Plant genome editing made easy: targeted mutagenesis in model and crop plants using the CRISPR/Cas system

Редактирование генома растений стало проще: нацеленная мутагенез в модельных и сельскохозяйственных растениях с использованием системы CRISPR/Cas
Sophien Kamoun, Khaoula Belhaj, Angela Chaparro‐Garcia, Vladimir Nekrasov
2013-10-11

CRISPR/Cas systemhomology-directed repair (HDR)non-homologous end joining (NHEJ)plant genome editingtargeted mutagenesis
Targeted genome engineering (also known as genome editing) has emerged as an alternative to classical plant breeding and transgenic (GMO) methods to improve crop plants. Until recently, available tools for introducing site-specific double strand DNA breaks were restricted to zinc finger nucleases (ZFNs) and TAL effector nucleases (TALENs). However, these technologies have not been widely adopted by the plant research community due to complicated design and laborious assembly of specific DNA binding proteins for each target gene. Recently, an easier method has emerged based on the bacterial type II CRISPR (clustered regularly interspaced short palindromic repeats)/Cas (CRISPR-associated) immune system. The CRISPR/Cas system allows targeted cleavage of genomic DNA guided by a customizable small noncoding RNA, resulting in gene modifications by both non-homologous end joining (NHEJ) and homology-directed repair (HDR) mechanisms. In this review we summarize and discuss recent applications of the CRISPR/Cas technology in plants.
1
CRISPR/Cas provides an easier alternative to ZFNs and TALENs for introducing site-specific double-strand breaks in plant genomes.
2
CRISPR/Cas uses a customizable small noncoding RNA to guide targeted genomic DNA cleavage in plants.
3
CRISPR/Cas-mediated breaks enable gene modifications in plants via non-homologous end joining (NHEJ) and homology-directed repair (HDR).
4
Previous tools (ZFNs, TALENs) were limited in adoption due to complex design and laborious assembly, a limitation addressed by CRISPR/Cas.
5
The review summarizes and discusses recent applications of CRISPR/Cas technology in both model and crop plants.

Model and crop plants subjected to targeted genome editing using the CRISPR/Cas system

Targeted mutagenesis and gene modification in plants via CRISPR/Cas-mediated site-specific DNA cleavage and subsequent repair pathways (NHEJ and HDR)

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2013-10-11
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Authors
Sophien Kamoun
Khaoula Belhaj
Angela Chaparro‐Garcia
Vladimir Nekrasov
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