Repositorium

What is a repositorium?

The repositorium is a searchable database that provides data on relevant articles from journals, company web pages and web pages of governmental agencies about studies/applications of genome-editing in model plants and agricultural crops in the period January 1996 to May 2018. Search options are article type, technique, plant, traits or free text. The repositorium is based on the systematic map of Dominik Modrzejewski et al., published in the journal environmental evidence. (Download article PDF).

A simple, flexible and high-throughput cloning system for plant genome editing via CRISPR-Cas system


Typ / Jahr

Journal Article / 2016

Autoren

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

Abstract

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.

Keywords
Arabidopsis/genetics; Base Sequence; Cloning, Molecular/methods; CRISPR-Cas Systems/genetics; Gene Editing/methods; Genes, Plant; Genetic Vectors; Genome, Plant; Plants, Genetically Modified; RNA, Guide/genetics; Transformation, Genetic
Periodical
Journal of integrative plant biology
Periodical Number
8
Page range
705–712
Volume
58
DOI
10.1111/jipb.12474

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