Development of KASP Molecular Markers and Candidate Gene Mining for Heat Tolerance-Related Traits in Gossypium hirsutum
Zhaolong Gong, Ni Yang, Shiwei Geng, Juyun Zheng, Zhi Liu, Fenglei Sun, Shengmei Li, Xueyuan Li, Yajun Liang, Junduo Wang

TL;DR
Researchers identified a genetic marker and two genes linked to heat tolerance in cotton, which can help breed more heat-resistant cotton varieties.
Contribution
Development of a KASP marker and identification of two candidate genes associated with heat tolerance in Gossypium hirsutum.
Findings
A SNP at position D06-5486185 was linked to improved heat tolerance traits in cotton.
The C/C haplotype at this locus increased pollen viability and reduced dry buds without affecting yield.
Two adjacent bZIP transcription factor genes showed higher expression in heat-tolerant cotton accessions.
Abstract
Background: High-temperature stress is one of the major abiotic stresses limiting cotton production. Identifying genetic loci and genes for heat tolerance is crucial for breeding heat-tolerant varieties. Methods: Given the complexity of heat tolerance phenotypes in cotton, this study, which focused on resource materials, identified an A/C SNP mutation at position 5486185 on chromosome D06 within the heat tolerance interval through genome-wide association studies (GWAS) of natural Gossypium hirsutum populations. Results: A total of 308 resource materials were identified and evaluated for their heat tolerance phenotypes over two years of field research. Kompetitive allele-specific PCR (KASP) molecular markers were developed on the basis of the D06-5486185 SNP to characterize the heat tolerance phenotypes of these 308 resource materials. Genotyping for heat tolerance-related traits and…
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Taxonomy
TopicsResearch in Cotton Cultivation · Plant Virus Research Studies
