Assessment of combining ability for yield and yield contributing traits in sweet corn
B. Suhasini R. Ravikesavan, B. Suhasini, A. Yuvaraja, N. Kumari Vinodhana
Abstract
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B. Suhasini R. Ravikesavan, B. Suhasini, A. Yuvaraja, N. Kumari Vinodhana
Abstract
Open-access reader
An investigation was carried out to assess the combining ability and nature of gene action in sweet corn genotypesusing Line x Tester mating design using ten lines and five testers. Investigation on combining ability indicated thepredominance of non-additive gene action for all the traits under study. The variance due to genotypes was highlysignificant among the parents and hybrids for all the traits studied. This result strongly suggests the utilisation ofheterosis breeding methods to exploit hybrid vigour. The lines L1, L8, L7, L10 and testers T1, T5 had superior per seperformance for yield and yield contributing traits. The results also revealed that, the lines L1, L7 and testers T1, T5had high per se performance coupled with high gca for most of the yield attributing traits. Based on per seperformance and sca effects, the hybrids L2 x T2, L1 x T1, L1 x T5, L7x T4and L4x T1 were found to be good. Amongthese hybrids,L2 x T2 was considered best because it recorded highest per se performance coupled with high scafor yield and yield contributing traits.
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An investigation was carried out to assess the combining ability and nature of gene action in sweet corn genotypesusing Line x Tester mating design using ten lines and five testers. Investigation on combining ability indicated thepredominance of non-additive gene action for all the traits under study. The variance due to genotypes was highlysignificant among the parents and hybrids for all the traits studied. This result strongly suggests the utilisation ofheterosis breeding methods to exploit hybrid vigour. The lines L1, L8, L7, L10 and testers T1, T5 had superior per seperformance for yield and yield contributing traits. The results also revealed that, the lines L1, L7 and testers T1, T5had high per se performance coupled with high gca for most of the yield attributing traits. Based on per seperformance and sca effects, the hybrids L2 x T2, L1 x T1, L1 x T5, L7x T4and L4x T1 were found to be good. Amongthese hybrids,L2 x T2 was considered best because it recorded highest per se performance coupled with high scafor yield and yield contributing traits.
Key concepts: Mating design, Heterosis, Hybrid, Biology, Yield (engineering), Biotechnology, Genotype, Forensic science