Assessment of genetic variability and selection potential in F₂ segregating populations of upland cotton (Gossypium hirsutum L.)
DOI:
https://doi.org/10.71317/kjard.2.6.2026.281Keywords:
Upland cotton, F₂ population, genotypic variance, heritability, genetic advanceAbstract
Knowledge of the magnitude of genetic and phenotypic variability present in a crop species is fundamental to designing effective breeding programmes for developing superior cultivars. In this study, eight F₂ segregating populations of upland cotton (Gossypium hirsutum L.) was (IUB-2013 × NIA-95, Chandi-95 × M-23, NIA-Ufaq × M-35, NIAB-878 × Chandi-95, NIA-Noori × IUB-2013, Sadori × M-32, Sohni × NIA-Ufaq, ZAD-1 × Sadori) along with their twelve respective parents (IUB-2013, NIA-95, Chandi-95, M-23, NIA-Ufaq, M-35, NIAB-878, NIA-Noori, Sadori, M-32, Sohni, ZAD-1), generated from selected intra-specific crosses, were evaluated together with their twelve parental genotypes at the experimental field of the Nuclear Institute of Agriculture (NIA), Tandojam, during the 2025 Kharif season, using a randomized complete block design with three replications. Analysis of variance detected significant differences among genotypes for plant height, sympodial branches plant⁻¹, bolls plant⁻¹, boll weight, seed cotton yield plant⁻¹, ginning outturn percentage, staple length and micronaire, confirming that exploitable genetic variability was present in the breeding material. Among the parents, NIA-Ufaq combined the tallest plant stature, the greatest number of bolls plant⁻¹ and the highest seed cotton yield plant⁻¹, while the F₂ crosses NIAB-878 × Chandi-95 and NIA-Noori × IUB-2013 recorded the highest seed cotton yield among the segregating populations. Broad-sense heritability estimates varied widely across traits and crosses, ranging from 3.66% (ginning outturn, Chandi-95 × M-23) to 99.17% (boll weight, Chandi-95 × M-23), while genetic advance ranged from 0.05 to 70.53 depending on the trait and cross combination considered. Seed cotton yield plant⁻¹ combined moderate-to-high heritability with substantial genetic advance in several crosses, most notably Chandi-95 × M-23 and NIA-Ufaq × M-35, indicating predominance of additive gene action and good scope for direct phenotypic selection in early generations. The crosses Chandi-95 × M-23, NIA-Ufaq × M-35, NIAB-878 × Chandi-95 and NIA-Noori × IUB-2013 displayed transgressive segregation for seed cotton yield, exceeding both respective parents, and are recommended as promising material for pedigree breeding aimed at developing high-yielding upland cotton genotypes.
Downloads
Published
Issue
Section
License
Copyright (c) 2026 Madeeha Memon, Abdul Wahid Baloch, Piar Ali Shar, Zaheer Ahmed Deho, Tanweer Fatah Abro, Amber Memon, Sadam Hussain, Nadia Sipio (Author)

This work is licensed under a Creative Commons Attribution 4.0 International License.



