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Volume 44 Issue 9
Sep.  2017
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Article Contents

Self-cleaving ribozymes enable the production of guide RNAs from unlimited choices of promoters for CRISPR/Cas9 mediated genome editing

doi: 10.1016/j.jgg.2017.08.003
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  • Corresponding author: E-mail address: wangrongchen@mail.hzau.edu.cn (Rongchen Wang); E-mail address: yundezhao@ucsd.edu (Yunde Zhao)
  • Received Date: 2017-06-30
  • Accepted Date: 2017-08-07
  • Available Online: 2017-08-24
  • Publish Date: 2017-09-20
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  • [1]
    Chen, S., Songkumarn, P., Liu, J. et al. A versatile zero background T-vector system for gene cloning and functional genomics Plant Physiol., 150 (2009),pp. 1111-1121
    [2]
    Cong, L., Ran, F.A., Cox, D. et al. Multiplex genome engineering using CRISPR/Cas systems Science, 339 (2013),pp. 819-823
    [3]
    Gaj, T., Gersbach, C.A., ZFN, TALEN, and CRISPR/Cas-based methods for genome engineering Trends Biotechnol., 31 (2013),pp. 397-405
    [4]
    Gao, Y., Zhang, Y., Zhang, D. et al. Proc. Natl. Acad. Sci. U. S. A., 112 (2015),pp. 2275-2280
    [5]
    Gao, Y., Zhao, Y. J. Integr. Plant Biol., 56 (2014),pp. 343-349
    [6]
    Gupta, R.M., Musunuru, K. Expanding the genetic editing tool kit: ZFNs, TALENs, and CRISPR-Cas9 J. Clin. Invest., 124 (2014),pp. 4154-4161
    [7]
    Jinek, M., Chylinski, K., Fonfara, I. et al. A programmable dual-RNA-guided DNA endonuclease in adaptive bacterial immunity Science, 337 (2012),pp. 816-821
    [8]
    Kim, H., Kim, J.S. A guide to genome engineering with programmable nucleases Nat. Rev. Genet., 15 (2014),pp. 321-334
    [9]
    Li, T., Liu, B., Spalding, M.H. et al. High-efficiency TALEN-based gene editing produces disease-resistant rice Nat. Biotechnol., 30 (2012),pp. 390-392
    [10]
    Mali, P., Yang, L., Esvelt, K.M. et al. RNA-guided human genome engineering via Cas9 Science, 339 (2013),pp. 823-826
    [11]
    Miao, J., Guo, D., Zhang, J. et al. Targeted mutagenesis in rice using CRISPR-Cas system Cell Res., 23 (2013),pp. 1233-1236
    [12]
    Shalem, O., Sanjana, N.E., Zhang, F. High-throughput functional genomics using CRISPR-Cas9 Nat. Rev. Genet., 16 (2015),pp. 299-311
    [13]
    Sun, Y., Zhang, X., Wu, C. et al. Engineering herbicide-resistant rice plants through CRISPR/Cas9-mediated homologous recombination of acetolactate synthase Mol. Plant, 9 (2016),pp. 628-631
    [14]
    Tang, X., Lowder, L.G., Zhang, T. et al. A CRISPR-Cpf1 system for efficient genome editing and transcriptional repression in plants Nat. Plants, 3 (2017),p. 17018
    [15]
    Tang, X., Zheng, X., Qi, Y. et al. A single transcript CRISPR-Cas9 system for efficient genome editing in plants Mol. Plant, 9 (2016),pp. 1088-1091
    [16]
    Xie, K., Minkenberg, B., Yang, Y. Boosting CRISPR/Cas9 multiplex editing capability with the endogenous tRNA-processing system Proc. Natl. Acad. Sci. U. S. A., 112 (2015),pp. 3570-3575
    [17]
    Yoshioka, S., Fujii, W., Ogawa, T. et al. Development of a mono-promoter-driven CRISPR/Cas9 system in mammalian cells Sci. Rep., 5 (2015),p. 18341
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