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author Li, Jinxi
Glover, James D.
Zhang, Haiguo
Peng, Meifang
Tan, Jingze
Mallick, Chandana Basu
Hou, Dan
Yang, Yajun
Wu, Sijie
Liu, Yu
Peng, Qianqian
Zheng, Shijie C.
Crosse, Edie I.
Medvinsky, Alexander
Anderson, Richard A.
Brown, Helen
Yuan, Ziyu
Zhou, Shen
Xu, Yanqing
Kemp, John P.
Ho, Yvonne Y.W.
Loesch, Danuta Z.
Wang, Lizhong
Li, Yingxiang
Tang, Senwei
Wu, Xiaoli
Walters, Robin G.
Lin, Kuang
Meng, Ruogu
Lv, Jun
Chernus, Jonathan M.
Neiswanger, Katherine
Feingold, Eleanor
Evans, David M.
Medland, Sarah E.
Martin, Nicholas G.
Weinberg, Seth M.
Marazita, Mary L.
Chen, Gang
Chen, Zhengming
Zhou, Yong
Cheeseman, Michael
Wang, Lan
Jin, Li
Headon, Denis J.
Wang, Sijia
author_facet Li, Jinxi
Glover, James D.
Zhang, Haiguo
Peng, Meifang
Tan, Jingze
Mallick, Chandana Basu
Hou, Dan
Yang, Yajun
Wu, Sijie
Liu, Yu
Peng, Qianqian
Zheng, Shijie C.
Crosse, Edie I.
Medvinsky, Alexander
Anderson, Richard A.
Brown, Helen
Yuan, Ziyu
Zhou, Shen
Xu, Yanqing
Kemp, John P.
Ho, Yvonne Y.W.
Loesch, Danuta Z.
Wang, Lizhong
Li, Yingxiang
Tang, Senwei
Wu, Xiaoli
Walters, Robin G.
Lin, Kuang
Meng, Ruogu
Lv, Jun
Chernus, Jonathan M.
Neiswanger, Katherine
Feingold, Eleanor
Evans, David M.
Medland, Sarah E.
Martin, Nicholas G.
Weinberg, Seth M.
Marazita, Mary L.
Chen, Gang
Chen, Zhengming
Zhou, Yong
Cheeseman, Michael
Wang, Lan
Jin, Li
Headon, Denis J.
Wang, Sijia
author_sort Li, Jinxi
collection PubMed
description Fingerprints are of long-standing practical and cultural interest, but little is known about the mechanisms that underlie their variation. Using genome-wide scans in Han Chinese cohorts, we identified 18 loci associated with fingerprint type across the digits, including a genetic basis for the long-recognized “pattern-block” correlations among the middle three digits. In particular, we identified a variant near EVI1 that alters regulatory activity and established a role for EVI1 in dermatoglyph patterning in mice. Dynamic EVI1 expression during human development supports its role in shaping the limbs and digits, rather than influencing skin patterning directly. Trans-ethnic meta-analysis identified 43 fingerprint-associated loci, with nearby genes being strongly enriched for general limb development pathways. We also found that fingerprint patterns were genetically correlated with hand proportions. Taken together, these findings support the key role of limb development genes in influencing the outcome of fingerprint patterning.
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spelling pubmed-87409352022-01-12 Limb development genes underlie variation in human fingerprint patterns Li, Jinxi Glover, James D. Zhang, Haiguo Peng, Meifang Tan, Jingze Mallick, Chandana Basu Hou, Dan Yang, Yajun Wu, Sijie Liu, Yu Peng, Qianqian Zheng, Shijie C. Crosse, Edie I. Medvinsky, Alexander Anderson, Richard A. Brown, Helen Yuan, Ziyu Zhou, Shen Xu, Yanqing Kemp, John P. Ho, Yvonne Y.W. Loesch, Danuta Z. Wang, Lizhong Li, Yingxiang Tang, Senwei Wu, Xiaoli Walters, Robin G. Lin, Kuang Meng, Ruogu Lv, Jun Chernus, Jonathan M. Neiswanger, Katherine Feingold, Eleanor Evans, David M. Medland, Sarah E. Martin, Nicholas G. Weinberg, Seth M. Marazita, Mary L. Chen, Gang Chen, Zhengming Zhou, Yong Cheeseman, Michael Wang, Lan Jin, Li Headon, Denis J. Wang, Sijia Cell Article Fingerprints are of long-standing practical and cultural interest, but little is known about the mechanisms that underlie their variation. Using genome-wide scans in Han Chinese cohorts, we identified 18 loci associated with fingerprint type across the digits, including a genetic basis for the long-recognized “pattern-block” correlations among the middle three digits. In particular, we identified a variant near EVI1 that alters regulatory activity and established a role for EVI1 in dermatoglyph patterning in mice. Dynamic EVI1 expression during human development supports its role in shaping the limbs and digits, rather than influencing skin patterning directly. Trans-ethnic meta-analysis identified 43 fingerprint-associated loci, with nearby genes being strongly enriched for general limb development pathways. We also found that fingerprint patterns were genetically correlated with hand proportions. Taken together, these findings support the key role of limb development genes in influencing the outcome of fingerprint patterning. Cell Press 2022-01-06 /pmc/articles/PMC8740935/ /pubmed/34995520 http://dx.doi.org/10.1016/j.cell.2021.12.008 Text en © 2021 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Li, Jinxi
Glover, James D.
Zhang, Haiguo
Peng, Meifang
Tan, Jingze
Mallick, Chandana Basu
Hou, Dan
Yang, Yajun
Wu, Sijie
Liu, Yu
Peng, Qianqian
Zheng, Shijie C.
Crosse, Edie I.
Medvinsky, Alexander
Anderson, Richard A.
Brown, Helen
Yuan, Ziyu
Zhou, Shen
Xu, Yanqing
Kemp, John P.
Ho, Yvonne Y.W.
Loesch, Danuta Z.
Wang, Lizhong
Li, Yingxiang
Tang, Senwei
Wu, Xiaoli
Walters, Robin G.
Lin, Kuang
Meng, Ruogu
Lv, Jun
Chernus, Jonathan M.
Neiswanger, Katherine
Feingold, Eleanor
Evans, David M.
Medland, Sarah E.
Martin, Nicholas G.
Weinberg, Seth M.
Marazita, Mary L.
Chen, Gang
Chen, Zhengming
Zhou, Yong
Cheeseman, Michael
Wang, Lan
Jin, Li
Headon, Denis J.
Wang, Sijia
Limb development genes underlie variation in human fingerprint patterns
title Limb development genes underlie variation in human fingerprint patterns
title_full Limb development genes underlie variation in human fingerprint patterns
title_fullStr Limb development genes underlie variation in human fingerprint patterns
title_full_unstemmed Limb development genes underlie variation in human fingerprint patterns
title_short Limb development genes underlie variation in human fingerprint patterns
title_sort limb development genes underlie variation in human fingerprint patterns
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8740935/
https://www.ncbi.nlm.nih.gov/pubmed/34995520
http://dx.doi.org/10.1016/j.cell.2021.12.008
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