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利用斑马鱼进行正向遗传学筛选以鉴定参与髓鞘形成的新基因。

Forward Genetic Screen Using Zebrafish to Identify New Genes Involved in Myelination.

作者信息

Kegel Linde, Rubio Maria, Almeida Rafael G, Benito Silvia, Klingseisen Anna, Lyons David A

机构信息

Centre for Discovery Brain Sciences, The University of Edinburgh, Edinburgh, UK.

出版信息

Methods Mol Biol. 2019;1936:185-209. doi: 10.1007/978-1-4939-9072-6_11.

Abstract

Zebrafish are now well established as the preeminent vertebrate model with which to carry out gene discovery/forward genetic screens to identify the molecular genetic basis of biological processes. Gene discovery screens in zebrafish have already provided novel insight into mechanisms of glial cell development and function. The vast majority of genetic screens in zebrafish are based around a three generation screen that starts with the random induction of mutations in adult males using the chemical mutagen ENU. Here we outline the methods that underlie this type of screen, detailing each step, from ENU mutagenesis, through the breeding schemes required to recover homozygous mutant animals in subsequent generations, the screening procedure itself, with a focus on the analysis of myelinating glia, and the subsequent confirmation of mutant phenotypes.

摘要

斑马鱼现已成为卓越的脊椎动物模型,可用于开展基因发现/正向遗传学筛选,以确定生物学过程的分子遗传基础。斑马鱼的基因发现筛选已经为神经胶质细胞发育和功能机制提供了新的见解。斑马鱼的绝大多数遗传筛选都基于三代筛选,该筛选始于使用化学诱变剂ENU对成年雄性进行随机诱变。在此,我们概述了这类筛选所依据的方法,详细介绍了从ENU诱变开始的每一步骤,包括为在后代中获得纯合突变动物所需的育种方案、筛选程序本身(重点是对有髓神经胶质细胞的分析)以及随后对突变表型的确认。

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