Influence of Tillage and Deep Rooted Cool Season Cover Crops on Soil Properties, Pests, and Yield Responses in Cotton
- 1 Edisto Research & Education Center (Edisto REC), Clemson University, Blackville, SC, USA
- 2 Department of Agricultural and Environmental Sciences, Clemson University, Clemson, SC, USA
- 3 Department of Agricultural and Environmental Sciences, Clemson University, Clemson, SC, USA
- 4 Edisto Research & Education Center (Edisto REC), Clemson University, Blackville, SC, USA
- 5 Edisto Research & Education Center (Edisto REC), Clemson University, Blackville, SC, USA
- 6 Edisto Research & Education Center (Edisto REC), Clemson University, Blackville, SC, USA
- 7 Department of Agricultural and Environmental Sciences, Clemson University, Clemson, SC, USA
Abstract
Soil compaction is a significant problem in the Southeastern USA. This compacted zone or hardpan limits root penetration below this layer and reduces potential yield and makes plants more susceptible to drought induced stresses. Soil compaction in this region is managed using costly annual deep tillage at or before planting and there is a great interest in reducing and/or eliminating annual tillage operations to lower production costs. Deep rooted cool season cover crops can penetrate this compacted soil zone and create channels, which cash crop roots, such as cotton, could follow to capture moisture and nutrients stored in the subsoil. The cool season cover crop roots would reduce the need for annual deep tillage prior to planting, increases soil organic matter, which provides greater water infiltration and available water holding capacity. Field studies were conducted for two years with three different soil series to determine the effects of tillage systems and cool season cover crops on the soil chemical and physical properties, yield responses, and pest pressure. Results showed that cool season cover crops significantly reduced soil compaction, increased cotton lint yield and soil moisture content, reduced nematode population densities, and increased soil available P, K, Mn, and organic matter content compared to the conventional no-cover crop.
- Siemens, J.C., Hoeft, R.G. and Pauli, A.W. (1993) Soil Compaction and Its Management in Soil Management. Deere & Company, Moline.
- Gorucu, S., Khalilian, A., Han, Y.J., Dodd, R.B. and Smith, B.R. (2006) An Algorithm to Determine the Optimum Tillage Depth from Soil Penetrometer Data in Coastal Plain Soils. Applied Engineering in Agriculture, 22, 625-631. http://dx.doi.org/10.13031/2013.21993
- Khalilian, A., Hood, C.E., Palmer, J.H., Garner, T.H. and Bathke, G.R. (1991) Soil Compaction and Crop Response to Wheat/Soybean Interseeding. Transactions of ASAE, 34, 2299-2303. http://dx.doi.org/10.13031/2013.31871
- Khalilian, A., Jones, M., Sullivan, M. and Frederick, J. (2004) Comparison of Strip Tillage System in Coastal Plain Soils for Cotton Production. Proceedings of the Beltwide Cotton Conferences, San Antonio, 5-9 January 2004, 803-810.
- Khalilian, Williamson, A.R.E., Sullivan, M.J., Mueller, J.D. and Wolak, F.J. (2002) Injected and Broadcast Application of Composted Municipal Solid Waste in Cotton. Applied Engineering in Agriculture, 18, 17-22. http://dx.doi.org/10.13031/2013.7704
- Khalilian, A., Sullivan, M.J., Mueller, J.D., Shiralipour, A., Wolak, F.J., Williamson, R.E. and Lippert, R.M. (2002) Effects of Surface Application of MSW Compost on Cotton Production—Soil Properties, Plant Responses and Pest Management. Compost Science & Utilization, 10, 270-279. http://dx.doi.org/10.1080/1065657X.2002.10702089
- White, C.M. and Weil, R.R. (2011) Forage Radish Cover Crops Increase Soil Test Phosphorus Surrounding Radish Taproot Holes. Soil Science Society of America Journal, 75, 121-130. http://dx.doi.org/10.2136/sssaj2010.0095
- Chen, G. and Weil, R.R. (2010) Penetration of Cover Crop Root through Compacted Soils. Plant and Soil, 331, 31-43. http://dx.doi.org/10.1007/s11104-009-0223-7
- Williams, S.M. and Weil, R.R. (2004) Crop Cover Root Channels May Alleviate Compaction Effects on Soybean Crop. Soil Science Society of America Journal, 68, 1403-1409. http://dx.doi.org/10.2136/sssaj2004.1403
- Sainju, U.M. (2002) Long-Term Effects of Tillage, Cover Crops, and Nitrogen Fertilization on Organic Carbon and Nitrogen Concentrations in Sandy Loam Soils in Georgia, USA. Soil & Tillage Research, 63, 167-179. http://dx.doi.org/10.1016/S0167-1987(01)00244-6
- Sainju, U.M. (2006) Tillage, Cover Crops, and Nitrogen Fertilization Effects on Soil Nitrogen and Cotton and Sorghum Yields. European Journal of Agronomy, 25, 372-382. http://dx.doi.org/10.1016/j.eja.2006.07.005