Repositorium
A simple, flexible and high-throughput cloning system for plant genome editing via CRISPR-Cas system
96
Journal Article / 2016
Kim, Hyeran; Kim, Sang-Tae; Ryu, Jahee; Choi, Min Kyung; Kweon, Jiyeon; Kang, Beum-Chang; Ahn, Hyo-Min; Bae, Suji; Kim, Jungeun; Kim, Jin-Soo; Kim, Sang-Gyu
CRISPR-Cas9 system is now widely used to edit a target genome in animals and plants. Cas9 protein derived from Streptococcus pyogenes (SpCas9) cleaves double-stranded DNA targeted by a chimeric single-guide RNA (sgRNA). For plant genome editing, Agrobacterium-mediated T-DNA transformation has been broadly used to express Cas9 proteins and sgRNAs under the control of CaMV 35S and U6/U3 promoter, respectively. We here developed a simple and high-throughput binary vector system to clone a 19-20 bp of sgRNA, which binds to the reverse complement of a target locus, in a large T-DNA binary vector containing an SpCas9 expressing cassette. Two-step cloning procedures: (1) annealing two target-specific oligonucleotides with overhangs specific to the AarI restriction enzyme site of the binary vector; and (2) ligating the annealed oligonucleotides into the two AarI sites of the vector, facilitate the high-throughput production of the positive clones. In addition, Cas9-coding sequence and U6/U3 promoter can be easily exchanged via the Gateway(TM) system and unique EcoRI/XhoI sites on the vector, respectively. We examined the mutation ratio and patterns when we transformed these constructs into Arabidopsis thaliana and a wild tobacco, Nicotiana attenuata. Our vector system will be useful to generate targeted large-scale knock-out lines of model as well as non-model plant.
Techniques
ID | Corresponding Author Country |
Plant Species | GE Technique Sequence Identifier |
Trait Type of Alteration |
Progress in Research Key Topic |
---|---|---|---|---|---|
204 |
Kim, Jin-Soo; Kim Sang-Gyu South Korea |
Arabidopsis thaliana |
CRISPR/Cas9 SH3P3 |
No information SDN1 |
Basic research Basic research |
205 |
Kim, Jin-Soo; Kim Sang-Gyu South Korea |
Nicotiana attenuata |
CRISPR/Cas9 AOC |
encodes a key enzyme for jasmonic acid biosynthesis SDN1 |
Basic research Basic research |