The ChickenGTEx pilot analysis: a reference of regulatory variants across 28 chicken tissues

生物 基因组 遗传学 功能基因组学 基因 基因组学 计算生物学 调节顺序 聚腺苷酸 背景(考古学) 表达数量性状基因座 基因表达调控 基因表达 单核苷酸多态性 基因型 古生物学
作者
Dailu Guan,Zhonghao Bai,Xiaoning Zhu,Conghao Zhong,Yali Hou,Fangren Lan,Shuqi Diao,Yuelin Yao,Bingru Zhao,Di Zhu,Xiaochang Li,Zhangyuan Pan,Yahui Gao,Yuzhe Wang,Dong Zou,Ruizhen Wang,Tianyi Xu,Congjiao Sun,Hongwei Yin,Jinyan Teng,Zhiting Xu,Qing Lin,Shourong Shi,Dan Shao,Fabien Degalez,Sandrine Lagarrigue,Ying Wang,Mingshan Wang,Minsheng Peng,Dominique Rocha,Mathieu Charles,Jacqueline Smith,Kellie Watson,Albert Johannes Buitenhuis,Goutam Sahana,Mogens Sando Lund,Wesley Warren,Laurent Frantz,Greger Larson,Susan J. Lamont,Wei Si,Xin Zhao,Bingjie Li,Haihan Zhang,Chenglong Luo,Dingming Shu,Hao Qu,Wei Luo,Zhenhui Li,Qinghua Nie,Xiquan Zhang,Zhe Zhang,Zhang Zhang,George E. Liu,Hans Cheng,Ning Yang,Xiaoxiang Hu,Huaijun Zhou,Lingzhao Fang
标识
DOI:10.1101/2023.06.27.546670
摘要

Abstract Chicken is a valuable model for understanding fundamental biology, vertebrate evolution and diseases, as well as a major source of nutrient-dense and lean-protein-enriched food globally. Although it is the first non-mammalian amniote genome to be sequenced, the chicken genome still lacks a systematic characterization of functional impacts of genetic variants. Here, through integrating 7,015 RNA-Seq and 2,869 whole-genome sequence data, the Chicken Genotype- Tissue Expression (ChickenGTEx) project presents the pilot reference of regulatory variants in 28 chicken tissue transcriptomes, including millions of regulatory effects on primary expression (including protein-coding genes, lncRNA and exon) and post-transcriptional modifications (alternative splicing and 3’ untranslated region alternative polyadenylation). We explored the tissue-sharing and context-specificity of these regulatory variants, their underlying molecular mechanisms of action, and their utility in interpreting adaptation and genome-wide associations of 108 chicken complex traits. Finally, we illustrated shared and lineage-specific features of gene regulation between chickens and mammals, and demonstrated how the ChickenGTEx resource can further assist with translating genetic findings across species. One-Sentence Summary The ChickenGTEx provides a multi-tissue reference of regulatory variants for chicken genetics and genomics, functional genomics, precision breeding, veterinary medicine, vertebrate evolution and even human biomedicine.

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