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Metabolome‐Based Genome‐Wide Association Study of Duck Meat Leads to Novel Genetic and Biochemical Insights

Meat is among the most consumed foods worldwide and has a unique flavor and high nutrient density in the human diet. However, the genetic and biochemical bases of meat nutrition and flavor are poorly understood. Here, 3431 metabolites and 702 volatiles in 423 skeletal muscle samples are profiled fro...

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Autores principales: Liu, Dapeng, Zhang, He, Yang, Youyou, Liu, Tong, Guo, Zhanbao, Fan, Wenlei, Wang, Zhen, Yang, Xinting, Zhang, Bo, Liu, Hongfei, Tang, Hehe, Yu, Daxin, Yu, Simeng, Gai, Kai, Mou, Qiming, Cao, Junting, Hu, Jian, Tang, Jing, Hou, Shuisheng, Zhou, Zhengkui
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10288243/
https://www.ncbi.nlm.nih.gov/pubmed/37013465
http://dx.doi.org/10.1002/advs.202300148
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author Liu, Dapeng
Zhang, He
Yang, Youyou
Liu, Tong
Guo, Zhanbao
Fan, Wenlei
Wang, Zhen
Yang, Xinting
Zhang, Bo
Liu, Hongfei
Tang, Hehe
Yu, Daxin
Yu, Simeng
Gai, Kai
Mou, Qiming
Cao, Junting
Hu, Jian
Tang, Jing
Hou, Shuisheng
Zhou, Zhengkui
author_facet Liu, Dapeng
Zhang, He
Yang, Youyou
Liu, Tong
Guo, Zhanbao
Fan, Wenlei
Wang, Zhen
Yang, Xinting
Zhang, Bo
Liu, Hongfei
Tang, Hehe
Yu, Daxin
Yu, Simeng
Gai, Kai
Mou, Qiming
Cao, Junting
Hu, Jian
Tang, Jing
Hou, Shuisheng
Zhou, Zhengkui
author_sort Liu, Dapeng
collection PubMed
description Meat is among the most consumed foods worldwide and has a unique flavor and high nutrient density in the human diet. However, the genetic and biochemical bases of meat nutrition and flavor are poorly understood. Here, 3431 metabolites and 702 volatiles in 423 skeletal muscle samples are profiled from a gradient consanguinity segregating population generated by Pekin duck × Liancheng duck crosses using metabolomic approaches. The authors identified 2862 metabolome‐based genome‐wide association studies (mGWAS) signals and 48 candidate genes potentially modulating metabolite and volatile levels, 79.2% of which are regulated by cis‐regulatory elements. The level of plasmalogen is significantly associated with TMEM189 encoding plasmanylethanolamine desaturase 1. The levels of 2‐pyrrolidone and glycerophospholipids are regulated by the gene expression of AOX1 and ACBD5, which further affects the levels of volatiles, 2‐pyrrolidone and decanal, respectively. Genetic variations in GADL1 and CARNMT2 determine the levels of 49 metabolites including L‐carnosine and anserine. This study provides novel insights into the genetic and biochemical basis of skeletal muscle metabolism and constitutes a valuable resource for the precise improvement of meat nutrition and flavor.
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spelling pubmed-102882432023-06-24 Metabolome‐Based Genome‐Wide Association Study of Duck Meat Leads to Novel Genetic and Biochemical Insights Liu, Dapeng Zhang, He Yang, Youyou Liu, Tong Guo, Zhanbao Fan, Wenlei Wang, Zhen Yang, Xinting Zhang, Bo Liu, Hongfei Tang, Hehe Yu, Daxin Yu, Simeng Gai, Kai Mou, Qiming Cao, Junting Hu, Jian Tang, Jing Hou, Shuisheng Zhou, Zhengkui Adv Sci (Weinh) Research Articles Meat is among the most consumed foods worldwide and has a unique flavor and high nutrient density in the human diet. However, the genetic and biochemical bases of meat nutrition and flavor are poorly understood. Here, 3431 metabolites and 702 volatiles in 423 skeletal muscle samples are profiled from a gradient consanguinity segregating population generated by Pekin duck × Liancheng duck crosses using metabolomic approaches. The authors identified 2862 metabolome‐based genome‐wide association studies (mGWAS) signals and 48 candidate genes potentially modulating metabolite and volatile levels, 79.2% of which are regulated by cis‐regulatory elements. The level of plasmalogen is significantly associated with TMEM189 encoding plasmanylethanolamine desaturase 1. The levels of 2‐pyrrolidone and glycerophospholipids are regulated by the gene expression of AOX1 and ACBD5, which further affects the levels of volatiles, 2‐pyrrolidone and decanal, respectively. Genetic variations in GADL1 and CARNMT2 determine the levels of 49 metabolites including L‐carnosine and anserine. This study provides novel insights into the genetic and biochemical basis of skeletal muscle metabolism and constitutes a valuable resource for the precise improvement of meat nutrition and flavor. John Wiley and Sons Inc. 2023-04-04 /pmc/articles/PMC10288243/ /pubmed/37013465 http://dx.doi.org/10.1002/advs.202300148 Text en © 2023 The Authors. Advanced Science published by Wiley‐VCH GmbH https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Liu, Dapeng
Zhang, He
Yang, Youyou
Liu, Tong
Guo, Zhanbao
Fan, Wenlei
Wang, Zhen
Yang, Xinting
Zhang, Bo
Liu, Hongfei
Tang, Hehe
Yu, Daxin
Yu, Simeng
Gai, Kai
Mou, Qiming
Cao, Junting
Hu, Jian
Tang, Jing
Hou, Shuisheng
Zhou, Zhengkui
Metabolome‐Based Genome‐Wide Association Study of Duck Meat Leads to Novel Genetic and Biochemical Insights
title Metabolome‐Based Genome‐Wide Association Study of Duck Meat Leads to Novel Genetic and Biochemical Insights
title_full Metabolome‐Based Genome‐Wide Association Study of Duck Meat Leads to Novel Genetic and Biochemical Insights
title_fullStr Metabolome‐Based Genome‐Wide Association Study of Duck Meat Leads to Novel Genetic and Biochemical Insights
title_full_unstemmed Metabolome‐Based Genome‐Wide Association Study of Duck Meat Leads to Novel Genetic and Biochemical Insights
title_short Metabolome‐Based Genome‐Wide Association Study of Duck Meat Leads to Novel Genetic and Biochemical Insights
title_sort metabolome‐based genome‐wide association study of duck meat leads to novel genetic and biochemical insights
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10288243/
https://www.ncbi.nlm.nih.gov/pubmed/37013465
http://dx.doi.org/10.1002/advs.202300148
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