Nicosulfuron stress on the glyoxalase system and endogenous hormone content in sweet maize seedlings
文献类型: 外文期刊
作者: Wu, Zhen-Xing 1 ; Wang, Jian 2 ; Lin, Xiao-Hu 2 ; Yang, Qing 2 ; Wang, Ting-Zhen 1 ; Chen, Jian-Jian 1 ; Li, Xiang-Nan 1 ; Guan, Yuan 3 ; Lv, Gui-Hua 1 ;
作者机构: 1.Zhejiang Acad Agr Sci, Inst Maize & Featured Upland Crops, Dongyang 322100, Peoples R China
2.Hebei Normal Univ Sci &Technol, Coll Agron & Biotechnol, Hebei Key Lab Crop Stress Biol, Qinhuangdao 066000, Peoples R China
3.Shanghai Acad Agr Sci, Shanghai Engn Res Ctr Specialty Maize, Shanghai 201106, Peoples R China
关键词: Nicosulfuron; Sweet corn; Glyoxalase system; Hormone; Gene expression
期刊名称:ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH ( 影响因子:5.8; 五年影响因子:5.4 )
ISSN: 0944-1344
年卷期: 2023 年 30 卷 17 期
页码:
收录情况: SCI
摘要: To reduce the harmful effects of nicosulfuron on sweet corn, the physiological regulation mechanism of sweet corn detoxification was studied. This study analyzed the effects of nicosulfuron stress on the glyoxalase system, hormone content, and key gene expression of nicosulfuron-tolerant "HK301" and nicosulfuron-sensitive "HK320" sweet corn seedling sister lines. After spraying nicosulfuron, the methylglyoxal (MG) content in HK301 increased first and then decreased. Glyoxalase I (GlyI) and glyoxalase II (GlyII) activities, non-enzymatic glutathione (GSH), and the glutathione redox state glutathione/(glutathione + glutathione disulfide) (GSH/(GSH + GSSG)) showed a similar trend as the MG content. Abscisic acid (ABA), gibberellin (GA), and zeatin nucleoside (ZR) also increased first and then decreased, whereas the auxin (IAA) increased continuously. In HK301, all indices after spraying nicosulfuron were significantly greater than those of the control. In HK320, MG accumulation continued to increase after nicosulfuron spraying and GlyI and GlyII activities, and GSH first increased and then decreased after 1 day of stress. The indicators above were significantly greater than the control. The GSH/(GSH + GSSG) ratio showed a decreasing trend and was significantly smaller than the control. Furthermore, ABA and IAA continued to increase, and the GA and ZR first increased and then decreased. Compared with HK320, HK301 significantly upregulated the transcription levels of GlyI and GlyII genes in roots, stems, and leaves. Comprehensive analysis showed that sweet maize seedlings improved their herbicide resistance by changing the glyoxalase system and regulating endogenous hormones. The results provide a theoretical basis for further understanding the response mechanism of the glyoxalase system and the regulation characteristics of endogenous hormones in maize under nicosulfuron stress.
- 相关文献
作者其他论文 更多>>
-
A flexible modulated pesticide release platform through poly(urethane-urea) microcapsules: effect of different crosslinkers compositions
作者:Zhang, Bo;Yuan, Yongda;Wang, Jian;Shi, Zefeng;Zhang, Nianlei;Xiao, Yanan;Jin, Zijin;Li, Mengdie;Ren, Tianrui;Zhang, Bo;Yuan, Guohui;Yuan, Yongda;Wu, Wenneng
关键词:poly(urethane-urea) microcapsules; polyols and polyamine crosslinkers; wall thickness; controlled release
-
Integrative transcriptome and metabolome analysis reveals the mechanisms of light-induced pigmentation in purple waxy maize
作者:Lu, Yuan;Yu, Yao;Kari, Ayiguli;Yang, Caixia;Wang, Chenyu;Zhang, Chao;Gu, Wei;Wang, Hui;Hu, Yingxiong;Sun, Pingdong;Guan, Yuan;Zheng, Hongjian;Lu, Yuan;Yu, Yao;Kari, Ayiguli;Yang, Caixia;Wang, Chenyu;Zhang, Chao;Gu, Wei;Wang, Hui;Hu, Yingxiong;Sun, Pingdong;Guan, Yuan;Xu, Yunbi;Zheng, Hongjian;Lu, Yuan;Yu, Yao;Kari, Ayiguli;Yang, Caixia;Wang, Chenyu;Zhang, Chao;Gu, Wei;Wang, Hui;Hu, Yingxiong;Sun, Pingdong;Guan, Yuan;Zheng, Hongjian;Lu, Yuan;Yu, Yao;Kari, Ayiguli;Yang, Caixia;Wang, Chenyu;Zhang, Chao;Gu, Wei;Wang, Hui;Hu, Yingxiong;Sun, Pingdong;Guan, Yuan;Zheng, Hongjian;Xuan, Yanfang;Si, Wenshuai;Bai, Bing;Zhang, Xuecai;Xu, Yunbi;Xu, Yunbi;Prasanna, Boddupalli M.;Shi, Biao
关键词:waxy maize; anthocyanin; light; transcriptomics; metabolomics
-
Genome-Wide Association Study and Genomic Prediction on Plant Architecture Traits in Sweet Corn and Waxy Corn
作者:Dang, Dongdong;Zhang, Ao;Ruan, Yanye;Qin, Li;Dang, Dongdong;Guan, Yuan;Zheng, Hongjian;Wang, Hui;Dang, Dongdong;Zhang, Xuecai
关键词:genome-wide association study; genomic prediction; plant height; ear height; tassel branch number; sweet corn; waxy corn
-
Genome-wide association study presents insights into the genetic architecture of drought tolerance in maize seedlings under field water-deficit conditions
作者:Chen, Shan;Dang, Dongdong;Ji, Shuwen;Dong, Xiaomei;Li, Cong;Zhang, Ao;Ruan, Yanye;Dang, Dongdong;Liu, Yubo;Zheng, Hongjian;Guan, Yuan;Dang, Dongdong;Liu, Yubo;Zheng, Hongjian;Guan, Yuan;Zhao, Chenghao
关键词:maize (Zea mays L.); genome-wide association study; seedling stage; field drought tolerance; SNPs
-
Genomic prediction of the performance of hybrids and the combining abilities for line by tester trials in maize
作者:Zhang, Ao;Cui, Zhenhai;Ruan, Yanye;Zhang, Ao;San Vicente, Felix;Palacios-Rojas, Natalia;Dhliwayo, Thanda;Crossa, Jose;Zhang, Xuecai;Zhang, Ao;Liu, Yubo;Guan, Yuan;Wang, Hui;Zheng, Hongjian;Perez-Rodriguez, Paulino;Liu, Yubo;Guan, Yuan;Wang, Hui;Zheng, Hongjian;Olsen, Michael;Prasanna, Boddupalli M.
关键词:Maize; Genomic selection; Line-By-Tester; General combining ability; Specific combining ability
-
The nitrate transporter OsNPF7.9 mediates nitrate allocation and the divergent nitrate use efficiency between indica and japonica rice
作者:Guan, Yuan;Liu, De-Fen;Liu, Zhi-Jun;He, Ya-Ni;Fang, Zi-Jun;Gong, Ji-Ming;Guan, Yuan;Qiu, Jie;Huang, Xue-Hui;He, Ya-Ni
关键词:
-
Genomic prediction of drought tolerance during seedling stage in maize using low-cost molecular markers
作者:Zhang, Ao;Liu, Yubo;Guan, Yuan;Dang, Dongdong;Zhang, Xuecai;Zheng, Hongjian;Zhang, Ao;Chen, Shan;Dang, Dongdong;Li, Cong;Dong, Xiaomei;Fan, Jinjuan;Zhu, Yanshu;Cao, Huiying;Ruan, Yanye;Zhang, Ao;Chen, Shan;Dang, Dongdong;Li, Cong;Dong, Xiaomei;Fan, Jinjuan;Zhu, Yanshu;Cao, Huiying;Ruan, Yanye;Zhang, Ao;Liu, Yubo;Zhang, Xuecai;Crossa, Jose;Cui, Zhenhai;Yang, Shuang;Qu, Jingtao;Nie, Juchao
关键词:Maize (Zea mays L; ); GBS; DArT; GS; Drought stress