清脆的
斑马鱼
计算生物学
生物
Cas9
桑格测序
功能基因组学
基因组编辑
遗传学
突变
转录激活物样效应核酸酶
基因组学
基因
基因组
突变
作者
Gaurav K. Varshney,Blake Carrington,Wuhong Pei,Kevin Bishop,Zelin Chen,Chunxin Fan,Lisha Xu,MaryPat Jones,Matthew C. LaFave,Johan Ledin,Raman Sood,Shawn M. Burgess
出处
期刊:Nature Protocols
[Nature Portfolio]
日期:2016-10-27
卷期号:11 (12): 2357-2375
被引量:259
标识
DOI:10.1038/nprot.2016.141
摘要
The zebrafish is a popular model organism for studying development and disease, and genetically modified zebrafish provide an essential tool for functional genomic studies. Numerous publications have demonstrated the efficacy of gene targeting in zebrafish using CRISPR/Cas9, and they have included descriptions of a variety of tools and methods for guide RNA synthesis and mutant identification. However, most of the published techniques are not readily scalable to increase throughput. We recently described a CRISPR/Cas9-based high-throughput mutagenesis and phenotyping pipeline in zebrafish. Here, we present a complete workflow for this pipeline, including target selection; cloning-free single-guide RNA (sgRNA) synthesis; microinjection; validation of the target-specific activity of the sgRNAs; founder screening to identify germline-transmitting mutations by fluorescence PCR; determination of the exact lesion by Sanger or next-generation sequencing (including software for analysis); and genotyping in the F1 or subsequent generations. Using these methods, sgRNAs can be evaluated in 3 d, zebrafish germline-transmitting mutations can be identified within 3 months and stable lines can be established within 6 months. Realistically, two researchers can target tens to hundreds of genes per year using this protocol.
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