Generation of a high-efficiency adenine base editor with TadA8e for developing wheat dinitroaniline-resistant germplasm
文献类型: 外文期刊
作者: Han, Huanan 1 ; Wu, Ziwen 1 ; Zheng, Ling 1 ; Han, Jingyi 1 ; Zhang, Yi 1 ; Li, Jihu 2 ; Zhang, Shujuan 2 ; Li, Genying 2 ; Ma, Changle 1 ; Wang, Pingping 1 ;
作者机构: 1.Shandong Normal Univ, Coll Life Sci, Wenhua East Rd 88, Jinan 250014, Shandong, Peoples R China
2.Shandong Acad Agr Sci, Crop Res Inst, Jinan 250100, Shandong, Peoples R China
关键词: CRISPR; Base editing; Dinitroaniline; Herbicide-resistant; Wheat breeding
期刊名称:CROP JOURNAL ( 影响因子:4.407; 五年影响因子:5.687 )
ISSN: 2095-5421
年卷期: 2022 年 10 卷 2 期
页码:
收录情况: SCI
摘要: Base editing using CRISPR technologies is an invaluable tool for crop breeding. One of the major base editors, the adenine base editor (ABE), has been successfully used in both model plants and many crops. However, owing to limited editing efficiency, the ABE has been difficult to apply in polyploid crops such as allohexaploid bread wheat that often require simultaneous mutation of multiple alleles for fast breeding. We have designed a wheat high-efficiency ABE (WhieABE), using the newly developed high-activity adenosine deaminase TadA8e. In vivo and in vitro analysis demonstrated the improved applicability of TadA8e over the commonly used TadA7.10. Dinitroaniline is a widely used herbicide with high effectiveness and low toxicity to animals. However, wheat cultivars with tolerance to dinitroaniline are rare, limiting the application of dinitroaniline in wheat planting. Using A-to-G editing with WhieABE, we found that a Met-to-Thr mutation in wheat tubulin alleles located on chromosomes 1A, 1B, 1D, 4A, and 4D increased the resistance of wheat to dinitroaniline, revealing a dosage effect of edited tubulins in resistance. The WhieABE promises to be a valuable editing tool for accelerating crop improvement and developing herbicide-resistant wheat germplasm. (C) 2021 Crop Science Society of China and Institute of Crop Science, CAAS. Production and hosting by Elsevier B.V. on behalf of KeAi Communications Co., Ltd.
- 相关文献
作者其他论文 更多>>
-
The TaSnRK1-TabHLH489 module integrates brassinosteroid and sugar signalling to regulate the grain length in bread wheat
作者:Lyu, Jinyang;Sun, Na;Yang, Fan;Li, Xuepeng;Mu, Junyi;Zhou, Runxiang;Zheng, Guolan;Yang, Xin;Zhang, Chenxuan;Han, Chao;Xia, Guang-Min;Fan, Min;Bai, Ming-Yi;Wang, Dongzhi;Xiao, Jun;Li, Genying;Xiao, Jun;Xiao, Jun
关键词:wheat grain length; brassinosteroid; sugar; TabHLH489; SnRK1
-
Creating a zero amylose barley with high soluble sugar content by genome editing
作者:Li, Yun;Jiang, Yanyan;Cao, Dong;Fan, Shiting;Shen, Yuhu;Liu, Baolong;Li, Yun;Cao, Dong;Fan, Shiting;Shen, Yuhu;Liu, Baolong;Jiang, Yanyan;Dang, Bin;Yang, Xijuan;Li, Genying
关键词:Barley; Starch; Waxy; Amylose-free; CRISPR/Cas9 genome editing
-
The ZmbHLH47-ZmSnRK2.9 Module Promotes Drought Tolerance in Maize
作者:Yan, Zhenwei;Zhang, Fajun;Mu, Chunhua;Yao, Guoqi;Leng, Bingying;Liu, Xia;Ma, Changle;Sun, Yue;Hou, Jing
关键词:ABA response; drought tolerance; maize; ZmbHLH47; ZmSnRK2.9
-
Analysis of allelic variation of TaNCED1-5B and functional marker development for drought resistance in wheat
作者:Song, Guoqi;Zhang, Shujuan;Li, Wei;Zhang, Rongzhi;Li, Yulian;Gao, Jie;Li, Jihu;Chen, Mingli;Liu, Min;Li, Genying
关键词:Allelic variation; drought resistance; KASP; TaNCED1; wheat
-
Wheat Pm55 alleles exhibit distinct interactions with an inhibitor to cause different powdery mildew resistance
作者:Lu, Chuntian;Du, Jie;Chen, Heyu;Jin, Yinyu;Meng, Xiangru;Zhang, Ting;Xing, Liping;Kong, Lingna;Chen, Peidu;Cao, Aizhong;Zhang, Ruiqi;Lu, Chuntian;Du, Jie;Chen, Heyu;Jin, Yinyu;Meng, Xiangru;Zhang, Ting;Fu, Bisheng;Xing, Liping;Wu, Jizhong;Cao, Aizhong;Zhang, Ruiqi;Gong, Shuangjun;Fu, Bisheng;Wu, Jizhong;Molnar, Istvan;Molnar, Istvan;Holusova, Katerina;Said, Mahmoud;Dolezel, Jaroslav;Said, Mahmoud;Li, Genying
关键词:
-
TaRLK-6A promotes Fusarium crown rot resistance in wheat
作者:Qi, Haijun;Qi, Haijun;Zhu, Xiuliang;Wei, Xuening;Zhang, Zengyan;Qi, Haijun;Shen, Wenbiao;Yang, Xia;Chen, Feng;Zhang, Chaozhong;Li, Genying
关键词:
-
Genome-Wide Investigation of the CRF Gene Family in Maize and Functional Analysis of ZmCRF9 in Response to Multiple Abiotic Stresses
作者:Yan, Zhenwei;Leng, Bingying;Yao, Guoqi;Zhang, Fajun;Mu, Chunhua;Liu, Xia;Hou, Jing;Ma, Changle;Sun, Yue
关键词:maize; cytokinin response factors; genome-wide analysis; expression analysis; abiotic stress



