Soil water deficit effects on soil inorganic nitrogen in alternate-furrow flood irrigated Australian cotton production systems

Author:

Macdonald Ben C. T.ORCID,Schwenke Graeme D.ORCID,McPherson Annabelle,Mercer Clarence,Baird Jonathan,Nachimuthu GunasekharORCID

Abstract

Context Predicting the nitrogen (N) mineralisation from soil organic matter is a key aid to fertiliser decision-making and improving the N fertiliser use efficiency of a crop. Aims and methods Field experiments were conducted to assess the amount of inorganic N derived from soil organic matter mineralisation over two seasons (2017–2018 and 2018–2019) across treatments differing in irrigation frequency and amount. During both seasons, the plant line soil in each treatment was sequentially sampled at each irrigation event. Key results There was an effect of the soil water deficit on the measured accumulated soil inorganic N derived from mineralisation in both measurement years. It was observed that soil inorganic N accumulated in the plant line rather than in other hillside and furrow positions for all soil moisture deficit treatments in both years. In 2017–2018, N accumulated in the plant was significantly greater than the measured accumulated inorganic N (0–300 mm). Conclusions and implications The sequential soil sampling approach was challenging in irrigated systems and we propose a hybrid measurement of pre-season available soil N and/or plant N uptake in nil N fertiliser plots as a means of estimating N derived from soil organic matter mineralisation.

Publisher

CSIRO Publishing

Subject

Earth-Surface Processes,Soil Science,Environmental Science (miscellaneous)

Reference38 articles.

1. studies of nitrogen mineralization and uptake in forest soils; some comments on methodology.;Soil Biology and Biochemistry,1989

2. Predicting nitrogen mineralisation in Australian irrigated cotton cropping systems.;Soil Research,2019

3. Bromide and nitrate movement through undisturbed soil columns.;Journal of Environmental Quality,2004

4. Nitrogen application to cotton on a clay soil: timing and soil testing.;Agronomy Journal,1988

5. Constable GA, Shaw AJ (1988) Temperature requirements for cotton. Agfact P5.3.5.. Division of Plant Industries, New South Wales Department of Agriculture. Available at

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