Leapfrogging: primordial germ cell transplantation permits recovery of CRISPR/Cas9-induced mutations in essential genes

被引:21
作者
Blitz, Ira L. [1 ]
Fish, Margaret B. [1 ]
Cho, Ken W. Y. [1 ]
机构
[1] Univ Calif Irvine, Dept Dev & Cell Biol, 4410 Nat Sci Bldg 2, Irvine, CA 92697 USA
来源
DEVELOPMENT | 2016年 / 143卷 / 15期
关键词
CRISPR/Cas9; TALENs; Knockouts; Primordial germ cells; Genome editing; Xenopus; END MESSENGER-RNA; DAZ-LIKE GENE; XENOPUS-TROPICALIS; HOMEOBOX GENE; TARGETED MUTAGENESIS; EMBRYOS; LAEVIS; ZEBRAFISH; PLASM; SYSTEM;
D O I
10.1242/dev.138057
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
CRISPR/Cas9 genome editing is revolutionizing genetic loss-of-function analysis but technical limitations remain that slow progress when creating mutant lines. First, in conventional genetic breeding schemes, mosaic founder animals carrying mutant alleles are outcrossed to produce F1 heterozygotes. Phenotypic analysis occurs in the F2 generation following F1 intercrosses. Thus, mutant analyses will require multi-generational studies. Second, when targeting essential genes, efficient mutagenesis of founders is often lethal, preventing the acquisition of mature animals. Reducing mutagenesis levels may improve founder survival, but results in lower, more variable rates of germline transmission. Therefore, an efficient approach to study lethal mutations would be useful. To overcome these shortfalls, we introduce `leapfrogging', a method combining efficient CRISPR mutagenesis with transplantation of mutated primordial germ cells into a wild-type host. Tested using Xenopus tropicalis, we show that founders containing transplants transmit mutant alleles with high efficiency. F1 offspring from intercrosses between F0 animals that carry embryonic lethal alleles recapitulate loss-of-function phenotypes, circumventing an entire generation of breeding. We anticipate that leapfrogging will be transferable to other species.
引用
收藏
页码:2868 / 2875
页数:8
相关论文
共 70 条
  • [1] Mouse large-scale phenotyping initiatives: overview of the European Mouse Disease Clinic (EUMODIC) and of the Wellcome Trust Sanger Institute Mouse Genetics Project
    Ayadi, Abdel
    Birling, Marie-Christine
    Bottomley, Joanna
    Bussell, James
    Fuchs, Helmut
    Fray, Martin
    Gailus-Durner, Valerie
    Greenaway, Simon
    Houghton, Richard
    Karp, Natasha
    Leblanc, Sophie
    Lengger, Christoph
    Maier, Holger
    Mallon, Ann-Marie
    Marschall, Susan
    Melvin, David
    Morgan, Hugh
    Pavlovic, Guillaume
    Ryder, Ed
    Skarnes, William C.
    Selloum, Mohammed
    Ramirez-Solis, Ramiro
    Sorg, Tania
    Teboul, Lydia
    Vasseur, Laurent
    Walling, Alison
    Weaver, Tom
    Wells, Sara
    White, Jacqui K.
    Bradley, Allan
    Adams, David J.
    Steel, Karen P.
    de Angelis, Martin Hrabe
    Brown, Steve D.
    Herault, Yann
    [J]. MAMMALIAN GENOME, 2012, 23 (9-10) : 600 - 610
  • [2] CRISPR/Cas9: An inexpensive, efficient loss of function tool to screen human disease genes in Xenopus
    Bhattacharya, Dipankan
    Marfo, Chris A.
    Li, Davis
    Lane, Maura
    Khokha, Mustafa K.
    [J]. DEVELOPMENTAL BIOLOGY, 2015, 408 (02) : 196 - 204
  • [3] BLACKLER AW, 1961, J EMBRYOL EXP MORPH, V9, P634
  • [4] TRANSFER OF GERM-CELLS IN XENOPUS-LAEVIS
    BLACKLER, AW
    [J]. NATURE, 1960, 185 (4716) : 859 - 860
  • [5] BLITZ IL, 1995, DEVELOPMENT, V121, P993
  • [6] Biallelic Genome Modification in F0 Xenopus tropicalis Embryos Using the CRISPR/Cas System
    Blitz, Ira L.
    Biesinger, Jacob
    Xie, Xiaohui
    Cho, Ken W. Y.
    [J]. GENESIS, 2013, 51 (12): : 827 - 834
  • [7] ORGANIZER-SPECIFIC HOMEOBOX GENES IN XENOPUS-LAEVIS EMBRYOS
    BLUMBERG, B
    WRIGHT, CVE
    DEROBERTIS, EM
    CHO, KWY
    [J]. SCIENCE, 1991, 253 (5016) : 194 - 196
  • [8] BUEHR ML, 1970, J EMBRYOL EXP MORPH, V23, P375
  • [9] Targeted Germline Modifications in Rats Using CRISPR/Cas9 and Spermatogonial Stem Cells
    Chapman, Karen M.
    Medrano, Gerardo A.
    Jaichander, Priscilla
    Chaudhary, Jaideep
    Waits, Alexandra E.
    Nobrega, Marcelo A.
    Hotaling, James M.
    Ober, Carole
    Hamra, F. Kent
    [J]. CELL REPORTS, 2015, 10 (11): : 1828 - 1835
  • [10] Stochastic specification of primordial germ cells from mesoderm precursors in axolotl embryosStochastic specification of primordial germ cells from mesoderm precursors in axolotl embryos
    Chatfield, Jodie
    O'Reilly, Marie-Anne
    Bachvarova, Rosemary F.
    Ferjentsik, Zoltan
    Redwood, Catherine
    Walmsley, Maggie
    Patient, Roger
    Loose, Mathew
    Johnson, Andrew D.
    [J]. DEVELOPMENT, 2014, 141 (12): : 2429 - 2440