Arid
DOI10.1071/AR04133
Impact of subsoil constraints on wheat yield and gross margin on fine-textured soils of the southern Victorian Mallee
Rodriguez, D; Nuttall, J; Sadras, VO; van Rees, H; Armstrong, R
通讯作者Rodriguez, D
来源期刊AUSTRALIAN JOURNAL OF AGRICULTURAL RESEARCH
ISSN0004-9409
EISSN1836-5795
出版年2006
卷号57期号:3页码:355-365
英文摘要

The APSIM-Wheat module was used to investigate our present capacity to simulate wheat yields in a semi-arid region of eastern Australia (the Victorian Mallee), where hostile subsoils associated with salinity, sodicity, and boron toxicity are known to limit grain yield. In this study we tested whether the effects of subsoil constraints on wheat growth and production could be modelled with APSIM-Wheat by assuming that either: (a) root exploration within a particular soil layer was reduced by the presence of toxic concentrations of salts, or (b) soil water uptake from a particular soil layer was reduced by high concentration of salts through osmotic effects. After evaluating the improved predictive capacity of the model we applied it to study the interactions between subsoil constraints and seasonal conditions, and to estimate the economic effect that subsoil constraints have on wheat farming in the Victorian Mallee under different climatic scenarios. Although the soils had high levels of salinity, sodicity, and boron, the observed variability in root abundance at different soil layers was mainly related to soil salinity. We concluded that: (i) whether the effect of subsoil limitations on growth and yield of wheat in the Victorian Mallee is driven by toxic, osmotic, or both effects acting simultaneously still requires further research, (ii) at present, the performance of APSIM-Wheat in the region can be improved either by assuming increased values of lower limit for soil water extraction, or by modifying the pattern of root exploration in the soil pro. le, both as a function of soil salinity. The effect of subsoil constraints on wheat yield and gross margin can be expected to be higher during drier than wetter seasons. In this region the interaction between climate and soil properties makes rainfall information alone, of little use for risk management and farm planning when not integrated with cropping systems models.


英文关键词root growth salinity sodicity boron toxicity El Nino La Nina ENSO
类型Article
语种英语
国家Australia
收录类别SCI-E
WOS记录号WOS:000236391500010
WOS关键词SIMULATION-MODEL ; CROP MANAGEMENT ; WATER ; GROWTH ; SALINITY ; SALT ; STRESS ; ACCUMULATION ; VARIABILITY ; COMPONENTS
WOS类目Agriculture, Multidisciplinary
WOS研究方向Agriculture
来源机构Commonwealth Scientific and Industrial Research Organisation
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/150844
作者单位(1)Primary Ind Res Victoria Horsham, Horsham, Vic 3400, Australia;(2)SARDI, Adelaide, SA, Australia;(3)Univ Adelaide, Sch Agr & Wine, Glen Osmond, SA 5064, Australia;(4)Birchip Cropping Grp, Birchip, Vic 3483, Australia
推荐引用方式
GB/T 7714
Rodriguez, D,Nuttall, J,Sadras, VO,et al. Impact of subsoil constraints on wheat yield and gross margin on fine-textured soils of the southern Victorian Mallee[J]. Commonwealth Scientific and Industrial Research Organisation,2006,57(3):355-365.
APA Rodriguez, D,Nuttall, J,Sadras, VO,van Rees, H,&Armstrong, R.(2006).Impact of subsoil constraints on wheat yield and gross margin on fine-textured soils of the southern Victorian Mallee.AUSTRALIAN JOURNAL OF AGRICULTURAL RESEARCH,57(3),355-365.
MLA Rodriguez, D,et al."Impact of subsoil constraints on wheat yield and gross margin on fine-textured soils of the southern Victorian Mallee".AUSTRALIAN JOURNAL OF AGRICULTURAL RESEARCH 57.3(2006):355-365.
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