1Department of Genetics & Plant Breeding, ARS, Kampasagar, PJTSAU, Telangana-508 207, India
2Department of Genetics & Plant Breeding , SR & TC, Rajendranagar, PJTSAU, Telangana-500 030, India
3Department of Genetics & Plant Breeding, Winter Nursery Centre, ICAR-IIMR, Hyderabad, Telangana-500 030, India
4Department of Genetics & Plant Breeding, RARS, Warangal, PJTSAU, Telangana-506 007, India
5Department of Genetics & Plant Breeding, ARS, Adilabad, PJTSAU, Telangana-500 002, India
6Department of Genetics & Plant Breeding, RS & RRS, Rudrur, PJTSAU, Telangana-503 118, India
*E-Mail: veldandisaikiran@gmail.com
Online published on 17 April, 2023.
The genotype and environment (G × E) interaction is a key area of research for creating stable cultivars as it has a major impact on crop yield performance. In this study, we examined the stability and adaptability of the seed yields of elite blackgram genotypes in four Agricultural Research Centers of PJTSAU consisting of diverse environments in Telangana, India during Rabi 2019–20 using Eberhart-Russell and Additive Main efects and Multiplicative Interaction (AMMI) models. A combined analysis of variance showed signifcant diferences between the varieties and the interactions between the varieties and locations for seed yield. Both Eberhart and Russell and AMMI1 model analyses of G×E interaction identifed G1 (LBG-752) as the stable variety with respect to yielding ability suitable for cultivation under diverse conditions. Environments A, B, and C were found to be ideal environments for genotypes G7, G8, and G6, respectively, based on AMMI 2. The selected elite varieties based on diferent stability analyses could be used for further exploitation for cultivar release.
G × E interaction, Adaptability, AMMI l, Eberhart & Russell, Seed yield, Vigna mungo