Genetic divergence and cluster analysis in Tomato (Solanum lycopersicum)
Manish Kumar, Tanuja Buckseth, Mohar S Thakur, Kalpana Thakur
Abstract
Manish Kumar, Tanuja Buckseth, Mohar S Thakur, Kalpana Thakur
Abstract
A study was conducted on forty genotypes of tomato collected from NBPGR-New Delhi to assess the value and magnitude of genetic divergence using Mahalanobis D2 statistics. Wide genetic diversity was observed among the genotypes which were grouped into 4 clusters based on 14 important characters. The cluster III was the largest containing 17 genotypes followed by cluster I with 11 genotypes. The diversity among the clusters was measured by inter-cluster distance. The clustering pattern indicated that the geographic distribution need not necessarily be related to genetic diversity. The maximum inter-cluster distance was observed between cluster III and IV. Therefore, selection of divergent parents based on these cluster distance would be useful in selecting genotypes for hybridization and formulating a comprehensive strategy to develop superior hybrids or better segregants in tomato. The information so generated can be effectively utilized for improving the specific traits in future breeding programmes of tomato.
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A study was conducted on forty genotypes of tomato collected from NBPGR-New Delhi to assess the value and magnitude of genetic divergence using Mahalanobis D2 statistics. Wide genetic diversity was observed among the genotypes which were grouped into 4 clusters based on 14 important characters. The cluster III was the largest containing 17 genotypes followed by cluster I with 11 genotypes. The diversity among the clusters was measured by inter-cluster distance. The clustering pattern indicated that the geographic distribution need not necessarily be related to genetic diversity. The maximum inter-cluster distance was observed between cluster III and IV. Therefore, selection of divergent parents based on these cluster distance would be useful in selecting genotypes for hybridization and formulating a comprehensive strategy to develop superior hybrids or better segregants in tomato. The information so generated can be effectively utilized for improving the specific traits in future breeding programmes of tomato.
Key concepts: Mahalanobis distance, Genetic divergence, Genetic diversity, Solanum, Divergence (linguistics), Cluster (spacecraft), Biology, Genetic distance