High crop productivity with high water use in winter and summer on the Liverpool Plains, eastern Australia

被引:6
作者
Young, R. R. [1 ]
Derham, P. -J. [1 ]
Dunin, F. X. [2 ]
Bernardi, A. L. [1 ]
Harden, S. [1 ]
机构
[1] Tamworth Agr Inst, NSW Dept Primary Ind, Calala, NSW 2340, Australia
[2] CSIRO, Plant Ind, Wembley, WA 6913, Australia
来源
AUSTRALIAN JOURNAL OF AGRICULTURAL RESEARCH | 2008年 / 59卷 / 04期
关键词
D O I
10.1071/AR07138
中图分类号
S [农业科学];
学科分类号
09 ;
摘要
We report exceptional productivity and associated water-use efficiency across seasons for commercial crops of rainfed spring wheat and grain sorghum growing on stored soil water in Vertosols on the Liverpool Plains, central-eastern Australia. Agreement between the independently measured terms of evapotranspiration (E-T) and the soil water balance (incrop rainfall + delta soil water) was achieved within acceptable uncertainty across almost all measurement intervals, to provide a reliable dataset for the analysis of growth and water-use relationships without the confounding influence of water outflow either overland or within the soil. Post-anthesis intrinsic transpiration efficiency (k(c)) values of 4.7 and 7.2 Pa for wheat and sorghum, respectively, and grain yields of 8 and 7 t/ha from E-T of 450 and 442mm (1.8 and 1.6 g/m(2).mm), clearly demonstrate the levels of productivity and water-use efficiency possible for well-managed crops within an intensive and productive response cropping sequence. The Vertosols in which the crops were grown enabled rapid and apparently unconstrained delivery of significant quantities of subsoil water (34% and 51% of total available) after anthesis, which enabled a doubling of pre-anthesis standing biomass and harvest indices of almost 50%. Durum wheat planted into only 0.30 m of moist soil and enduring lower than average seasonal rainfall, yielded less biomass and grain (2.3 t/ha) with lower water-use efficiency (0.95 g/m(2).mm) but larger transpiration efficiency, probably due to reduced stomatal conductance. We argue that crop planting in response to stored soil water and management for high water-use efficiency to achieve high levels of average productivity of crop sequences over time can have a significant effect on both increased productivity and enhanced hydrological stability across alluvial landscapes.
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页码:303 / 320
页数:18
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