Effect of irrigation on soil oxygen status and root and shoot growth of wheat in a clay soil
- 31 December 1984
- journal article
- research article
- Published by CSIRO Publishing in Australian Journal of Agricultural Research
- Vol. 36 (2), 171-185
- https://doi.org/10.1071/ar9850171
Abstract
Two watering treatments (flood and control) were applied to undisturbed (bulk density ±? 1.6 mg mm-3 ) and repacked ±? 1.2 mg mm-3 ) cylinders of Marah clay loam. The cylinders (0.75 m o.d. by 1.4 m deep) were housed in a lysimeter facility. Wheat (cv. Egret) was grown in the cylinders and the soil was either kept well watered with frequent small amounts of water (control treatment) or subjected to three separate periods, ranging from 4 to 72 h, of surface inundation (flood treatment). The greater pore space and better drainage of the repacked soil ensured that its average level of soil oxygen (O2) was about three times that of the undisturbed soil. Nevertheless, inundation of the soil surface for either 48 or 72 h rapidly decreased soil O2 levels in both soils. Root growth in these soils appeared to be slowed when soil O2 levels became less than 15% of the maximum that would occur in dry, aerated soil. Root growth ceased in both repacked and undisturbed soil cores after a 48-h flooding, when the soil O2 status was probably < 10% of the maximum. Root growth was greatest in the repacked soil with controlled water additions. The ranking of treatments, by either root intercept counts or O2 status, were the same. Leaf and stem growth were not very sensitive to the root zone conditions, but this may have been due to the advanced stage of plant growth when the treatments were applied and to the generally low nitrogen status of all treatment plants. There was a 44% reduction in yield from the best to the worst aerated soil treatment. The data show that if soil O2 levels become low as the result of flooding, root growth of wheat will stop and grain yield will be substantially decreased. Greatly improved aeration of these fine-textured soils is only possible if both the internal drainage properties of the soil are improved and prolonged periods of surface inundation are avoided.Keywords
This publication has 11 references indexed in Scilit:
- Measurements of aeration in waterlogged soils: some improvements of techniques and their application to experiments using lysimetersEuropean Journal of Soil Science, 1983
- Limiting oxygen flux densities for oat root extensionPlant and Soil, 1983
- Response of winter wheat to prolonged waterlogging under outdoor conditionsThe Journal of Agricultural Science, 1981
- Alleviation of Injury to Young Wheat Plants in Anaerobic Solution Cultures in Relation to the Supply of Nitrate and other Inorganic NutrientsJournal of Experimental Botany, 1981
- Effects of waterlogging at different stages of development on the growth and yield of winter wheatJournal of the Science of Food and Agriculture, 1980
- A lysimeter system used to study the effect of transient waterlogging on crop growth and yieldJournal of the Science of Food and Agriculture, 1980
- COLLECTION AND EVALUATION OF LARGE SOIL MONOLITHS FOR SOIL AND CROP STUDIESEuropean Journal of Soil Science, 1979
- THE DEVELOPMENT OF WATERLOGGING DAMAGE IN YOUNG BARLEY PLANTS IN RELATION TO PLANT NUTRIENT STATUS AND CHANGES IN SOIL PROPERTIESNew Phytologist, 1979
- A New Fiber Optic Technique for Measuring Root Growth of Soybeans Under Field Conditions 1Agronomy Journal, 1978
- Effect of waterlogging on the growth, grain and straw yield of wheat, barley and oatsAustralian Journal of Experimental Agriculture, 1976