Assessment of genetic variability and selection potential in F₂ segregating populations of upland cotton (Gossypium hirsutum L.)

Authors

  • Madeeha Memon Department of Plant Breeding and Genetics, Faculty of Crop Production, Sindh Agriculture University, Tandojam, Sindh, Pakistan Author
  • Abdul Wahid Baloch Department of Plant Breeding and Genetics, Faculty of Crop Production, Sindh Agriculture University, Tandojam, Sindh, Pakistan Author
  • Piar Ali Shar Department of Plant Breeding and Genetics, Faculty of Crop Production, Sindh Agriculture University, Tandojam, Sindh, Pakistan Author
  • Zaheer Ahmed Deho Nuclear Institute of Agriculture (NIA), Tando Jam Author
  • Tanweer Fatah Abro Department of Plant Breeding and Genetics, Faculty of Crop Production, Sindh Agriculture University, Tandojam, Sindh, Pakistan Author
  • Amber Memon Department of Plant Breeding and Genetics, Faculty of Crop Production, Sindh Agriculture University, Tandojam, Sindh, Pakistan Author
  • Sadam Hussain Department of Plant Breeding and Genetics, Faculty of Crop Production, Sindh Agriculture University, Tandojam, Sindh, Pakistan Author
  • Nadia Sipio Department of Plant Breeding and Genetics, Faculty of Crop Production, Sindh Agriculture University, Tandojam, Sindh, Pakistan Author

DOI:

https://doi.org/10.71317/kjard.2.6.2026.281

Keywords:

Upland cotton, F₂ population, genotypic variance, heritability, genetic advance

Abstract

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.

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Published

2026-06-05

How to Cite

Madeeha Memon, Abdul Wahid Baloch, Piar Ali Shar, Zaheer Ahmed Deho, Tanweer Fatah Abro, Amber Memon, Sadam Hussain, & Nadia Sipio. (2026). Assessment of genetic variability and selection potential in F₂ segregating populations of upland cotton (Gossypium hirsutum L.). Kashmir Journal of Academic Research and Development, 2(6), 63-75. https://doi.org/10.71317/kjard.2.6.2026.281