Pig genome functional annotation enhances the biological interpretation of complex traits and human disease
Annotating functional elements of the genome helps the interpretation of genetic variation. Here, the authors compile functional genomics data for the pig genome over 14 tissues with 15 different chromatin states, integrate the data with WGS and GWAS data, and compare conservation of regulatory elem...
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Nature Portfolio
2021
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oai:doaj.org-article:9d93bfd836f04f2482675331b406ee472021-12-02T18:01:53ZPig genome functional annotation enhances the biological interpretation of complex traits and human disease10.1038/s41467-021-26153-72041-1723https://doaj.org/article/9d93bfd836f04f2482675331b406ee472021-10-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-26153-7https://doaj.org/toc/2041-1723Annotating functional elements of the genome helps the interpretation of genetic variation. Here, the authors compile functional genomics data for the pig genome over 14 tissues with 15 different chromatin states, integrate the data with WGS and GWAS data, and compare conservation of regulatory elements across mouse and human tissues.Zhangyuan PanYuelin YaoHongwei YinZexi CaiYing WangLijing BaiColin KernMichelle HalsteadGanrea ChanthavixayNares TrakooljulKlaus WimmersGoutam SahanaGuosheng SuMogens Sandø LundMerete FredholmPeter Karlskov-MortensenCatherine W. ErnstPablo RossChristopher K. TuggleLingzhao FangHuaijun ZhouNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-15 (2021) |
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Science Q Zhangyuan Pan Yuelin Yao Hongwei Yin Zexi Cai Ying Wang Lijing Bai Colin Kern Michelle Halstead Ganrea Chanthavixay Nares Trakooljul Klaus Wimmers Goutam Sahana Guosheng Su Mogens Sandø Lund Merete Fredholm Peter Karlskov-Mortensen Catherine W. Ernst Pablo Ross Christopher K. Tuggle Lingzhao Fang Huaijun Zhou Pig genome functional annotation enhances the biological interpretation of complex traits and human disease |
description |
Annotating functional elements of the genome helps the interpretation of genetic variation. Here, the authors compile functional genomics data for the pig genome over 14 tissues with 15 different chromatin states, integrate the data with WGS and GWAS data, and compare conservation of regulatory elements across mouse and human tissues. |
format |
article |
author |
Zhangyuan Pan Yuelin Yao Hongwei Yin Zexi Cai Ying Wang Lijing Bai Colin Kern Michelle Halstead Ganrea Chanthavixay Nares Trakooljul Klaus Wimmers Goutam Sahana Guosheng Su Mogens Sandø Lund Merete Fredholm Peter Karlskov-Mortensen Catherine W. Ernst Pablo Ross Christopher K. Tuggle Lingzhao Fang Huaijun Zhou |
author_facet |
Zhangyuan Pan Yuelin Yao Hongwei Yin Zexi Cai Ying Wang Lijing Bai Colin Kern Michelle Halstead Ganrea Chanthavixay Nares Trakooljul Klaus Wimmers Goutam Sahana Guosheng Su Mogens Sandø Lund Merete Fredholm Peter Karlskov-Mortensen Catherine W. Ernst Pablo Ross Christopher K. Tuggle Lingzhao Fang Huaijun Zhou |
author_sort |
Zhangyuan Pan |
title |
Pig genome functional annotation enhances the biological interpretation of complex traits and human disease |
title_short |
Pig genome functional annotation enhances the biological interpretation of complex traits and human disease |
title_full |
Pig genome functional annotation enhances the biological interpretation of complex traits and human disease |
title_fullStr |
Pig genome functional annotation enhances the biological interpretation of complex traits and human disease |
title_full_unstemmed |
Pig genome functional annotation enhances the biological interpretation of complex traits and human disease |
title_sort |
pig genome functional annotation enhances the biological interpretation of complex traits and human disease |
publisher |
Nature Portfolio |
publishDate |
2021 |
url |
https://doaj.org/article/9d93bfd836f04f2482675331b406ee47 |
work_keys_str_mv |
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