Skip to main navigation Skip to main content

Korean. J. Breed. Sci. : Korean Journal of Breeding Science

OPEN ACCESS
ABOUT
BROWSE ARTICLES
EDITORIAL POLICIES
FOR CONTRIBUTORS

Articles

Article

벼의 CRISPR/Cas9 기반 유전자 교정을 통한 내병성 및 내재해성 증진 연구 동향

김유림1, 최시은1, 윤인선2, 김송림2, 모영준1,*

Research Advances in Improving Disease Resistance and Abiotic Stress Tolerance Using CRISPR/Cas9 Gene Editing in Rice

Korean Journal of Breeding Science 2022;54(4):331-344.
Published online: December 1, 2022

1전북대학교 농업생명과학대학 작물생명과학과

2농촌진흥청 국립농업과학원 유전자공학과

1Department of Crop Science and Biotechnology, Jeonbuk National University, Jeonju, 54896, Republic of Korea

2Gene Engineering Division, National Institute of Agricultural Sciences, Rural Development Administration, Jeonju, 54874, Republic of Korea

*Corresponding Author: (E-mail: yjmo@jbnu.edu, Tel: +82-63-270-2530)
• Received: October 15, 2022   • Revised: November 11, 2022   • Accepted: November 11, 2022

Copyright © 2022 by the Korean Society of Breeding Science

This is an open-access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/3.0) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.

  • 214 Views
  • 6 Download
  • 3 Crossref
prev next

Citations

Citations to this article as recorded by  Crossref logo
  • CRISPR/Cas9-mediated mutagenesis of SMXL4 alters plant height and yield-related traits in rice (cv. Samkwang)
    Yurim Kim, Yeeun Jun, Jiheon Han, Sieun Choi, Hwarim Kim, Minje Lee, Song Lim Kim, Sang-Ho Kang, Eun-Jung Suh, Sang Ryeol Park, Youngjun Mo
    Scientific Reports.2026;[Epub]     CrossRef
  • Phenotypic and transcriptomic characterization of OsSWEET14-edited rice (cv. Samkwang) with enhanced bacterial blight resistance
    Yeeun Jun, Jiheon Han, Yurim Kim, Sieun Choi, Song Lim Kim, Jae-Hyeon Oh, Eun-Jung Suh, Sang-Ho Kang, Hye-Ran Park, Hyun-Cheol Jeong, Sang Ryeol Park, Youngjun Mo
    BMC Plant Biology.2025;[Epub]     CrossRef
  • Current Trends in Wheat Breeding Strategies for Developing Domestic Wheat Cultivars in Korea
    Hajeong Kang, Hyoun-Min Park, San-Gu Lee, Eun-Ha Kim, Muhammad Imran, Hanyoung Choi, Myeong-Ji Kim, Seonwoo Oh
    Korean Journal of Breeding Science.2024; 56(4): 491.     CrossRef

Download Citation

Download a citation file in RIS format that can be imported by all major citation management software, including EndNote, ProCite, RefWorks, and Reference Manager.

Format:

Include:

Research Advances in Improving Disease Resistance and Abiotic Stress Tolerance Using CRISPR/Cas9 Gene Editing in Rice
Korean. J. Breed. Sci.. 2022;54(4):331-344.   Published online December 1, 2022
Download Citation

Download a citation file in RIS format that can be imported by all major citation management software, including EndNote, ProCite, RefWorks, and Reference Manager.

Format:
Include:
Research Advances in Improving Disease Resistance and Abiotic Stress Tolerance Using CRISPR/Cas9 Gene Editing in Rice
Korean. J. Breed. Sci.. 2022;54(4):331-344.   Published online December 1, 2022
Close

Figure

  • 0
  • 1
Research Advances in Improving Disease Resistance and Abiotic Stress Tolerance Using CRISPR/Cas9 Gene Editing in Rice
Image Image
Fig. 1 Number of publications with the words “CRISPR” and “rice” in titles retrieved from PubMed and Web of Science databases.
Fig. 2 Classification of CRISPR/Cas9 publications in rice according to main subjects. The papers classified as “Breeding” category were further subclassified based on key traits of interest.
Research Advances in Improving Disease Resistance and Abiotic Stress Tolerance Using CRISPR/Cas9 Gene Editing in Rice

List of genes edited by CRISPR/Cas9 for enhancing disease resistance in rice.

Disease Target gene Strategyz Transformation method Cultivar Referencey
Bacterial blight OsSWEET11 NHEJ Agrobacterium Kitaake Kim et al. 2019
NHEJ - ZH11, KY131, Huanghuazhan Li et al. 2020a
NHEJ Agrobacterium IR58025B Yu et al. 2021
OsSWEET13 NHEJ Agrobacterium Kitaake Zhou et al. 2015
OsSWEET14 NHEJ Agrobacterium Zhonghua 11 Zeng et al. 2020a
NHEJ Particle bombardment Super Basmati Zafar et al. 2020
NHEJ Agrobacterium TBR225 Duy et al. 2021
OsSWEET11, OsSWEET13, OsSWEET14 NHEJ Agrobacterium Kitaake Xu et al. 2019
NHEJ Agrobacterium Kitaake, IR64, Ciherang-Sub1 Oliva et al. 2019
Xa23 HDR Particle bombardment Nipponbare Wei et al. 2021
Blast OsERF922 NHEJ Agrobacterium Kuiku131 Wang et al. 2016
OsSEC3A NHEJ Agrobacterium Kitaake Ma et al. 2018
Pi-ta NHEJ Particle bombardment Nangeng 9108, BL3045 Xu et al. 2020
Pi21 NHEJ Agrobacterium VP 1636 Nawaz et al. 2020
Bacterial blight, blast TMS5, Pi21, Xa13 NHEJ Agrobacterium Pinzhan Li et al. 2019
Pi21, Bsr-d1, Xa5 NHEJ - Nipponbare Tao et al. 2021
Bsr-d1, Pi21, ERF922 NHEJ Agrobacterium Longke638S Zhou et al. 2021
Bacterial blight, bacterial leaf streak OsSWEET11, OsSWEET14, OsSULTR3;6 NHEJ - GT0105, ZT0918 Ni et al. 2021
Bacterial blight, sheath blight, blast OsMESL NHEJ Agrobacterium ZH11 Hu et al. 2021
Rice tungro spherical virus eIF4G NHEJ Agrobacterium IR64 Macovei et al. 2018
Rice black streak virus eIF4G NHEJ Agrobacterium Nipponbare Wang et al. 2021

List of genes edited by CRISPR/Cas9 for enhancing abiotic stress tolerance in rice.

Stress Target gene Strategyz Transformation method Cultivar Referencey
Drought SRL1, SRL2 NHEJ Agrobacterium GXU16, GXU20, GXU28 Liao et al. 2019
OsPYL9 NHEJ Agrobacterium IR-96 Usman et al. 2020
OsERA1 NHEJ Agrobacterium Nipponbare Ogata et al. 2020
Salinity OsRR9, OsRR10, NHEJ Agrobacterium Kitaake Wang et al. 2019
OsRR22 NHEJ Agrobacterium WPB106 Zhang et al. 2019
Drought, salinity OsDST NHEJ Agrobacterium MTU1010 Santosh Kumar et al. 2020
Cold OsMYB30 NHEJ Agrobacterium Nipponbare Zeng et al. 2020b
Drought, salinity, cold RGA1, DEP1 NHEJ Agrobacterium Sasanishiki Cui et al. 2020
Heat TT2, SCT1/SCT2 NHEJ Agrobacterium Huajingxian Kan et al. 2022
TT3.2 NHEJ Agrobacterium Wuyunjing Zhang et al. 2022
OsProDH NHEJ Agrobacterium Kongyu131 Guo et al. 2020
WRKY10 NHEJ - Zhonghua11 Chen et al. 2022c
Table 1 List of genes edited by CRISPR/Cas9 for enhancing disease resistance in rice.

zNHEJ: non-homologous end joining, HDR: homology-directed repair

yIn addition to 10 papers subclassified as “biotic stress” group in Fig. 2, 11 papers were added in the table by further literature search using additional keywords.

Table 2 List of genes edited by CRISPR/Cas9 for enhancing abiotic stress tolerance in rice.

zNHEJ: non-homologous end joining, HDR: homology-directed repair

yIn addition to five papers subclassified as “abiotic stress” group in Fig. 2, seven papers were added in the table by further literature search using additional keywords.