Genetic Factors Underlying Single Fiber Quality in A-Genome Donor Asian Cotton (Gossypium arboreum)

Iqbal, Muhammad Shahid and Tang, Shurong and Sarfraz, Zareen and Iqbal, Muhammad Sajid and Li, Hongge and He, Shoupu and Jia, Yinhua and Sun, Gaofei and Pan, Zhaoe and Xiaoli, Geng and Mahmood, Abid and Ahmad, Saghir and Nazir, Mian Faisal and Chen, Baojun and Wang, Liru and Pang, Baoyin and Wei, Shoujun and Du, Xiongming (2021) Genetic Factors Underlying Single Fiber Quality in A-Genome Donor Asian Cotton (Gossypium arboreum). Frontiers in Genetics, 12. ISSN 1664-8021

[thumbnail of pubmed-zip/versions/1/package-entries/fgene-12-758665/fgene-12-758665.pdf] Text
pubmed-zip/versions/1/package-entries/fgene-12-758665/fgene-12-758665.pdf - Published Version

Download (5MB)

Abstract

The study of A-genome Asian cotton as a potential fiber donor in Gossypium species may offer an enhanced understanding of complex genetics and novel players related to fiber quality traits. Assessment of individual fibers providing classified fiber quality information to the textile industry is Advanced Fiber Information System (AFIS) in the recent technological era. Keeping the scenario, a diverse collection of 215 Asiatic cotton accessions were evaluated across three agro-ecological zones of China. Genome-Wide Association Studies (GWAS) was performed to detect association signals related to 17 AFIS fiber quality traits grouped into four categories viz: NEPs, fiber length, maturity, and fineness. Significant correlations were found within as well as among different categories of various traits related to fiber quality. Fiber fineness has shown a strong correlation to all other categories, whereas these categories are shown interrelationships via fiber-fineness. A total of 7,429 SNPs were found in association with 17 investigated traits, of which 177 were selected as lead SNPs. In the vicinity of these lead SNPs, 56 differentially expressed genes in various tissues/development stages were identified as candidate genes. This compendium connecting trait-SNP-genes may allow further prioritization of genes in GWAS loci to enable mechanistic studies. These identified quantitative trait nucleotides (QTNs) may prove helpful in fiber quality improvement in Asian cotton through marker-assisted breeding as well as in reviving eroded genetic factors of G. hirsutum via introgression breeding.

Item Type: Article
Subjects: Open Asian Library > Medical Science
Depositing User: Unnamed user with email support@openasianlibrary.com
Date Deposited: 12 Jan 2023 10:39
Last Modified: 19 Oct 2024 11:38
URI: http://publications.eprintglobalarchived.com/id/eprint/148

Actions (login required)

View Item
View Item