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三刺鱼转基因和基因组编辑的显微注射

Microinjection for Transgenesis and Genome Editing in Threespine Sticklebacks.

作者信息

Erickson Priscilla A, Ellis Nicholas A, Miller Craig T

机构信息

Department of Molecular and Cell Biology, University of California, Berkeley.

Department of Molecular and Cell Biology, University of California, Berkeley;

出版信息

J Vis Exp. 2016 May 13(111):54055. doi: 10.3791/54055.

Abstract

The threespine stickleback fish has emerged as a powerful system to study the genetic basis of a wide variety of morphological, physiological, and behavioral phenotypes. The remarkably diverse phenotypes that have evolved as marine populations adapt to countless freshwater environments, combined with the ability to cross marine and freshwater forms, provide a rare vertebrate system in which genetics can be used to map genomic regions controlling evolved traits. Excellent genomic resources are now available, facilitating molecular genetic dissection of evolved changes. While mapping experiments generate lists of interesting candidate genes, functional genetic manipulations are required to test the roles of these genes. Gene regulation can be studied with transgenic reporter plasmids and BACs integrated into the genome using the Tol2 transposase system. Functions of specific candidate genes and cis-regulatory elements can be assessed by inducing targeted mutations with TALEN and CRISPR/Cas9 genome editing reagents. All methods require introducing nucleic acids into fertilized one-cell stickleback embryos, a task made challenging by the thick chorion of stickleback embryos and the relatively small and thin blastomere. Here, a detailed protocol for microinjection of nucleic acids into stickleback embryos is described for transgenic and genome editing applications to study gene expression and function, as well as techniques to assess the success of transgenesis and recover stable lines.

摘要

三刺鱼已成为研究多种形态、生理和行为表型遗传基础的强大系统。随着海洋种群适应无数淡水环境而进化出的显著多样的表型,再加上能够杂交海洋和淡水形态,提供了一个罕见的脊椎动物系统,在这个系统中可以利用遗传学来绘制控制进化性状的基因组区域。现在已有出色的基因组资源,便于对进化变化进行分子遗传学剖析。虽然定位实验能生成有趣的候选基因列表,但需要进行功能基因操作来测试这些基因的作用。可以使用Tol2转座酶系统,通过整合到基因组中的转基因报告质粒和BAC来研究基因调控。可以通过用TALEN和CRISPR/Cas9基因组编辑试剂诱导靶向突变来评估特定候选基因和顺式调控元件的功能。所有方法都需要将核酸导入受精的单细胞三刺鱼胚胎中,而三刺鱼胚胎厚厚的绒毛膜以及相对较小且薄的卵裂球使这项任务具有挑战性。在此,描述了一种将核酸显微注射到三刺鱼胚胎中的详细方案,用于转基因和基因组编辑应用,以研究基因表达和功能,以及评估转基因成功与否并获得稳定品系的技术。

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