Plant Architecture Influences the Population Transpiration and Canopy Temperature in Winter Wheat Genotypes
文献类型: 外文期刊
第一作者: Huang, Guirong
作者: Huang, Guirong;Zhang, Xinying;Wang, Zhenzhao;Li, Yuzhong;Liu, Xiaoying;Guo, Rui;Gu, Fengxue;Liu, Enke;Zhong, Xiuli;Mei, Xurong;Huang, Guirong;Zhang, Xinying;Li, Shuying
作者机构:
关键词: winter wheat; plant architecture; canopy temperature depression; population-scale transpiration; evaporation
期刊名称:AGRONOMY-BASEL ( 影响因子:3.7; 五年影响因子:4.0 )
ISSN:
年卷期: 2023 年 13 卷 3 期
页码:
收录情况: SCI
摘要: To study how plant architecture affects the canopy traits and water use of wheat, the Triticum aestivum L. population is expected to provide important information for cultivar improvement and the ideal population structure establishment for conserving water without causing an enormous grain yield loss. This study was conducted for three consecutive growing seasons using two genotypes with contrasting plant architectures as the materials, the upright-leafed compact type Jing 411 and the flat-leafed loose type Jinmai 47. The population-scale transpiration (PT) and soil evaporation (E) were partitioned from the evapotranspiration (ET) using micro-lysimeters, and the canopy traits population density and the canopy temperature depression (CTD) were also monitored during the period from the jointing to early grain filling stage-the largest water requirement period of wheat crops. Jinmai 47 showed a lower E than Jing 411, but a similar PT and ET, though it had a higher population density at the sowing density. The total evapotranspiration (TET) for the whole growing season was also similar in the two genotypes. This indicated that Jinmai 47 performed better in water conservation than Jing 411. With a similar PT and TET, however, Jinmai 47 showed a rather larger CTD and a significantly higher grain yield than Jing 411. If the higher population density and higher leaf net photosynthetic rate could explain its higher grain yield, the higher leaf stomotal conductance and transpiration rate and the higher population density could not explain the similar PT, ET and TET to Jing 411. Presumably, the involvement of the plant architecture disrupted the original higher transpiration-larger CTD relation, and broke up the prevailing saving water-losing yield concept. Thus, the study might suggest the important water saving value of the flat-leafed loose architecture in wheat crops and demonstrate the possibility of conserving irrigation water without causing serious grain yield loss by taking advantage of the distinct plant architecture to establish an appropriate population structure.
分类号:
- 相关文献
作者其他论文 更多>>
-
Host-microbe interactions rewire metabolism in a C. elegans model of leucine breakdown deficiency
作者:Lee, Yong-Uk;Guo, Rui;Nanda, Shivani;Yilmaz, L. Safak;Walhout, Albertha J. M.;Fox, Bennett W.;Curtis, Brian J.;Yu, Jingfang;Baumann, Victor;Schroeder, Frank C.;Guo, Rui;Kim, Sookyung;Haynes, Cole M.;Nanda, Shivani;Nanda, Shivani
关键词:
-
Optimizing fertilization depth to promote yield performance and economic benefit in maize for hybrid seed production
作者:Tian, Zhonghong;Zhang, Mengjie;Liu, Chang;Xiang, Yingzhou;Hu, Yarong;Wang, Yuhao;Ren, Xiaolong;Jia, Zhikuan;Zhang, Peng;Tian, Zhonghong;Zhang, Mengjie;Liu, Chang;Wang, Yuhao;Ren, Xiaolong;Jia, Zhikuan;Zhang, Peng;Liu, Enke;Wu, Peng;Siddique, Kadambot H. M.
关键词:Fertilization depth; Nutrient uptake; Fertilizer use efficiency; Economic benefit; Seed production maize
-
Metabolomic and physiological analysis of alfalfa (Medicago sativa L.) in response to saline and alkaline stress
作者:Guo, Rui;Zhou, Zeyu;Cai, Run;Liu, Lei;Wang, Ruixin;Sun, Yugang;Wang, Dan;Guo, Changhong;Yan, Zhe
关键词:Saline stress; Alkaline stress; Untargeted metabolomics; Alfalfa; Plant resistance
-
Kinetin-mediated reduction of cadmium accumulation in rice (Oryza sativa L.) via modulation of cell wall binding capacity in a NO-dependent manner
作者:Guo, Rui;Chen, ChangZhao;He, MengXing;Li, ZhiWen;Lv, Yang;Tao, XinYu;Zhang, Qiang;Guo, Rui;Zhang, Qiang;He, MengXing;Li, ZhiWen;Tao, XinYu
关键词:Rice; Cd stress; Kinetin; Nitric oxide (NO)
-
Effect of plant architecture on the responses of canopy temperature and water use to population density in winter wheat
作者:Huang, Guirong;Zhang, Xinying;Wang, Zhenzhao;Liu, Xiaoying;Guo, Rui;Gu, Fengxue;Liu, Enke;Zhong, Xiuli;Mei, Xurong;Huang, Guirong;Zhang, Xinying;Li, Shuying;Zhong, Xiuli;Mei, Xurong
关键词:
-
Maximizing potato tuber yields and nitrogen use efficiency in semi-arid environments by precision fertilizer depth application
作者:Zhang, Nanhai;Li, Heng;Shan, Weixing;Jia, Zhikuan;Zhang, Peng;Zhang, Nanhai;Li, Heng;Jia, Zhikuan;Zhang, Peng;Liu, Enke;Shan, Weixing
关键词:Fertilization depth; Nutrient uptake; Nitrogen use efficiency; Tuber yield
-
Transient anoxic conditions boost N2O emissions by stimulating denitrification capacity and decreasing N2O reduction ratio in soils with different carbon substrates
作者:Zhuang, Shan;Ding, Junjun;Kou, Xinyue;Li, Qiaozhen;Xu, Chunying;Mao, Lili;Pan, Yanshuo;Li, Yuzhong;Zhuang, Shan;Han, Dongfei;Ding, Junjun;Li, Qiaozhen;Xu, Chunying;Mao, Lili;Li, Yuzhong;Lin, Wei;Zheng, Qian;Gao, Ying;Gao, Ying;Ding, Junjun;Han, Dongfei
关键词:Nitrous oxide; Transient anoxic conditions; Oxalic acid; Serine; Glucose; N2O reduction; Dual isotope mapping