2016Turkish Journal Of Field CropsRequires access

THE MOST BASIC SELECTION CRITERIA FOR IMPROVING YIELD AND QUALITY OF UPLAND COTTON

Imtiaz Ali, Amir Shakeel, Asif Saeed, Manzoor Hussain, Ahsan Irshad, Muhammad Tariq Mahmood, Zia Ullah Zia, Waqas Ahmed Malik, Muhammad Kashif Aziz, Muhammad Arshad Hussain

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Abstract

Increase in productivity and selection procedures chiefly depend upon genetic control of yield related traits,combining ability of the genotypes for concerned characters and association of these parameters amongthemselves and with the final yield. Single and three way crosses in cotton were analyzed for genetic behavior,combining ability, heterosis and correlation of various traits related to boll (synonymously known as withinbollyield traits) and fibre quality. The experiments were carried out at the Department of Plant Breeding andGenetics, University of Agriculture, Faisalabad. Crosses were made using line × tester mating design. All thegenotypes showed highly significant variability with respect to all the parameters studied. Variances for bothgeneral combining ability (GCA) and specific combining ability (SCA) were significant for most of the traitshowever variances due to SCA were higher than variance due to GCA for all the traits. Likewise dominancevariance (D) was higher than additive variance (A) which indicated dominant genetic behavior of the traits.The line BH-160 was found to be the best general combiner for most of the traits like average boll weight,number of seeds per boll, seed mass per boll, lint mass per boll, seed volume, seed surface area, seed cottonyield per plant and fibre fineness. Among testers, CIM-496 exhibited the highest GCA effects for boll weight,seed mass per boll, lint mass per boll and seed cotton yield per plant, while for number of seeds per boll, staplelength and fibre strength, S-12 was considered the best. Highest SCA effects for boll weight, number of seedsper boll and seed mass per boll were displayed by (NIAB-228 × BH-160) × Reshmi-90. Most of the boll relatedtraits revealed significant positive correlation with seed cotton yield.

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What this paper is about

Increase in productivity and selection procedures chiefly depend upon genetic control of yield related traits,combining ability of the genotypes for concerned characters and association of these parameters amongthemselves and with the final yield. Single and three way crosses in cotton were analyzed for genetic behavior,combining ability, heterosis and correlation of various traits related to boll (synonymously known as withinbollyield traits) and fibre quality. The experiments were carried out at the Department of Plant Breeding andGenetics, University of Agriculture, Faisalabad. Crosses were made using line × tester mating design. All thegenotypes showed highly significant variability with respect to all the parameters studied. Variances for bothgeneral combining ability (GCA) and specific combining ability (SCA) were significant for most of the traitshowever variances due to SCA were higher than variance due to GCA for all the traits. Likewise dominancevariance (D) was higher than additive variance (A) which indicated dominant genetic behavior of the traits.The line BH-160 was found to be the best general combiner for most of the traits like average boll weight,number of seeds per boll, seed mass per boll, lint mass per boll, seed volume, seed surface area, seed cottonyield per plant and fibre fineness. Among testers, CIM-496 exhibited the highest GCA effects for boll weight,seed mass per boll, lint mass per boll and seed cotton yield per plant, while for number of seeds per boll, staplelength and fibre strength, S-12 was considered the best. Highest SCA effects for boll weight, number of seedsper boll and seed mass per boll were displayed by (NIAB-228 × BH-160) × Reshmi-90. Most of the boll relatedtraits revealed significant positive correlation with seed cotton yield.

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Available abstract

Increase in productivity and selection procedures chiefly depend upon genetic control of yield related traits,combining ability of the genotypes for concerned characters and association of these parameters amongthemselves and with the final yield. Single and three way crosses in cotton were analyzed for genetic behavior,combining ability, heterosis and correlation of various traits related to boll (synonymously known as withinbollyield traits) and fibre quality. The experiments were carried out at the Department of Plant Breeding andGenetics, University of Agriculture, Faisalabad. Crosses were made using line × tester mating design. All thegenotypes showed highly significant variability with respect to all the parameters studied. Variances for bothgeneral combining ability (GCA) and specific combining ability (SCA) were significant for most of the traitshowever variances due to SCA were higher than variance due to GCA for all the traits. Likewise dominancevariance (D) was higher than additive variance (A) which indicated dominant genetic behavior of the traits.The line BH-160 was found to be the best general combiner for most of the traits like average boll weight,number of seeds per boll, seed mass per boll, lint mass per boll, seed volume, seed surface area, seed cottonyield per plant and fibre fineness. Among testers, CIM-496 exhibited the highest GCA effects for boll weight,seed mass per boll, lint mass per boll and seed cotton yield per plant, while for number of seeds per boll, staplelength and fibre strength, S-12 was considered the best. Highest SCA effects for boll weight, number of seedsper boll and seed mass per boll were displayed by (NIAB-228 × BH-160) × Reshmi-90. Most of the boll relatedtraits revealed significant positive correlation with seed cotton yield.

Key concepts: Selection (genetic algorithm), Yield (engineering), Quality (philosophy), Agronomy, Agricultural engineering, Biotechnology, Mathematics, Computer science

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