Nitrogen economy and water productivity of lowland rice under water-saving irrigation

被引:144
|
作者
Belder, P
Spiertz, JHJ
Bouman, BAM
Lu, G
Tuong, TP
机构
[1] Univ Wageningen & Res Ctr, Crop & Weed Ecol Grp, NL-6700 AK Wageningen, Netherlands
[2] Int Rice Res Inst, Crop Soil & Water Sci Div, Manila, Philippines
[3] Huazhong Agr Univ, Dept Resources & Environm, Wuhan, Peoples R China
关键词
water savings; lowland rice; water productivity; nitrogen uptake; apparent nitrogen recovery; evapotranspiration;
D O I
10.1016/j.fcr.2004.09.022
中图分类号
S3 [农学(农艺学)];
学科分类号
0901 ;
摘要
Water saving in irrigated lowland rice production is increasingly needed to cope with a decreasing availability of fresh water. We investigated the effect of irrigation regimes on grain yield and nitrogen (N) uptake and recovery, and the effect of N management on water productivity (grain yield/evapotranspiration (ET)). Four field experiments were carried out-three summer seasons at Tuanlin (2000-2002), China, and one dry season at Munoz (200 1), Philippines-using a hybrid for Tuanlin and an inbred cultivar for Munoz. Several water-saving regimes were compared with continuous submergence. N fertilizer was applied at 180 kg ha(-1) at Tuanlin and at 90 and 180 kg ha(-1) at Munoz and compared with a 0-N application. Grain yield ranged from 4.1 t ha(-1) at Munoz in 0-N plots to 9.5 t ha(-1) at Tuanlin in 2001 with 180 kg N ha(-1). Alternately submerged-non-submerged regimes showed a 4-6% higher yield than continuous submergence. Other water-saving regimes led to yield reduction. fit all seasons, N application significantly increased grain yield largely through an increased biomass and grain number. Water productivity was significantly increased by N application in three out of four seasons and under limited water stress ranged from 0.70 to 1.17 in 0-N plots and from 1.27 to 1.66 kg m(3) at 180 kg N ha(-1). Water-saving regimes also increased water productivity under non-water-stressed conditions compared with continuous submergence. A synthesis of the data of three seasons at Tuanlin showed that biomass and apparent N recovery declined linearly with the duration of the crop growth without submergence. We concluded that the absence of an effect of water-saving regimes was caused by shallow groundwater tables of < 40-cm depth in 2000-2001 at Tuanlin and at Munoz, whereas at Tuanlin in 2002 there was water deficit in all treatments caused by a deeper drainage. In irrigation systems with a relatively shallow water table, optimal N management is as important as water-saving irrigation to enhance water productivity. (c) 2004 Elsevier B.V. All rights reserved.
引用
收藏
页码:169 / 185
页数:17
相关论文
共 50 条
  • [31] Water-saving irrigation strategies affect tuber water relations and nitrogen content of potatoes
    Ahmadi, S. H.
    Agharezaee, M.
    Kamgar-Haghighi, A. A.
    Sepaskhah, A. R.
    [J]. INTERNATIONAL JOURNAL OF PLANT PRODUCTION, 2016, 10 (03) : 275 - 288
  • [32] Productivity and water use of ratoon rice cropping systems with water-saving, drought-resistant rice
    Xia, Fangzhao
    Wang, Wukai
    Weng, Yulin
    Ali, Ihsan
    Zhao, Jinsong
    Nie, Zhongnan
    Li, Xinghua
    Yao, Xuan
    Yang, Tewu
    [J]. AGRONOMY JOURNAL, 2022, 114 (04) : 2352 - 2363
  • [33] Morpho-physiological adaptations of rice leaf to Water deficit under non-flooded water-saving irrigation
    Xu, Junzeng
    Peng, Shizhang
    Yang, Shihong
    Yu, Yanmei
    Wei, Qi
    [J]. RESEARCH ON CROPS, 2013, 14 (03) : 637 - 648
  • [34] Water-saving irrigation practices for rice yield information and nitrogen use efficiency under sub-tropical monsoon climate
    Zheng Huabin
    Zhou Wei
    Chen Qimin
    Chen Yuanwei
    Tang Qiyuan
    [J]. WATER SUPPLY, 2019, 19 (08) : 2485 - 2493
  • [35] Water-saving techniques in Chinese agriculture - water-saving irrigation and straw mulching for winter wheat
    Zhao, GQ
    Zhu, ZX
    Zheng, YF
    Fang, WS
    [J]. ECOSYSTEMS' DYNAMICS, AGRICULTURAL REMOTE SENSING AND MODELING, AND SITE-SPECIFIC AGRICULTURE, 2003, 5153 : 195 - 199
  • [36] Current status of global rice water use efficiency and water-saving irrigation technology recommendations
    Haonan, Qiu
    Jie, Wang
    Shihong, Yang
    Zewei, Jiang
    Yi, Xu
    [J]. JOURNAL OF AGRONOMY AND CROP SCIENCE, 2023, 209 (05) : 734 - 746
  • [37] Water productivity of contrasting rice genotypes grown under water-saving conditions in the tropics and investigation of morphological traits for adaptation
    Bueno, C. S.
    Bucourt, M.
    Kobayashi, N.
    Inubushi, K.
    Lafarge, T.
    [J]. AGRICULTURAL WATER MANAGEMENT, 2010, 98 (02) : 241 - 250
  • [38] Water-saving cultivation plus super rice hybrid genotype improves water productivity and yield
    Chen, Zongkui
    Yang, Xiaolong
    Song, Weizhou
    Khan, Aziz
    Najeeb, Ullah
    Li, Ping
    Cao, Cougui
    [J]. AGRONOMY JOURNAL, 2020, 112 (03) : 1764 - 1777
  • [39] Design of Wireless Water-Saving Irrigation Controller
    Hu, Fei
    Chen, Cairong
    Li, Xun
    [J]. ADVANCES IN MECHATRONICS AND CONTROL ENGINEERING, PTS 1-3, 2013, 278-280 : 1577 - 1580
  • [40] Coupled model of stomatal conductance-photosynthesis-transpiration for paddy rice under water-saving irrigation
    Xu, Jun-Zeng
    Peng, Shi-Zhang
    Yang, Shi-Hong
    Yu, Yan-Mei
    [J]. ARCHIVES OF AGRONOMY AND SOIL SCIENCE, 2014, 60 (02) : 163 - 181