Physiological and molecular adjustment of cotton to waterlogging at peak-flowering in relation to growth and yield
文献类型: 外文期刊
第一作者: Zhang, Yanjun
作者: Zhang, Yanjun;Song, Xuezhen;Li, Zhenhuai;Lu, Hequan;Kong, Xiangqiang;Eneji, A. Egrinya;Dong, Hezhong;Zhang, Yanjun;Dong, Hezhong;Song, Xuezhen;Yang, Guozheng
作者机构:
关键词: Cotton; Waterlogging; Yield; Yield components; Physiological response; Gene expression
期刊名称:FIELD CROPS RESEARCH ( 影响因子:5.224; 五年影响因子:6.19 )
ISSN: 0378-4290
年卷期: 2015 年 179 卷
页码:
收录情况: SCI
摘要: In the Yangtze and Yellow River Valleys of China, cotton usually suffers from waterlogging stress at peak flowering. The effects of waterlogging stress on cotton growth and yield are well documented, but little is known of its effects on the biomass allocation to reproductive parts and what determines waterlogging tolerance at physiological and molecular levels. Cotton was grown in a rain-shelter and subjected to a 10 day-waterlogging period to monitor plant growth and yield as well as physiology and expression of genes responsive for waterlogging tolerance. Plant growth and development as indicated by leaf area, plant biomass, biological yield and lint yield were significantly reduced by waterlogging stress. Averaged across the three years of study, the reductions were 26.3, 15.5, 19.8 and 26.1%, respectively. Boll weight and the number of bolls were also significantly reduced by waterlogging stress. The reduced lint yield was ascribed to the decreased boll weight and the number of bolls, as well as reduced plant dry matter accumulation and harvest index. Waterlogging reduced plant photosynthetic (P-n) rate by 16.9% and NO concentration by 17.5% but increased malondialdehyde (MDA) accumulation by 22.2%. The reduced photosynthetic performance was likely due to cell membrane damage resulting from H2O2 accumulation under hypoxic conditions. Waterlogging stress significantly regulated the expression of a set of genes associated with leaf photosynthesis, ROS scavenging, anaerobic metabolism or cell growth like LHCB, CSD, ACS6, ADH, PDC, ERFs, XTHs and EXPAs, which was the likely mechanism of cotton adaptability to waterlogging stress. (C) 2015 Elsevier B.V. All rights reserved.
分类号: S
- 相关文献
作者其他论文 更多>>
-
Enhancing stand establishment and yield formation of cotton with multiple drip irrigation during emergence in saline fields of Southern Xinjiang
作者:Dai, Jianlong;Cui, Zhengpeng;Zhang, Yanjun;Zhan, Lijie;Nie, JunJun;Zhang, Dongmei;Xu, Shizhen;Sun, Lin;Dong, Hezhong;Cui, Jianqiang;Chen, Bing;Dong, Hezhong;Dong, Hezhong
关键词:Cotton; Dry sowing and wet emergence; Drip irrigation; Saline soil; Stand establishment; Yield formation
-
Deficit irrigation combined with a high planting density optimizes root and soil water-nitrogen distribution to enhance cotton productivity in arid regions
作者:Wu, Fengquan;Tang, Qiuxiang;Wu, Fengquan;Cui, Jianping;Tian, Liwen;Guo, Rensong;Wang, Liang;Zheng, Zipiao;Zhang, Na;Lin, Tao;Zhang, Yanjun
关键词:Root system; Soil water; Soil nitrate nitrogen; Water productivity
-
Insight into the effects of different ripeness levels on the quality and flavor chemistry of Noni fruit ( Morinda citrifolia L.) . )
作者:Chen, Xiaoai;Gu, Chunhe;Zhu, Kexue;Xu, Fei;Feng, Zhen;Zhang, Yanjun;Chen, Xiaoai;Gu, Chunhe;Zhu, Kexue;Xu, Fei;Feng, Zhen;Zhang, Yanjun;Chen, Xiaoai;Gu, Chunhe;Zhu, Kexue;Xu, Fei;Feng, Zhen;Zhang, Yanjun;Chen, Xiaoai;Gu, Chunhe;Zhu, Kexue;Xu, Fei;Feng, Zhen;Zhang, Yanjun
关键词:Noni fruit; Quality and flavor; Physicochemical analysis; Electronic nose; Electronic tongue; GC-MS
-
Genetic diversity and population structure in five Inner Mongolia cashmere goat populations using whole-genome genotyping
作者:Zhang, Tao;Wang, Zhiying;Li, Yaming;Zhou, Bohan;Liu, Yifan;Wang, Ruijun;Lv, Qi;Zhang, Yanjun;Su, Rui;Zhang, Tao;Wang, Zhiying;Li, Yaming;Zhou, Bohan;Liu, Yifan;Li, Jinquan;Wang, Ruijun;Lv, Qi;Zhang, Yanjun;Su, Rui;Wang, Zhiying;Li, Yaming;Zhou, Bohan;Liu, Yifan;Li, Jinquan;Wang, Ruijun;Lv, Qi;Zhang, Yanjun;Su, Rui;Li, Chun
关键词:Cashmere Goat; Genetic Diversity; Inner Mongolia Autonomous Region; Population Structure
-
Progress in Research and Prospects for Application of Precision Gene-Editing Technology Based on CRISPR-Cas9 in the Genetic Improvement of Sheep and Goats
作者:Lu, Zeyu;Mu, Qing;Liu, Junyang;Chen, Yu;Wang, Haoyuan;Zhang, Yanjun;Su, Rui;Wang, Ruijun;Wang, Zhiying;Lv, Qi;Liu, Zhihong;Zhao, Yanhong;Lu, Zeyu;Mu, Qing;Liu, Junyang;Chen, Yu;Wang, Haoyuan;Zhang, Yanjun;Su, Rui;Wang, Ruijun;Wang, Zhiying;Lv, Qi;Liu, Zhihong;Zhao, Yanhong;Lu, Zeyu;Mu, Qing;Liu, Junyang;Chen, Yu;Wang, Haoyuan;Zhang, Yanjun;Su, Rui;Wang, Ruijun;Wang, Zhiying;Lv, Qi;Liu, Zhihong;Zhao, Yanhong;Zhang, Lingtian;Liu, Jiasen;Li, Yunhua
关键词:precision gene editing; CRISPR-Cas9; livestock genetic breeding; cashmere goat; editing efficiency; fixed point integration
-
Genomic Inbreeding and Runs of Homozygosity Analysis of Cashmere Goat
作者:Zhao, Qian;Huang, Chang;Ye, Shaohui;Zhao, Qian;Huang, Chang;Chen, Qian;Su, Yingxiao;Ma, Yuehui;Zhao, Qianjun;Zhang, Yanjun;Wang, Ruijun;Su, Rui;Xu, Huijuan;Liu, Shucai
关键词:cashmere goat; runs of homozygosity; inbreeding coefficient; genetic diversity; selection signatures
-
Effects of N application methods on cotton yield and fertilizer N recovery efficiency in salinity fields with drip irrigation under mulch film using 15N tracing technique
作者:Luo, Zhen;Tang, Wei;Wang, Xiaowen;Lu, Hequan;Li, Chenyang;Liang, Jun;Kong, Xiangqiang;Wang, Xiaowen;Li, Chenyang;Kong, Xiangqiang
关键词:cotton; drip irrigation under mulch film; non-uniform salinity distribution; fertilizer N recovery efficiency; yield; GHNRT