A LuALS Mutation with High Sulfonylurea Herbicide Resistance in Linum usitatissimum L.
文献类型: 外文期刊
第一作者: Liu, Caiyue
作者: Liu, Caiyue;Zhang, Tianbao;Yang, Xinsen;Wang, Liu;Long, Yan;Pei, Xinwu;Liu, Caiyue;Hasi, Agula
作者机构:
关键词: acetolactate synthase; herbicide resistance; flax; mutant
期刊名称:INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES ( 影响因子:5.6; 五年影响因子:6.2 )
ISSN:
年卷期: 2023 年 24 卷 3 期
页码:
收录情况: SCI
摘要: The cultivation of herbicide-resistant crops is an effective tool for weed management in agriculture. Weed control in flax (Linum usitatissimum L.) remains challenging due to the lack of available herbicide-resistant cultivars. In this study, a mutant resistant to acetolactate synthase (ALS)-inhibiting herbicides was obtained by ethyl methanesulphonate (EMS) mutagenesis using an elite cultivar, Longya10. Whole-plant dose-response assays revealed that, compared to Longya10, the mutant was 11.57-fold more resistant to tribenuron-methyl (TBM) and slightly resistant to imazethapyr (resistance index (mutant/Longya10) < 3). In vitro acetolactate synthase assays showed that the relative resistance of the mutant was 12.63 times more than that of Longya10. A biochemical analysis indicated that there was a Pro197Ser (relative to the Arabidopsis thaliana ALS sequence) substitution within the LuALS1, conferring high resistance to sulfonylurea herbicides in the mutant. Additionally, two cleaved amplified polymorphic sequence (CAPS) markers, BsaI-LuALS1 and EcoO109I-LuALS1, were developed based on the mutation site for marker assistant selection in breeding. Moreover, the mutant did not cause losses in natural field conditions. We find a mutant with ALS-inhibiting herbicide resistance chemically induced by EMS mutagenesis, providing a valuable germplasm for breeding herbicide-resistant flax varieties.
分类号:
- 相关文献
作者其他论文 更多>>
-
MicroRNA171a regulates plant development and enhances drought stress tolerance
作者:Zhang, Jingwen;Wang, Liu;Xue, Mande;Gan, Lu;Pei, Xinwu;Zhang, Jingwen
关键词:miR171a; Rice; Arabidopsis; Development; Drought tolerance; ABA-dependency
-
Haplotype-resolved assembly of a pig genome using single-sperm sequencing
作者:Niu, Yongchao;Fan, Xinhao;Yang, Yalan;Wang, Liu;Tang, Zhonglin;Niu, Yongchao;Fan, Xinhao;Yang, Yalan;Tang, Yijie;Tang, Zhonglin;Fan, Xinhao;Zhang, Yongjin;Tang, Zhonglin;Fan, Xinhao;Yang, Yalan;Tang, Yijie;Tang, Zhonglin;Li, Jiang;Lian, Jinmin
关键词:
-
The promotion of sustainable land use planning for the enhancement of ecosystem service capacity: Based on the FLUS-INVEST-RUSLE-CASA model
作者:Li, Guiyuan;Wu, Zhanneng;He, Yu;Li, Guiyuan;Wu, Zhanneng;He, Yu;Li, Guiyuan;Wu, Zhanneng;He, Yu;Chen, Chi;Long, Yan
关键词:
-
Advances of CRISPR/Cas-based Biosensor in Detection of Food-Borne Pathogens
作者:Zhang, Xiao-Yuan;Wu, Zu-Fang;Zhang, Xiao-Yuan;Yao, Zhi-Hao;He, Kai-Yu;Wang, Hong-Mei;Xu, Xia-Hong;Wang, Liu
关键词:Food-borne pathogens; CRISPR/Cas; Biosensor; Review
-
Tuning the Dynamic Reaction Balance of CRISPR/Cas12a and RPA in One Pot: A Key to Switch Nucleic Acid Quantification
作者:Yao, Zhihao;Wu, Qun;Yao, Zhihao;Xu, Yan;Wu, Qun;Yao, Zhihao;Xu, Yan;Wu, Qun;Yao, Zhihao;He, Kaiyu;Wang, Hongmei;Wang, Qiang;Xu, Xiahong;Wang, Liu;Yao, Zhihao;He, Kaiyu;Wang, Hongmei;Wang, Qiang;Xu, Xiahong;Wang, Liu;Feng, Suyin;Ding, Xiaoqing;Wang, Liu
关键词:quantification; CRISPR/Cas12a; isothermal amplification; nucleic acid; one pot
-
Comparative transcriptome analysis reveals the impact of daily temperature difference on male sterility in photo-thermo-sensitive male sterile wheat
作者:Niu, Fuqiang;Song, Xiyue;Liu, Zihan;Liu, Yongjie;Bai, Jianfang;Zhang, Tianbao;Yuan, Shaohua;Bai, Xiucheng;Zhao, Changping;Zhang, Fengting;Sun, Hui;Zhang, Liping
关键词:Daily temperature difference; Male sterility; Safe seed production; Transcriptome; Wheat
-
Acoustofluidic precise manipulation: Recent advances in applications for micro/nano bioparticles
作者:Li, Wanglu;Ye, Zihong;Li, Wanglu;Yao, Zhihao;He, Kaiyu;Wang, Liu;Wang, Hongmei;Xu, Xiahong;Li, Wanglu;Ma, Tongtong;Fu, Yingchun;Xu, Xiahong;Yao, Zhihao
关键词:Bioparticles; Bulk acoustic wave; Surface acoustic wave; Acoustic tweezers; Acoustofluidic chips