, often with the use of fluorescent reporters, and gene knockdowns with antisense morpholinos further contributes to the appeal of the model as an experimental system. The added advantage of high-throughput screening of small-molecule libraries, as well as the ease of mass rearing together with low cost, makes the zebrafish a true frontrunner as a model vertebrate organism. The zebrafish has a body plan shared by all vertebrates, including humans. This conservation of body plan provides added significance to the existing lines of zebrafish as human disease models and adds an impetus to the ongoing efforts to develop new models. In this review, the current state of knowledge about the centrosome in the zebrafish model is explored. Also, studies on the related basal body in zebrafish and their relationship to ciliogenesis are reviewed.
机译:自从Edouard Van Beneden和Theodor Boveri在1800年代后期首次正式描述中心体以来,它就吸引了细胞生物学家。这个名字清楚地表明了它对细胞功能的中心重要性,甚至对这些早期研究者也是如此。我们现在知道它作为主要的微管组织中心(MTOC)的作用,以及它在细胞分裂,囊泡运输及其相对的基体纤毛发生中的动态作用。尽管在大多数动物细胞中都发现了中心体,但在大多数卵母细胞和高等植物细胞中却没有。然而,似乎中心体的关键成分在这些细胞中也起着MTOC的作用。斑马鱼已经成为令人兴奋和有希望的新型生物体,这主要归功于乔治·史特里辛格(George Streisinger)在遗传研究中使用斑马鱼的开创性努力,以及克里斯蒂安·努斯林·沃尔哈德(Christiane Nusslein-Volhard),沃尔夫冈·德里弗(Wolfgang Driever)及其合作者团队的成功应用大量的突变株。胚胎的透明性和快速的外部发育使其他脊椎动物不容易进行实验。通常通过使用荧光报告基因,易于产生转基因品系,以及使用反义吗啉代糖进行基因敲低进一步促进了该模型作为实验系统的吸引力。高通量筛选小分子文库的额外优势,以及易于大规模饲养和低成本的优势,使斑马鱼成为模型脊椎动物的真正领跑者。斑马鱼有一个包括所有人类在内的所有脊椎动物共有的身体计划。人体计划的这种保护为斑马鱼作为人类疾病模型的现有品系提供了更大的意义,并为正在进行的开发新模型的努力提供了动力。在这篇综述中,探讨了关于斑马鱼模型中中心体的当前知识状态。此外,综述了斑马鱼相关基体及其与纤毛发生关系的研究。

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