Bange M P, Long R L. 2013. Impact of harvest aid timing and machine spindle harvesting on neps in upland cotton. Textile Research Journal, 83, 651–658.
Bange M P, Long R L, Constable G A, Gordon S G. 2010. Minimizing immature fiber and neps in upland cotton. Agronomy Journal, 102, 781–789.
Bynum J B, Cothren J T. 2008. Indicators of last effective boll population and harvest aid timing in cotton. Agronomy Journal, 100, 1106–1111.
Byrd S A, Collins G D, Edmisten K L, Roberts P M, Snider J L, Spivey T A, Whitaker J R, Porter W M, Culpepper A S. 2016. Leaf pubescence and defoliation strategy influence on cotton defoliation and fiber quality. Journal of Cotton Science, 20, 280–293.
Cathey G W, Luckett K E. 1982. Accelerated cotton boll dehiscence with growth regulator and desiccant chemicals. Field Crops Research, 5, 113–120.
Chen B, Han H Y, Zhang G L. 2017. Effect of four defoliants and ripeners on cotton. China Cotton, 44, 26–28. (in Chinese)
Du M W, Ren X M, Tian X L, Duan L S, Zhang M C, Tan W M, Li Z H. 2013. Evaluation of harvest aid chemicals for the cotton–winter wheat double cropping system. Journal of Integrative Agriculture, 12, 273–282.
Faircloth J C, Edmisten K L. 2004. The influence of defoliation timing on yields and quality of two cotton cultivars. Crop Science, 44, 165–172.
Gu S H, Evers J B, Zhang L Z, Mao L L, Zhang S, Zhao X, Liu S, van der Werf, Li Z. 2014. Modelling the structural response of cotton plants to mepiquat chloride and population density. Annals of Botany, 114, 877–887.
Gwathmey C O, Hayes R M. 1997. Harvest-aid interactions under different temperature regimes in field-grown cotton. Journal of Cotton Science, 1, 1–9.
Logan J, Gwathmey C O. 2002. Effects of weather on cotton responses to harvest-aid chemicals. Journal of Cotton Science, 6, 1–12.
Malik M, Makhdum M I. 2002. Use of thidiazuron as harvest-aid in early and late planted cotton. International Journal of Agricultural and Biology, 4, 71–73.
Mao L L, Zhang L Z. 2015. Yield components and quality of intercropped cotton in response to mepiquat chloride and plant density. Field Crops Research, 179, 63–71.
MSNCM (Monitoring System of National Cotton Market). 2017. The investigation report on actual planting area of China cotton in 2017[R/OL]. [2017-12-19], http://www.cncotton.com/sy_59/xjztc/201712/t20171219_576531.html (in Chinese)
Siebert J D. 2006a. Correlation of defoliation timing methods to optimize cotton yield, quality, and revenue. Journal of Cotton Science, 10, 146–154.
Siebert J D. 2006b. Cotton (Gossypium hirsutum L.) yield and fiber quality response to premature insect-simulated and harvest-aid defoliation. Journal of Cotton Science, 10, 9–16.
Snipes C E, Baskin C C. 1994. Influence of early defoliation on cotton yield, seed quality, and fiber properties. Field Crops Research, 37, 137–143.
Snipes C E, Cathey G W. 1992. Evaluation of defoliant mixtures in cotton. Field Crops Research, 28, 327–334.
Wang X R, Hou Y R, Du M W. 2017. Effect of harvest aids on cotton in the Yellow River Valley region as affected by site, planting date and cultivars. China Cotton, 44, 6–12. (in Chinese)
Wang X R, Hou Y R, Du M W, Xu D Y, Lu H Y, Tian X L, Zhang L Z. 2016. Effect of planting date and plant density on cotton traits as relating to mechanical harvesting in the Yellow River valley region of China. Field Crops Research, 196, 112–121.
Wright S D, Hutmacher R B. 2015. Impact of early defoliation on California pima cotton boll opening, lint yield, and quality. Journal of Crop Improvement, 29, 528–541. |