A multiplex guide RNA expression system and its efficacy for plant genome engineering

被引:20
|
作者
Oh, Youngbin [1 ]
Lee, Bora [1 ]
Kim, Hyeonjin [1 ]
Kim, Sang-Gyu [1 ]
机构
[1] Korea Adv Inst Sci & Technol, Dept Biol Sci, Daejeon 34141, South Korea
关键词
CRISPR-Cas9; Golden gate assembly; Multiplex gRNAs; Plant genome editing; CRISPR/CAS9; DNA; DELETIONS; CELLS;
D O I
10.1186/s13007-020-00580-x
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
Background The Streptococcus pyogenes CRISPR system is composed of a Cas9 endonuclease (SpCas9) and a single-stranded guide RNA (gRNA) harboring a target-specific sequence. Theoretically, SpCas9 proteins could cleave as many targeted loci as gRNAs bind in a genome. Results We introduce a PCR-free multiple gRNA cloning system for editing plant genomes. This method consists of two steps: (1) cloning the annealed products of two single-stranded oligonucleotide fragments harboring a complimentary target-binding sequence on each strand between tRNA and gRNA scaffold sequences in a pGRNA vector; and (2) assembling tRNA-gRNA units from several pGRNA vectors with a plant binary vector containing a SpCas9 expression cassette using the Golden Gate assembly method. We validated the editing efficiency and patterns of the multiplex gRNA expression system in wild tobacco (Nicotiana attenuata) protoplasts and in transformed plants by performing targeted deep sequencing. Two proximal cleavages by SpCas9-gRNA largely increased the editing efficiency and induced large deletions between two cleavage sites. Conclusions This multiplex gRNA expression system enables high-throughput production of a single binary vector and increases the efficiency of plant genome editing.
引用
收藏
页数:11
相关论文
共 50 条
  • [1] A multiplex guide RNA expression system and its efficacy for plant genome engineering
    Youngbin Oh
    Bora Lee
    Hyeonjin Kim
    Sang-Gyu Kim
    Plant Methods, 16
  • [2] Design of Guide RNA for CRISPR/Cas Plant Genome Editing
    Gerashchenkov, G. A.
    Rozhnova, N. A.
    Kuluev, B. R.
    Kiryanova, O. Yu
    Gumerova, G. R.
    Knyazev, A., V
    Vershinina, Z. R.
    Mikhailova, E., V
    Chemeris, D. A.
    Matniyazov, R. T.
    Baimiev, An Kh
    Gubaidullin, I. M.
    Baimiev, Al Kh
    Chemeris, A., V
    MOLECULAR BIOLOGY, 2020, 54 (01) : 24 - 42
  • [3] Design of Guide RNA for CRISPR/Cas Plant Genome Editing
    G. A. Gerashchenkov
    N. A. Rozhnova
    B. R. Kuluev
    O. Yu. Kiryanova
    G. R. Gumerova
    A. V. Knyazev
    Z. R. Vershinina
    E. V. Mikhailova
    D. A. Chemeris
    R. T. Matniyazov
    An. Kh. Baimiev
    I. M. Gubaidullin
    Al. Kh. Baimiev
    A. V. Chemeris
    Molecular Biology, 2020, 54 : 24 - 42
  • [4] EXPRESSION OF A PLANT GENOME IN HNRNA AND MESSENGER-RNA
    KIPER, M
    BARTELS, D
    HERZFELD, F
    RICHTER, G
    NUCLEIC ACIDS RESEARCH, 1979, 6 (05) : 1961 - 1978
  • [5] GENOME EXPRESSION OF PLANT POSITIVE-STRAND RNA VIRUSES
    DAVIES, JW
    HULL, R
    JOURNAL OF GENERAL VIROLOGY, 1982, 61 (JUL): : 1 - 14
  • [6] Mitochondrial genome of the nonphotosynthetic mycoheterotrophic plant Hypopitys monotropa, its structure, gene expression and RNA editing
    Shtratnikoya, Viktoria Yu
    Schelkunov, Mikhail, I
    Penin, Aleksey A.
    Logacheva, Maria D.
    PEERJ, 2020, 8
  • [7] ENGINEERING A PLANT RNA VIRUS FOR EXPRESSION OF FOREIGN GENETIC SEQUENCES
    NUSS, DL
    BIOESSAYS, 1986, 4 (03) : 133 - 134
  • [8] A geminivirus-based guide RNA delivery system for CRISPR/Cas9 mediated plant genome editing
    Yin, Kangquan
    Han, Ting
    Liu, Guang
    Chen, Tianyuan
    Wang, Ying
    Yu, Alice Yunzi L.
    Liu, Yule
    SCIENTIFIC REPORTS, 2015, 5
  • [9] A geminivirus-based guide RNA delivery system for CRISPR/Cas9 mediated plant genome editing
    Kangquan Yin
    Ting Han
    Guang Liu
    Tianyuan Chen
    Ying Wang
    Alice Yunzi L. Yu
    Yule Liu
    Scientific Reports, 5
  • [10] A streamlined guide RNA screening system for genome editing in Sorghum bicolor
    Lee, Jeong Sun
    Bae, Su-Ji
    Kim, Jin-Soo
    Kim, Changsoo
    Kang, Beum-Chang
    PLANT METHODS, 2023, 19 (01)