Electronic Journal of Plant Breeding
Open Access
SCOPUS
  • Year: 2022
  • Volume: 13
  • Issue: 3

Genetic diversity study in soybean [Glycine max L. Merrill] based on agro-morphological characters

  • Author:
  • Kolisetti Lakshmi Sai Mounika1, Th. Renuka Devi1, H. Nanita Devi1,*, Seetha Ramaiah Kammela1, Sunil Kumar Masadi1, Bireswar Sinha2, N. Gopimohan Singh3
  • Total Page Count: 7
  • Page Number: 1005 to 1011

1Department of Genetics and Plant Breeding, College of Agriculture, CAU, Imphal-795004, Manipur, India

2Department of Plant Pathology, College of Agriculture, CAU, Imphal-795004, Manipur, India

31Department of Basic Sciences, College of Agriculture, CAU, Imphal-795004, Manipur, India

*E-Mail: heisnamnanita@rediffmail.com

Online published on 15 October, 2022.

Abstract

Using Mahalanobis D2statistics, the level of genetic diversity among soybean genotypes based on 12 agro-morphological traits was investigated in this study. A total of 100 soybean genotypes were grouped into six clusters. Cluster I had the maximum number of genotypes (53 genotypes), followed by cluster II (37 genotypes), cluster III (6 genotypes), clusters IV and V (1 genotype each), cluster VI (2 genotypes). Clusters I and VI had the greatest inter-cluster distance (117618.10). Intra-cluster distance ranged between 0.00 and 9830.83. The biggest contribution to total divergence came from character plot yield (25.0%). Cluster VI had the highest cluster mean values for yield and its component traits. Based on inter-cluster distance, cluster mean values, and mean per se performance, it is recommended to utilize genotypes of cluster I and cluster VI, I and III, III and IV, II and VI, respectively, for future hybridization programs to develop high yielding genotypes.

Keywords

Soybean, Clusters, Genetic diversity