Tandem duplication upstream of HSF5 associates with transcript remodeling and triple-comb morphology in chickens

The genetic basis of the triple comb in chickens remains unknown. Here, we integrated population genomics, genome-wide association studies, structural variant analysis, long-read sequencing, and embryonic transcriptomics in Wuhua Yellow chickens. We identified a 15.7-kb tandem duplication upstream of HSF5 on chromosome 19 as the primary candidate. At embryonic day 8, overall HSF5 expression was unchanged, yet we observed localized exon upregulation within the duplicated region, a dosage-dependent expression gradient, and extensive non-canonical splicing. Public epigenomic data further indicate baseline enhancer activity in this interval. Copy number correlated positively with comb prong number ( R 2 = 0.45, adjusted p = 9.26 × 10 −7 ). Exploratory fertility assessments revealed a lower fertilization rate in triple-comb crosses, suggesting a potential pleiotropic cost. These findings strongly implicate HSF5 as a key candidate and demonstrate that a tandem duplication associates with phenotypic innovation through transcript remodeling rather than simple gene misexpression.

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Journal
iScience
Published
2026-09-28
DOI
https://doi.org/10.1016/j.isci.2026.117678
Primary Topic
Genetic Mapping and Diversity in Plants and Animals
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article
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article

Tandem duplication upstream of HSF5 associates with transcript remodeling and triple-comb morphology in chickens

Min‐Sheng Peng, Xunhe Huang, Zhuoxian Weng, Qing Wang et al.
iScience
Genetic Mapping and Diversity in Plants and Animals
article

Tandem duplication upstream of HSF5 associates with transcript remodeling and triple-comb morphology in chickens

Min‐Sheng Peng, Xunhe Huang, Zhuoxian Weng, Qing Wang, Cheng Ma, Bingwang Du, Zhipeng Zhong, Guo-Hao Zhong, Wei-Na Li, Zhi-Feng Zhang, Yong-Jie Xu
article en

Abstract

The genetic basis of the triple comb in chickens remains unknown. Here, we integrated population genomics, genome-wide association studies, structural variant analysis, long-read sequencing, and embryonic transcriptomics in Wuhua Yellow chickens. We identified a 15.7-kb tandem duplication upstream of HSF5 on chromosome 19 as the primary candidate. At embryonic day 8, overall HSF5 expression was unchanged, yet we observed localized exon upregulation within the duplicated region, a dosage-dependent expression gradient, and extensive non-canonical splicing. Public epigenomic data further indicate baseline enhancer activity in this interval. Copy number correlated positively with comb prong number ( R 2 = 0.45, adjusted p = 9.26 × 10 −7 ). Exploratory fertility assessments revealed a lower fertilization rate in triple-comb crosses, suggesting a potential pleiotropic cost. These findings strongly implicate HSF5 as a key candidate and demonstrate that a tandem duplication associates with phenotypic innovation through transcript remodeling rather than simple gene misexpression.

iScienceVol. 29(10)
Uppsala University (SE), Jiaying University (CN), Kunming Institute of Zoology (CN), Chinese Academy of Sciences (CN), University of Chinese Academy of Sciences (CN)
Industry, innovation and infrastructure
Openalex Percentile: Top 12%
Genetic Mapping and Diversity in Plants and Animals
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Tandem duplication upstream of HSF5 associates with transcript remodeling and triple-comb morphology in chickens — Min‐Sheng Peng, Xunhe Huang, et al. · iScience (2026) | TGRS Research Map | TGRS