Identification of Loci and Candidate Genes Responsible for Fiber Length in Upland Cotton (Gossypium hirsutum L.) via Association Mapping and Linkage Analyses

C Zhang, L Li, Q Liu, L Gu, J Huang, H Wei… - Frontiers in plant …, 2019 - frontiersin.org
Fiber length (FL) is an important fiber quality trait in cotton. Although many fiber quality
quantitative trait loci (QTL) responsible for FL have been identified, most cannot be applied …

Identification of candidate genes controlling fiber quality traits in upland cotton through integration of meta-QTL, significant SNP and transcriptomic data

S Xu, Z Pan, F Yin, Q Yang, Z Lin, T Wen, L Zhu… - Journal of Cotton …, 2020 - Springer
Background Meta-analysis of quantitative trait locus (QTL) is a computational technique to
identify consensus QTL and refine QTL positions on the consensus map from multiple …

Development and Utilization of Functional Kompetitive Allele-Specific PCR Markers for Key Genes Underpinning Fiber Length and Strength in Gossypium hirsutum L.

L Li, Z Sun, Y Zhang, H Ke, J Yang, Z Li, L Wu… - Frontiers in Plant …, 2022 - frontiersin.org
Fiber length (FL) and fiber strength (FS) are the important indicators of fiber quality in cotton.
Longer and stronger fibers are preferred for manufacturing finer yarns in the textile industry …

Lint percentage and boll weight QTLs in three excellent upland cotton (Gossypium hirsutum): ZR014121, CCRI60, and EZ60

H Niu, M Kuang, L Huang, H Shang, Y Yuan, Q Ge - BMC Plant Biology, 2023 - Springer
Abstract Background Upland cotton (Gossypium hirsutum L.) is the most economically
important species in the cotton genus (Gossypium spp.). Enhancing the cotton yield is a …

Population structure and genetic basis of the agronomic traits of upland cotton in China revealed by a genome‐wide association study using high‐density SNP s

C Huang, X Nie, C Shen, C You, W Li… - Plant Biotechnology …, 2017 - Wiley Online Library
Gossypium hirsutum L. represents the largest source of textile fibre, and China is one of the
largest cotton‐producing and cotton‐consuming countries in the world. To investigate the …

[HTML][HTML] Quantitative Trait Loci Mapping and Candidate Gene Analysis for Fiber Quality Traits in Upland Cotton

X Jia, H Zhao, J Zhu, S Wang, M Li, G Wang - Agronomy, 2024 - mdpi.com
Superior fiber quality is one of the most important objectives in cotton breeding. To detect the
genetic basis underlying fiber quality, an F2 population containing 413 plants was …

Transcriptome, ectopic expression and genetic population analysis identify candidate genes for fiber quality improvement in cotton

Z Liu, Z Sun, H Ke, B Chen, Q Gu, M Zhang… - International Journal of …, 2023 - mdpi.com
Comparative transcriptome analysis of fiber tissues between Gossypium barbadense and
Gossypium hirsutum could reveal the molecular mechanisms underlying high-quality fiber …

A genome-wide association study uncovers novel genomic regions and candidate genes of yield-related traits in upland cotton

Z Sun, X Wang, Z Liu, Q Gu, Y Zhang, Z Li, H Ke… - Theoretical and Applied …, 2018 - Springer
Key message A total of 62 SNPs associated with yield-related traits were identified by a
GWAS. Based on significant SNPs, two candidate genes pleiotropically increase lint yield …

Genetic dissection and origin of pleiotropic loci underlying multi-level fiber quality traits in Upland cotton (Gossypium hirsutum L.)

H LI, S TANG, P Zhen, G FU, Y JIA, S WEI… - Journal of Integrative …, 2023 - Elsevier
Cotton fiber quality is a persistent concern that determines planting benefits and the quality
of finished textile products. However, the limitations of measurement instruments have …

Genetic mapping in cotton

A Bardak, K Hayat, O Erdogan, MA Iqbal… - Past, Present and …, 2018 - books.google.com
The genus Gossypium provides natural fiber for textile industry worldwide. Genetic
improvement in cotton for traits of interest is not up to mark due to scarcity of adequate …