Integrative Genomics and Precision Breeding for Stress-Resilient Cotton: Recent Advances and Prospects
Zahra Ghorbanzadeh; Bahman Panahi; Leila Purhang; Zhila Hossein Panahi; Mehrshad Zeinalabedini; Mohsen Mardi; Rasmieh Hamid; Mohammad Reza Ghaffari · 2025 · Agronomy
WASTE classifies this as Negative / Null Result Report · AI classification, approximate
The study found no significant effect — useful as a negative control or null benchmark for your own design.
Abstract
Developing climate-resilient and high-quality cotton cultivars remains an urgent challenge, as the key target traits yield, fibre properties, and stress tolerance are highly polygenic and strongly influenced by genotype–environment interactions. Recent advances in chromosome-scale genome assemblies, pan-genomics, and haplotype-resolved resequencing have greatly enhanced the capacity to identify causal variants and recover non-reference alleles linked to fibre development and environmental adaptation. Parallel progress in functional genomics and precision genome editing, particularly CRISPR/Cas
Abstract by Zahra Ghorbanzadeh; Bahman Panahi; Leila Purhang; Zhila Hossein Panahi; Mehrshad Zeinalabedini; Mohsen Mardi; Rasmieh Hamid; Mohammad Reza Ghaffari, Agronomy (2025) — licensed CC BY 4.0.
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Metadata source: OpenAlex · DOI 10.3390/agronomy15102393
