Association Studies for Yield and its components in Green Gram
Reecha T. Das, Purna Kanta Barua
Abstract
Reecha T. Das, Purna Kanta Barua
Abstract
Twenty three genotypes of green gram were studied for genetic variability, correlation and path analysis for eight economically important traits. The genotypes viz. SG1, MH 709, ML 1278, Pant M 4, SG 21-5, OGG 56, CGG 973, ML 1354 and RVSM 11 were found promising for seed yield per plant. In general, PCV were higher than the corresponding GCV values for all the characters, suggesting the influence of environment in the expression of these traits. The broad sense heritability were high for plant height followed by 100-seed weight, pod length, seed yield per plant, days to flowering, seeds per pod, days to maturity, pod filling percentage and pods per plant. Seeds per pod, 100 seed weight, pods per plant, pod filling percentage and pod length showed significant positive correlations with seed yield per plant both at phenotypic and genotypic levels. Path analysis revealed that seeds per pod had the maximum direct effect on seed yield followed by 100 seed weight, pod filling percentage and pods per plant. Therefore, main emphasis should be given on these traits during phenotypic selection for developing high yielding genotypes of green gram.
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Twenty three genotypes of green gram were studied for genetic variability, correlation and path analysis for eight economically important traits. The genotypes viz. SG1, MH 709, ML 1278, Pant M 4, SG 21-5, OGG 56, CGG 973, ML 1354 and RVSM 11 were found promising for seed yield per plant. In general, PCV were higher than the corresponding GCV values for all the characters, suggesting the influence of environment in the expression of these traits. The broad sense heritability were high for plant height followed by 100-seed weight, pod length, seed yield per plant, days to flowering, seeds per pod, days to maturity, pod filling percentage and pods per plant. Seeds per pod, 100 seed weight, pods per plant, pod filling percentage and pod length showed significant positive correlations with seed yield per plant both at phenotypic and genotypic levels. Path analysis revealed that seeds per pod had the maximum direct effect on seed yield followed by 100 seed weight, pod filling percentage and pods per plant. Therefore, main emphasis should be given on these traits during phenotypic selection for developing high yielding genotypes of green gram.
Key concepts: Gram, Yield (engineering), Association (psychology), Mathematics, Statistics, Biology, Psychology, Materials science