Combining ability studies for seed coton yields and its component traits in upland cotton (Gossypium hirsutum L.)
H. M. Ranganatha, S. S. Patil, Sreekumari Rajeev, P. Swathi
Abstract
H. M. Ranganatha, S. S. Patil, Sreekumari Rajeev, P. Swathi
Abstract
An investigation was carried out to assess the combining ability and nature of gene action in respect of seed cotton yield and its component traits in 54 new hybrids developed by crossing 9 lines with 6 testers of upland cotton in Line × Tester mating design in Randomized Block Design with two replications during kharif 2009 at Main Agricultural Research Station, University of Agricultural Sciences, Dharwad. The variance among the lines (except inter boll distance), testers (except bolls per plant, sympodia, ginning outturn, boll harvest index, inter boll distance, inter branch distance, reproductive points) and line × tester interaction (except inter branch distance and plant height) were highly significant for the characters, indicating predominance of non-additive gene action in genetic control of these traits. Magnitude of SCA variance was higher than the GCA variance for majority of the traits. The ratio of GCA/SCA variance indicated preponderance of non-additive type of gene action, which is an integral component of the genetic architecture of different characters in the material used in cotton. L1, L5, and L9 among the lines and T2 and T5 among the testers, were identified as good general combiners indicating their ability in transmitting additive genes in the desirable direction to their progenies. Highly significant sca effects were observed in most of the hybrids for all the characters studied and good specific combiners for different characters involved parents with high × high, high × low, low × high and low × low general combinations.
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An investigation was carried out to assess the combining ability and nature of gene action in respect of seed cotton yield and its component traits in 54 new hybrids developed by crossing 9 lines with 6 testers of upland cotton in Line × Tester mating design in Randomized Block Design with two replications during kharif 2009 at Main Agricultural Research Station, University of Agricultural Sciences, Dharwad. The variance among the lines (except inter boll distance), testers (except bolls per plant, sympodia, ginning outturn, boll harvest index, inter boll distance, inter branch distance, reproductive points) and line × tester interaction (except inter branch distance and plant height) were highly significant for the characters, indicating predominance of non-additive gene action in genetic control of these traits. Magnitude of SCA variance was higher than the GCA variance for majority of the traits. The ratio of GCA/SCA variance indicated preponderance of non-additive type of gene action, which is an integral component of the genetic architecture of different characters in the material used in cotton. L1, L5, and L9 among the lines and T2 and T5 among the testers, were identified as good general combiners indicating their ability in transmitting additive genes in the desirable direction to their progenies. Highly significant sca effects were observed in most of the hybrids for all the characters studied and good specific combiners for different characters involved parents with high × high, high × low, low × high and low × low general combinations.
Key concepts: Mating design, Hybrid, Randomized block design, Biology, Kharif crop, Epistasis, Gossypium hirsutum, Gossypium