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One-step efficient generation of dual-function conditional knockout and geno-tagging alleles in zebrafish.

Wenyuan Li | Yage Zhang | Bingzhou Han | Lianyan Li | Muhang Li | Xiaochan Lu | Cheng Chen | Mengjia Lu | Yujie Zhang | Xuefeng Jia | Zuoyan Zhu | Xiangjun Tong | Bo Zhang
eLife | 2019

CRISPR/Cas systems are widely used to knock out genes by inducing indel mutations, which are prone to genetic compensation. Complex genome modifications such as knockin (KI) might bypass compensation, though difficult to practice due to low efficiency. Moreover, no 'two-in-one' KI strategy combining conditional knockout (CKO) with fluorescent gene-labeling or further allele-labeling has been reported. Here, we developed a dual-cassette-donor strategy and achieved one-step and efficient generation of dual-function KI alleles at tbx5a and kctd10 loci in zebrafish via targeted insertion. These alleles display fluorescent gene-tagging and CKO effects before and after Cre induction, respectively. By introducing a second fluorescent reporter, geno-tagging effects were achieved at tbx5a and sox10 loci, exhibiting CKO coupled with fluorescent reporter switch upon Cre induction, enabling tracing of three distinct genotypes. We found that LiCl purification of gRNA is critical for highly efficient KI, and preselection of founders allows the efficient germline recovery of KI events.

Pubmed ID: 31663848

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Associated grants

  • Agency: National Key Research and Development Program of China, International
    Id: 2018YFA0801000
  • Agency: National Key Research and Development Program of China, International
    Id: 2016YFA0100500
  • Agency: National Key Basic Research Program of China, International
    Id: 2015CB942803
  • Agency: National Natural Science Foundation of China, International
    Id: 31671500
  • Agency: National Natural Science Foundation of China, International
    Id: 31871458
  • Agency: National Natural Science Foundation of China, International
    Id: 81371264
  • Agency: Peking University, International
    Id: Qidong-SLS Innovation Fund

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RRID:SCR_002677

Digital image processing system where microscope settings and processing steps may be adjusted in single user interface. Can acquire images from variety of cameras. Includes software package for capturing, archiving and preparing images for publication. Allows users to visualize and present images in several dimensions. Functionality of imaging toolbox expands constantly with wide range of different modules that are tailored to specific applications or microscope accessories. This resource is duplicated by SCR_018376

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