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Comprehensive analyses of 723 transcriptomes enhance genetic and biological interpretations for complex traits in cattle

By uniformly analyzing 723 RNA-seq data from 91 tissues and cell types, we built a comprehensive gene atlas and studied tissue specificity of genes in cattle. We demonstrated that tissue-specific genes significantly reflected the tissue-relevant biology, showing distinct promoter methylation and evo...

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Autores principales: Fang, Lingzhao, Cai, Wentao, Liu, Shuli, Canela-Xandri, Oriol, Gao, Yahui, Jiang, Jicai, Rawlik, Konrad, Li, Bingjie, Schroeder, Steven G., Rosen, Benjamin D., Li, Cong-jun, Sonstegard, Tad S., Alexander, Leeson J., Van Tassell, Curtis P., VanRaden, Paul M., Cole, John B., Yu, Ying, Zhang, Shengli, Tenesa, Albert, Ma, Li, Liu, George E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory Press 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7263193/
https://www.ncbi.nlm.nih.gov/pubmed/32424068
http://dx.doi.org/10.1101/gr.250704.119
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author Fang, Lingzhao
Cai, Wentao
Liu, Shuli
Canela-Xandri, Oriol
Gao, Yahui
Jiang, Jicai
Rawlik, Konrad
Li, Bingjie
Schroeder, Steven G.
Rosen, Benjamin D.
Li, Cong-jun
Sonstegard, Tad S.
Alexander, Leeson J.
Van Tassell, Curtis P.
VanRaden, Paul M.
Cole, John B.
Yu, Ying
Zhang, Shengli
Tenesa, Albert
Ma, Li
Liu, George E.
author_facet Fang, Lingzhao
Cai, Wentao
Liu, Shuli
Canela-Xandri, Oriol
Gao, Yahui
Jiang, Jicai
Rawlik, Konrad
Li, Bingjie
Schroeder, Steven G.
Rosen, Benjamin D.
Li, Cong-jun
Sonstegard, Tad S.
Alexander, Leeson J.
Van Tassell, Curtis P.
VanRaden, Paul M.
Cole, John B.
Yu, Ying
Zhang, Shengli
Tenesa, Albert
Ma, Li
Liu, George E.
author_sort Fang, Lingzhao
collection PubMed
description By uniformly analyzing 723 RNA-seq data from 91 tissues and cell types, we built a comprehensive gene atlas and studied tissue specificity of genes in cattle. We demonstrated that tissue-specific genes significantly reflected the tissue-relevant biology, showing distinct promoter methylation and evolution patterns (e.g., brain-specific genes evolve slowest, whereas testis-specific genes evolve fastest). Through integrative analyses of those tissue-specific genes with large-scale genome-wide association studies, we detected relevant tissues/cell types and candidate genes for 45 economically important traits in cattle, including blood/immune system (e.g., CCDC88C) for male fertility, brain (e.g., TRIM46 and RAB6A) for milk production, and multiple growth-related tissues (e.g., FGF6 and CCND2) for body conformation. We validated these findings by using epigenomic data across major somatic tissues and sperm. Collectively, our findings provided novel insights into the genetic and biological mechanisms underlying complex traits in cattle, and our transcriptome atlas can serve as a primary source for biological interpretation, functional validation, studies of adaptive evolution, and genomic improvement in livestock.
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spelling pubmed-72631932020-11-01 Comprehensive analyses of 723 transcriptomes enhance genetic and biological interpretations for complex traits in cattle Fang, Lingzhao Cai, Wentao Liu, Shuli Canela-Xandri, Oriol Gao, Yahui Jiang, Jicai Rawlik, Konrad Li, Bingjie Schroeder, Steven G. Rosen, Benjamin D. Li, Cong-jun Sonstegard, Tad S. Alexander, Leeson J. Van Tassell, Curtis P. VanRaden, Paul M. Cole, John B. Yu, Ying Zhang, Shengli Tenesa, Albert Ma, Li Liu, George E. Genome Res Resource By uniformly analyzing 723 RNA-seq data from 91 tissues and cell types, we built a comprehensive gene atlas and studied tissue specificity of genes in cattle. We demonstrated that tissue-specific genes significantly reflected the tissue-relevant biology, showing distinct promoter methylation and evolution patterns (e.g., brain-specific genes evolve slowest, whereas testis-specific genes evolve fastest). Through integrative analyses of those tissue-specific genes with large-scale genome-wide association studies, we detected relevant tissues/cell types and candidate genes for 45 economically important traits in cattle, including blood/immune system (e.g., CCDC88C) for male fertility, brain (e.g., TRIM46 and RAB6A) for milk production, and multiple growth-related tissues (e.g., FGF6 and CCND2) for body conformation. We validated these findings by using epigenomic data across major somatic tissues and sperm. Collectively, our findings provided novel insights into the genetic and biological mechanisms underlying complex traits in cattle, and our transcriptome atlas can serve as a primary source for biological interpretation, functional validation, studies of adaptive evolution, and genomic improvement in livestock. Cold Spring Harbor Laboratory Press 2020-05 /pmc/articles/PMC7263193/ /pubmed/32424068 http://dx.doi.org/10.1101/gr.250704.119 Text en © 2020 Fang et al.; Published by Cold Spring Harbor Laboratory Press http://creativecommons.org/licenses/by-nc/4.0/ This article is distributed exclusively by Cold Spring Harbor Laboratory Press for the first six months after the full-issue publication date (see http://genome.cshlp.org/site/misc/terms.xhtml). After six months, it is available under a Creative Commons License (Attribution-NonCommercial 4.0 International), as described at http://creativecommons.org/licenses/by-nc/4.0/.
spellingShingle Resource
Fang, Lingzhao
Cai, Wentao
Liu, Shuli
Canela-Xandri, Oriol
Gao, Yahui
Jiang, Jicai
Rawlik, Konrad
Li, Bingjie
Schroeder, Steven G.
Rosen, Benjamin D.
Li, Cong-jun
Sonstegard, Tad S.
Alexander, Leeson J.
Van Tassell, Curtis P.
VanRaden, Paul M.
Cole, John B.
Yu, Ying
Zhang, Shengli
Tenesa, Albert
Ma, Li
Liu, George E.
Comprehensive analyses of 723 transcriptomes enhance genetic and biological interpretations for complex traits in cattle
title Comprehensive analyses of 723 transcriptomes enhance genetic and biological interpretations for complex traits in cattle
title_full Comprehensive analyses of 723 transcriptomes enhance genetic and biological interpretations for complex traits in cattle
title_fullStr Comprehensive analyses of 723 transcriptomes enhance genetic and biological interpretations for complex traits in cattle
title_full_unstemmed Comprehensive analyses of 723 transcriptomes enhance genetic and biological interpretations for complex traits in cattle
title_short Comprehensive analyses of 723 transcriptomes enhance genetic and biological interpretations for complex traits in cattle
title_sort comprehensive analyses of 723 transcriptomes enhance genetic and biological interpretations for complex traits in cattle
topic Resource
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7263193/
https://www.ncbi.nlm.nih.gov/pubmed/32424068
http://dx.doi.org/10.1101/gr.250704.119
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