Arid
DOI10.1093/aob/mcw122
Root system-based limits to agricultural productivity and efficiency: the farming systems context
Thorup-Kristensen, Kristian1; Kirkegaard, John2
通讯作者Kirkegaard, John
来源期刊ANNALS OF BOTANY
ISSN0305-7364
EISSN1095-8290
出版年2016
卷号118期号:4页码:573-592
英文摘要

Background There has been renewed global interest in both genetic and management strategies to improve root system function in order to improve agricultural productivity and minimize environmental damage. Improving root system capture of water and nutrients is an obvious strategy, yet few studies consider the important interactions between the genetic improvements proposed, and crop management at a system scale that will influence likely success.


Scope To exemplify these interactions, the contrasting cereal-based farming systems of Denmark and Australia were used, where the improved uptake of water and nitrogen from deeper soil layers has been proposed to improve productivity and environmental outcomes in both systems. The analysis showed that water and nitrogen availability, especially in deeper layers (>1 m), was significantly affected by the preceding crops and management, and likely to interact strongly with deeper rooting as a specific trait of interest.


Conclusions In the semi-arid Australian environment, grain yield impacts from storage and uptake of water from depth (>1 m) could be influenced to a stronger degree by preceding crop choice (0.42 t ha(-1)), pre-crop fallow management (0.65 t ha(-1)) and sowing date (0.63 t ha(-1)) than by current genetic differences in rooting depth (0.36 t ha(-1)). Matching of deep-rooted genotypes to management provided the greatest improvements related to deep water capture. In the wetter environment of Denmark, reduced leaching of N was the focus. Here the amount of N moving below the root zone was also influenced by previous crop choice or cover crop management (effects up to 85 kg N ha(-1)) and wheat crop sowing date (up to 45 kg ha(-1)), effects which over-ride the effects of differences in rooting depth among genotypes. These examples highlight the need to understand the farming system context and important G x E x M interactions in studies on proposed genetic improvements to root systems for improved productivity or environmental outcomes.


英文关键词Australia Denmark root system
类型Review
语种英语
国家Denmark ; Australia
收录类别SCI-E
WOS记录号WOS:000386487600003
WOS关键词TRITICUM-AESTIVUM L. ; NITROGEN CATCH CROPS ; INCREASES RHIZOSPHERE ALKALIZATION ; SOUTH-EASTERN AUSTRALIA ; WINTER-WHEAT ROOTS ; NORTH CHINA PLAIN ; WATER-UPTAKE ; MINERAL NITROGEN ; N MINERALIZATION ; PLANT-ROOTS
WOS类目Plant Sciences
WOS研究方向Plant Sciences
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/2XILL650/191282
作者单位1.Univ Copenhagen, Dept Plant & Environm Sci, DK-1168 Copenhagen, Denmark;
2.CSIRO Agr, Canberra, ACT 2601, Australia
推荐引用方式
GB/T 7714
Thorup-Kristensen, Kristian,Kirkegaard, John. Root system-based limits to agricultural productivity and efficiency: the farming systems context[J]. Commonwealth Scientific and Industrial Research Organisation,2016,118(4):573-592.
APA Thorup-Kristensen, Kristian,&Kirkegaard, John.(2016).Root system-based limits to agricultural productivity and efficiency: the farming systems context.ANNALS OF BOTANY,118(4),573-592.
MLA Thorup-Kristensen, Kristian,et al."Root system-based limits to agricultural productivity and efficiency: the farming systems context".ANNALS OF BOTANY 118.4(2016):573-592.
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