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Impact of temperature on yield and related traits in cotton genotypes 被引量:1

Impact of temperature on yield and related traits in cotton genotypes
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摘要 Cotton growth and development is influenced by various uncontrollable environmental conditions. Temperature variations in the field can be created by planting at different dates. The objective of the present study was to evaluate the effect of planting dates and thermal temperatures(growing degree days) on yield of 4 cotton genotypes, viz., CIM-598, CIM-599, CIM-602 and Ali Akbar-703. Plants were subjected to 6 planting dates during 2013 and 2014 in a trial conducted in randomized complete block design with four replications. For boll number, boll weight and seed cotton yield, cotton genotypes exhibited significant differences, CIM-599 produced the highest seed cotton yield of 2 062 kg ha^(–1) on account of maximum boll number and boll weight. The highest seed cotton yield was recorded in planting dates from 15 th April to 1st May whereas early and delayed planting reduced the yield due to less accumulation of heat units. Regression analysis revealed that increase of one unit(15 days) from early to optimum date(15th March to 15 th April) increased yield by 93.58 kg ha^–1. Delay in planting also decreased the seed cotton yield with the same ratio. Thus it is concluded that cotton must be sown from 15 th April to 1st May to have good productivity in this kind of environment. Cotton growth and development is influenced by various uncontrollable environmental conditions. Temperature variations in the field can be created by planting at different dates. The objective of the present study was to evaluate the effect of planting dates and thermal temperatures(growing degree days) on yield of 4 cotton genotypes, viz., CIM-598, CIM-599, CIM-602 and Ali Akbar-703. Plants were subjected to 6 planting dates during 2013 and 2014 in a trial conducted in randomized complete block design with four replications. For boll number, boll weight and seed cotton yield, cotton genotypes exhibited significant differences, CIM-599 produced the highest seed cotton yield of 2 062 kg ha^(–1) on account of maximum boll number and boll weight. The highest seed cotton yield was recorded in planting dates from 15 th April to 1st May whereas early and delayed planting reduced the yield due to less accumulation of heat units. Regression analysis revealed that increase of one unit(15 days) from early to optimum date(15th March to 15 th April) increased yield by 93.58 kg ha^–1. Delay in planting also decreased the seed cotton yield with the same ratio. Thus it is concluded that cotton must be sown from 15 th April to 1st May to have good productivity in this kind of environment.
出处 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2016年第3期678-683,共6页 农业科学学报(英文版)
基金 Pakistan Central Cotton Committee (PCCC) is highly acknowledged for the financial support of this work
关键词 Gossypium hirsutum planting dates growing degree days genotypes Gossypium hirsutum planting dates growing degree days genotypes
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  • 1Ahmed A E, Abdalla A H, Fadlalla A S. 2006. A note on the stability of five medium staple cotton (Gossypium hirsutum L.) varieties for some fiber properties in the Gezira scheme of the Sudan. University of Khartoum Journal of Agricultural Science. 14. 313-319.
  • 2Ali Y, Aslam Z, Hussain F. 2005. Genotype and environment interaction effect on yield of cotton under naturally salt stress condition. International Journal of Environmental Science and Technology, 2, 169-173.
  • 3Allard R W, Bradshaw A D. 1964. Implications of genotype- environment interaction n app ed p ant breed ng. Crop Science, 4, 503-507.
  • 4Batool S, Khan N U, Gul S, Baloch M J, Turi N A, Taran S A, Saeed M. 2013. Genetic analysis for yield and yield contributing variables in upland cotton. Journal of Food, Agriculture and Environment, 11,624-630.
  • 5Best E C. 2005. Source-sink relations in cotton: Genetic and environmental affectors. MSc thesis, Texas Tech University, Texas, USA.
  • 6Dwyer L M, Stewart D W. 1986. Leaf area development in field grown maize. Agronomy Journal, 78, 334-343.
  • 7Freed R, Einensmith S P, Gutez S, Reicosky D, Smail V W, Wolberg P. 1989. User's Guide to MSTAT-C Analysis of Agronomic Research Experiments. Michigan State University, East Lansing, USA.
  • 8Gecgel U, Demirci M, Esendal E. 2007. Fatty acid composition of the oil from developing seeds of different varieties ofsafflower (Carthamus tinctorius L.). Journal of American Oil & Chemical Society, 84, 47-54.
  • 9Gul S. 2013. Genotype by environment interaction for morpho- yield traits in upland cotton. MSc thesis, The University of Agriculture, Peshawar, Pakistan.
  • 10Kaleem S, Hassan F U, Saleem A. 2009. Influence of environmental variations on physiological attributes of sunflower. African Journal of Biotechnology, 8, 3531-3539.

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