Plant Soil Environ., 2019, 65(11):556-562 | DOI: 10.17221/353/2019-PSE
Effects of subsoiling stage on summer maize water use efficiency and yield in North China PlainsOriginal Paper
- State Key Laboratory of Crop Biology, Key Laboratory of Crop Water Physiology and Drought Tolerance Germplasm Improvement of Ministry of Agriculture, College of Agronomy, Shandong Agricultural University, Tai'an, P.R. China
Aiming at the problems of shallow effective soil layering and low utilization rate of precipitation in the North China Plain. The effects of different subsoiling stages on soil physical properties and water use in winter wheat/summer maize fields were studied. Three kinds of tillage treatments were studied: rotary tillage to a depth of 15 cm in October and no-tillage in June (RT), rotary tillage to a depth of 15 cm in October and subsoiling to 35 cm in June (ST-J), subsoiling to a depth of 35 cm in October and no-tillage in June (ST-O). Changes in soil bulk density and soil compaction were consistent over two seasons. Compared to RT, in the 10-50 cm soil layer, ST-J and ST-O decreased the average soil bulk density by 6.18% and 5.66%, respectively, and the soil compaction in the 10-60 cm layer was reduced by 17.89% and 20.50%. ST was improved soil structure and increased the water content of deep soil. The water use efficiency (WUE) of ST-J and ST-O increased by 4.73% and 14.83%, respectively, and the maize yields by 2.90% and 11.35%, respectively. Considering the WUE and maize yields, it was considered that ST-O is more suitable for tillage in the North China Plain.
Keywords: Zea mays L.; water storage; soil moisture; weather conditions; soil physics; grain
Published: November 30, 2019 Show citation
References
- Barik K., Aksakal E.L., Islam K.R., Sari S., Angin I. (2014): Spatial variability in soil compaction properties associated with field traffic operations. Catena, 120: 122-133.
Go to original source...
- Borghei A.M., Taghinejad J., Minaei S., Karimi M., Varnamkhasti M.G. (2008): Effect of subsoiling on soil bulk density, penetration resistance, and cotton yield in the northwest of Iran. International Journal of Agriculture and Biology, 10: 120-123.
- Brady N.C., Weil R.R. (2007): The Nature and Properties of Soils. 14th Edition. New Jersey, Pearson Education.
- Bryk M., Kołodziej B., Słowińska-Jurkiewicz A., Jaroszuk-Sierocińska M. (2017): Evaluation of soil structure and physical properties influenced by weather conditions during autumn-winter-spring season. Soil and Tillage Research, 170: 66-76.
Go to original source...
- Feng X.M., Hao Y.B., Latifmanesh H., Lal R., Cao T.H., Guo J.R., Deng A.X., Song Z.W., Zhang W.J. (2018): Effects of subsoiling tillage on soil properties, maize root distribution, and grain yield on Mollisols of Northeastern China. Agronomy Journal, 110: 1607-1615.
Go to original source...
- Guo L.L., Wang X.J., Wang S.B., Tan D.C., Han H.F., Ning T.Y., Li Q.Q. (2019): Tillage and irrigation effects on carbon emissions and water use of summer maize in North China Plains. Agricultural Water Management, 223: 105729.
Go to original source...
- Huang M.B., Shao M.A., Zhang L., Li Y.S. (2003): Water use efficiency and sustainability of different long-term crop rotation systems in the Loess Plateau of China. Soil and Tillage Research, 72: 95-104.
Go to original source...
- Ishaq M., Ibrahim M., Lal R. (2003): Persistence of subsoil compaction effects on soil properties and growth of wheat and cotton in Pakistan. Experimental Agriculture, 39: 341-348.
Go to original source...
- Ji B., Zhao Y., Mu X., Liu K., Li C. (2013): Effects of tillage on soil physical properties and root growth of maize in loam and clay in central China. Plant, Soil and Environment, 59: 295-302.
Go to original source...
- Kuang N.K., Tan D.C., Li H.J., Gou Q.S., Li Q.Q., Han H.F. (2020): Effects of subsoiling before winter wheat on water consumption characteristics and yield of summer maize on the North China Plain. Agricultural Water Management, 227: 105786.
Go to original source...
- Li L.L., Huang G.B., Zhang R.Z., Jin X.J., Li G.D., Chan K.Y. (2005): Effects of conservation tillage on soil water regimes in rainfed areas. Acta Ecologica Sinica, 25: 2326-2332.
- Li Q.G., Dong B.D., Qiao Y.Z., Liu M.Y., Zhang J.W. (2010): Root growth, available soil water, and water-use efficiency of winter wheat under different irrigation regimes applied at different growth stages in North China. Agricultural Water Management, 97: 1676-1682.
Go to original source...
- Mrabet R. (2011): Effects of residue management and cropping systems on wheat yield stability in a semiarid Mediterranean clay soil. American Journal of Plant Sciences, 2: 202-216.
Go to original source...
- Mu X.Y., Zhao Y.L., Liu K., Ji B.Y., Guo H.B., Xue Z.W., Li C.H. (2016): Responses of soil properties, root growth and crop yield to tillage and crop residue management in a wheat-maize cropping system on the North China Plain. European Journal of Agronomy, 78: 32-43.
Go to original source...
- Sasal M.C., Andriulo A.E., Taboada M.A. (2006): Soil porosity characteristics and water movement under zero tillage in silty soils in Argentinian Pampas. Soil and Tillage Research, 87: 9-18.
Go to original source...
- Schneider F., Don A., Hennings I., Schmittmann O., Seidel S.J. (2017): The effect of deep tillage on crop yield - What do we really know? Soil and Tillage Research, 174: 193-204.
Go to original source...
- Shrivastava P., Kumar R. (2015): Soil salinity: A serious environmental issue and plant growth promoting bacteria as one of the tools for its alleviation. Saudi Journal of Biological Sciences, 22: 123-131.
Go to original source...
Go to PubMed...
- Sisti C.P.J., dos Santos H.P., Kohhann R., Alves B.J.R., Urquiaga S., Boddey R.M. (2004): Change in carbon and nitrogen stocks in soil under 13 years of conventional or zero tillage in southern Brazil. Soil and Tillage Research, 76: 39-58.
Go to original source...
- Wang E.H., Zhao Y.S., Chen X.W. (2009): Quantification of generalized soil structure based on soil three phases. Acta Ecologica Sinica, 29: 2067-2072. (In Chinese)
- Wang S.B., Guo L.L., Zhou P.C., Wang X.J., Shen Y., Han H.F., Ning T.Y., Han K. (2019): Effect of subsoiling depth on soil physical properties and summer maize (Zea mays L.) yield. Plant, Soil and Environment, 65: 131-137.
Go to original source...
- Wang X.B., Cai D.X., Jin K., Wu H.J., Bai Z.G., Zhang C.J., Yao Y.Q., Lu J.J., Wang Y.H., Yang B., Hartman R., Gabriels D. (2003): Water availability for winter wheat affected by summer fallow tillage practices in sloping dryland. Scientia Agricultura Sinica, 2: 773-778. (In Chinese)
- Yu J.L., Qi H., Zhang Z.P., Zhang W.J., Liu M., Liu Y., Tang J.H., Lin Z.Q. (2013): Effects of subsoiling and sowing dates on canopy structure and yield in maize. Journal of Maize Sciences, 21: 94- 99. (In Chinese)
- Zhang L., Zhang Z.D., Guo Z.Y., Gong S., Wang R.N., Wang P. (2015): Effects of subsoiling tillage and straw returning to the field on soil physical properties. Bulletin of Soil and Water Conservation, 35: 102-106.
This is an open access article distributed under the terms of the Creative Commons Attribution-NonCommercial 4.0 International (CC BY NC 4.0), which permits non-comercial use, distribution, and reproduction in any medium, provided the original publication is properly cited. No use, distribution or reproduction is permitted which does not comply with these terms.