Genetic divergence in Indian bean
Nagendra Rai, Bhagwat Saran Asati, Asheesh Kumar Singh
Abstract
Nagendra Rai, Bhagwat Saran Asati, Asheesh Kumar Singh
Abstract
Mahalanobis D 2 statistics was used to study genetic divergence for 15 characters in a collection of 37 genotypes of Indian bean. These genotypes were grouped into three clusters on the basis of relative magnitude of D 2 values. The highest number of genotypes (18) appeared in cluster II. The higher order of divergence was recorded between clusters II and I. Genotypes includes in cluster I were good source of yield per plant, number of seeds per pod, number of pods per plant and seed length, number of seeds per pod and number of fruits set accounted for 93% of the total divergence. Thus, these characters hold great promise in breeding strategy. Pod thickness, number of pods/plant, pod width, pod weight, pod length and yield/plant showed high GCV and high heritability along with high genetic advance revealing that these characters were controlled by additive gene. Maximum direct effect of number of pods per plant followed by pod weight, pod width, % fruit set towards yield/plant indicated that these characters were very important while making selection for high yielding genotypes. Association studies revealed that yield/ plant, had significant positive association with pods per plant, pod width, pod weight and pod length at genotypic and phenotypic levels.
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Mahalanobis D 2 statistics was used to study genetic divergence for 15 characters in a collection of 37 genotypes of Indian bean. These genotypes were grouped into three clusters on the basis of relative magnitude of D 2 values. The highest number of genotypes (18) appeared in cluster II. The higher order of divergence was recorded between clusters II and I. Genotypes includes in cluster I were good source of yield per plant, number of seeds per pod, number of pods per plant and seed length, number of seeds per pod and number of fruits set accounted for 93% of the total divergence. Thus, these characters hold great promise in breeding strategy. Pod thickness, number of pods/plant, pod width, pod weight, pod length and yield/plant showed high GCV and high heritability along with high genetic advance revealing that these characters were controlled by additive gene. Maximum direct effect of number of pods per plant followed by pod weight, pod width, % fruit set towards yield/plant indicated that these characters were very important while making selection for high yielding genotypes. Association studies revealed that yield/ plant, had significant positive association with pods per plant, pod width, pod weight and pod length at genotypic and phenotypic levels.
Key concepts: Point of delivery, Heritability, Biology, Genetic divergence, Horticulture, Yield (engineering), Veterinary medicine, Divergence (linguistics)