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Research Article | Open Access

Genetic dissection and validation of a stable QTL for grain roundness on chromosome 5A in bread wheat (Triticum aestivum L.)

Jiajie He1,2Zhibin Xu1Bo Feng1Qiang Zhou1Xiaofeng Liu3Guangsi Ji4Shaodan Guo1Xiaoli Fan1Tao Wang1( )
Chengdu Institute of Biology, Chinese Academy of Sciences, Chengdu 610213, China
University of Chinese Academy of Sciences, Beijing 101408, China
Sichuan Academy of Agricultural Sciences, Chengdu 610066, China
School of Life Science and Engineering, Henan University of Urban Construction, Pingdingshan 467044, China
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Highlights

• A stable QTL for grain roundness, QGr.cib-5A, was consistently detected across all environments.

• The effect of QGr.cib-5A on grain roundness was stable in various genetic backgrounds.

• Rounder grain shape has been relatively widely selected during wheat breeding.

Abstract

Wheat grain morphology is an important breeding target due to its impact on yield and end-use properties. However, the genetic basis of grain roundness, which is a major determinant of grain morphology, remains largely unexplored. In this study, F2 and recombinant inbred line (RIL) populations from a Zhongkemai 138 (ZKM138)×Chinese Spring (CS) cross were employed to analyze the genetic basis of grain shape variation. Kompetitive allele specific PCR (KASP) markers were developed according to single nucleotide polymorphisms (SNPs) from bulked segregant exome sequencing (BSE-Seq) of F2 and Wheat 55K SNP array data online. Those SNPs were then used to construct two genetic maps of the F2 and RIL populations, spanning 148.89 cM (30 KASP markers) and 129.82 cM (25 KASP markers), respectively. Using the traditional QTL mapping method based on these two maps, a stable quantitative trait locus (QTL) for grain roundness (GR), QGr.cib-5A, could be repeatedly detected in the interval of 444.8–455.5 Mb on chromosome 5A. Further conditional QTL mapping analysis revealed that grain width was the major contributor to GR at this locus. In addition, the use of two tightly linked markers, 5A4-15 and 55k-31, showed a 96.27% transmissibility of ZKM138-derived alleles in 134 ZKM138 derivatives, along with a 7.38% increase in GR and a 65.19% distribution among worldwide varieties. Finally, TraesCS5A02G236400, which may encode a hydroxyproline-rich glycoprotein family protein, was deduced to be the candidate gene. Collectively, these results can facilitate wheat grain shape improvement and enhance the market value of wheat.

References

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Journal of Integrative Agriculture (JIA)
Pages 2714-2722

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Cite this article:
He J, Xu Z, Feng B, et al. Genetic dissection and validation of a stable QTL for grain roundness on chromosome 5A in bread wheat (Triticum aestivum L.). Journal of Integrative Agriculture (JIA), 2026, 25(7): 2714-2722. https://doi.org/10.1016/j.jia.2024.11.030

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Received: 08 July 2024
Revised: 04 September 2024
Accepted: 24 September 2024
Published: 13 November 2024
© 2026 CAAS.

This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/). Peer review under responsibility of Editorial Board of Journal of Integrative Agriculture.