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Article

Sorghum–Cotton Rotation Reduces Weed Pressure and Improves Cotton Productivity in the Texas High Plains

by
Gaganjot Singh Sodhi
1,
Sukhbir Singh
1,
SV Krishna Jagadish
1,
Donna McCallister
2 and
Rupinder Saini
1,*
1
Department of Plant and Soil Science, Texas Tech University, Bayer Plant Science Building, 2911 15th Street, Mail Stop 42122, Lubbock, TX 79415, USA
2
Department of Agricultural and Applied Economics, Texas Tech University, Lubbock, TX 79409, USA
*
Author to whom correspondence should be addressed.
Crops 2026, 6(5), 85; https://doi.org/10.3390/crops6050085
Submission received: 2 July 2026 / Revised: 25 August 2026 / Accepted: 27 August 2026 / Published: 2 September 2026

Simple Summary

Cotton farmers in the Texas High Plains face increasing problems from herbicide-resistant weeds and declining water availability from the Ogallala Aquifer. This 2-year study evaluated whether rotating cotton with sorghum, a drought-tolerant crop with allelopathic properties, could improve weed management and crop productivity. Compared to continuous cotton, the sorghum–cotton rotation reduced weed density and biomass by 41% and 57%, respectively. Cotton grown after sorghum was taller, produced more biomass, and had 53% higher lint yield and 30% higher seed yield under weeded conditions. Under unweeded conditions, yield losses were reduced by 21–41% in the sorghum–cotton rotation as compared to cotton monoculture. These results show that integrating sorghum in cotton production systems can reduce weed pressure and improve cotton productivity.

Abstract

The Texas High Plains (THP) is a major cotton-producing region facing challenges from continuous cotton monoculture, which has increased weed pressure and reduced system sustainability. Over 90% of cotton acreage relies on herbicides, accelerating the evolution of herbicide-resistant weed development. Declining Ogallala Aquifer water levels and erratic rainfall further stress the system, highlighting the need for diversified, drought-resilient cropping systems. Sorghum, known for its drought tolerance and allelopathic properties, offers an effective rotational crop to suppress weeds and improve water-use efficiency. This study evaluated the effects of sorghum–cotton rotation on weed dynamics, crop growth, and yield. A two-year field experiment (2024–2025) was conducted at the Quaker Research Farm, Texas Tech University, Lubbock, TX, using a split-plot design with crop rotations [sorghum–cotton (S–C), sorghum–sorghum (S–S), and cotton–cotton (C–C)] as main plots and weed management treatments (weeded and unweeded) as subplots, with four replications. Results showed that the C–C system had 41% higher weed density and 57% greater early-season biomass than S–C; cotton growth improved in S–C with 17–22% taller plants and 36–90% more biomass compared to cotton monoculture. Under weeded conditions, lint yield increased by 53% and seed yield by 30% compared with cotton monoculture. Under unweeded conditions, yields were 21% to 41% greater in the S–C system due to lower weed density, biomass and reduced competition. Overall, integrating sorghum into cotton-based systems reduced weed pressure, increased cotton plant height and biomass, improved lint and seed yield, and minimized yield losses under limited weed control, supporting more sustainable production in the THP.
Keywords: crop rotation; weed suppression; Palmer amaranth; integrated weed management; cotton productivity crop rotation; weed suppression; Palmer amaranth; integrated weed management; cotton productivity

Share and Cite

MDPI and ACS Style

Sodhi, G.S.; Singh, S.; Jagadish, S.K.; McCallister, D.; Saini, R. Sorghum–Cotton Rotation Reduces Weed Pressure and Improves Cotton Productivity in the Texas High Plains. Crops 2026, 6, 85. https://doi.org/10.3390/crops6050085

AMA Style

Sodhi GS, Singh S, Jagadish SK, McCallister D, Saini R. Sorghum–Cotton Rotation Reduces Weed Pressure and Improves Cotton Productivity in the Texas High Plains. Crops. 2026; 6(5):85. https://doi.org/10.3390/crops6050085

Chicago/Turabian Style

Sodhi, Gaganjot Singh, Sukhbir Singh, SV Krishna Jagadish, Donna McCallister, and Rupinder Saini. 2026. "Sorghum–Cotton Rotation Reduces Weed Pressure and Improves Cotton Productivity in the Texas High Plains" Crops 6, no. 5: 85. https://doi.org/10.3390/crops6050085

APA Style

Sodhi, G. S., Singh, S., Jagadish, S. K., McCallister, D., & Saini, R. (2026). Sorghum–Cotton Rotation Reduces Weed Pressure and Improves Cotton Productivity in the Texas High Plains. Crops, 6(5), 85. https://doi.org/10.3390/crops6050085

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