Deficit irrigation as an on-farm strategy to maximize crop water productivity in dry areas

被引:758
作者
Geerts, Sam [1 ]
Raes, Dirk [1 ]
机构
[1] Katholieke Univ Leuven, Div Soil & Water Management, B-3001 Louvain, Belgium
关键词
Water use efficiency; Crop evapotranspiration; Water stress; Arid regions; Water production function; CHENOPODIUM-QUINOA WILLD; SIMULATE YIELD RESPONSE; MANGIFERA-INDICA L; USE EFFICIENCY; SUPPLEMENTAL IRRIGATION; WINTER-WHEAT; GRAIN-YIELD; HIGHLAND ENVIRONMENT; DRIP IRRIGATION; SEMIARID REGION;
D O I
10.1016/j.agwat.2009.04.009
中图分类号
S3 [农学(农艺学)];
学科分类号
0901 ;
摘要
Deficit irrigation (DI) has been widely investigated as a valuable and sustainable production strategy in dry regions. By limiting water applications to drought-sensitive growth stages, this practice aims to maximize water productivity and to stabilize - rather than maximize - yields. We review selected research from around the world and we summarize the advantages and disadvantages of deficit irrigation. Research results confirm that DI is successful in increasing water productivity for various crops without causing severe yield reductions. Nevertheless, a certain minimum amount of seasonal moisture must be guaranteed. DI requires precise knowledge of crop response to drought stress, as drought tolerance varies considerably by genotype and phenological stage. In developing optimizing DI strategies, field research should therefore be combined with crop water productivity modeling. (C) 2009 Elsevier B.V. All rights reserved.
引用
收藏
页码:1275 / 1284
页数:10
相关论文
共 128 条
[91]   Simulation of yield decline as a result of water stress with a robust soil water balance model [J].
Raes, D ;
Geerts, S ;
Kipkorir, E ;
Wellens, J ;
Sahli, A .
AGRICULTURAL WATER MANAGEMENT, 2006, 81 (03) :335-357
[92]  
Raes D., 2006, P 4 INT WORKSH SUST
[93]   AquaCrop-The FAO Crop Model to Simulate Yield Response to Water: II. Main Algorithms and Software Description [J].
Raes, Dirk ;
Steduto, Pasquale ;
Hsiao, Theodore C. ;
Fereres, Elias .
AGRONOMY JOURNAL, 2009, 101 (03) :438-447
[94]  
Ragab R., 1996, Water Reports, P149
[95]   Translational research impacting on crop productivity in drought-prone environments [J].
Reynolds, Matthew ;
Tuberosa, Roberto .
CURRENT OPINION IN PLANT BIOLOGY, 2008, 11 (02) :171-179
[96]   Adapting to intersectoral transfers in the Zhanghe Irrigation System, China - Part I: In-system storage characteristics [J].
Roost, N. ;
Cai, X. L. ;
Molden, D. ;
Cui, Y. L. .
AGRICULTURAL WATER MANAGEMENT, 2008, 95 (06) :698-706
[97]   The effect of water stress in regulated deficit irrigation on soybean yield (Glycine max [L.] Merr.) [J].
Rosadi, R. A. Bustomi ;
Afandi ;
Senge, Masateru ;
Ito, Kengo ;
Adomako, John T. .
PADDY AND WATER ENVIRONMENT, 2007, 5 (03) :163-169
[98]   Long-term effects of irrigation water conservation on crop production and environment in semiarid areas [J].
Sarwar, A ;
Bastiaanssen, WGM .
JOURNAL OF IRRIGATION AND DRAINAGE ENGINEERING, 2001, 127 (06) :331-338
[99]   Optimal applied water and nitrogen for winter wheat under variable seasonal rainfall and planning scenarios for consequent crops in a semi-arid region [J].
Sepaskhah, A. R. ;
Azizian, A. ;
Tavakoli, A. R. .
AGRICULTURAL WATER MANAGEMENT, 2006, 84 (1-2) :113-122
[100]   Deficit irrigation planning under variable seasonal rainfall [J].
Sepaskhah, AR ;
Akbari, D .
BIOSYSTEMS ENGINEERING, 2005, 92 (01) :97-106