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gga-miRNA-18b-3p Inhibits Intramuscular Adipocytes Differentiation in Chicken by Targeting the ACOT13 Gene

Intramuscular fat (IMF) is the most important evaluating indicator of chicken meat quality, the content of which is positively correlated with tenderness, flavor, and succulence of the meat. Chicken IMF deposition process is regulated by many factors, including genetic, nutrition, and environment. A...

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Autores principales: Sun, Guirong, Li, Fang, Ma, Xiangfei, Sun, Junwei, Jiang, Ruirui, Tian, Yadong, Han, Ruili, Li, Guoxi, Wang, Yanbin, Li, Zhuanjian, Kang, Xiangtao, Li, Wenting
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6627633/
https://www.ncbi.nlm.nih.gov/pubmed/31181634
http://dx.doi.org/10.3390/cells8060556
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author Sun, Guirong
Li, Fang
Ma, Xiangfei
Sun, Junwei
Jiang, Ruirui
Tian, Yadong
Han, Ruili
Li, Guoxi
Wang, Yanbin
Li, Zhuanjian
Kang, Xiangtao
Li, Wenting
author_facet Sun, Guirong
Li, Fang
Ma, Xiangfei
Sun, Junwei
Jiang, Ruirui
Tian, Yadong
Han, Ruili
Li, Guoxi
Wang, Yanbin
Li, Zhuanjian
Kang, Xiangtao
Li, Wenting
author_sort Sun, Guirong
collection PubMed
description Intramuscular fat (IMF) is the most important evaluating indicator of chicken meat quality, the content of which is positively correlated with tenderness, flavor, and succulence of the meat. Chicken IMF deposition process is regulated by many factors, including genetic, nutrition, and environment. Although large number of omics’ studies focused on the IMF deposition process, the molecular mechanism of chicken IMF deposition is still poorly understood. In order to study the role of miRNAs in chicken intramuscular adipogenesis, the intramuscular adipocyte differentiation model (IMF-preadipocytes and IMF-adipocytes) was established and subject to miRNA-Seq. A total of 117 differentially expressed miRNAs between two groups were obtained. Target genes prediction and functional enrichment analysis revealed that eight pathways involved in lipid metabolism related processes, such as fatty acid metabolism and fatty acid elongation. Meanwhile a putative miRNA, gga-miR-18b-3p, was identified be served a function in the intramuscular adipocyte differentiation. Luciferase assay suggested that the gga-miR-18b-3p targeted to the 3′UTR of ACOT13. Subsequent functional experiments demonstrated that gga-miR-18b-3p acted as an inhibitor of intramuscular adipocyte differentiation by targeting ACOT13. Our findings laid a new theoretical foundation for the study of lipid metabolism, and also provided a potential target to improve the meat quality in the poultry industry.
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spelling pubmed-66276332019-07-23 gga-miRNA-18b-3p Inhibits Intramuscular Adipocytes Differentiation in Chicken by Targeting the ACOT13 Gene Sun, Guirong Li, Fang Ma, Xiangfei Sun, Junwei Jiang, Ruirui Tian, Yadong Han, Ruili Li, Guoxi Wang, Yanbin Li, Zhuanjian Kang, Xiangtao Li, Wenting Cells Article Intramuscular fat (IMF) is the most important evaluating indicator of chicken meat quality, the content of which is positively correlated with tenderness, flavor, and succulence of the meat. Chicken IMF deposition process is regulated by many factors, including genetic, nutrition, and environment. Although large number of omics’ studies focused on the IMF deposition process, the molecular mechanism of chicken IMF deposition is still poorly understood. In order to study the role of miRNAs in chicken intramuscular adipogenesis, the intramuscular adipocyte differentiation model (IMF-preadipocytes and IMF-adipocytes) was established and subject to miRNA-Seq. A total of 117 differentially expressed miRNAs between two groups were obtained. Target genes prediction and functional enrichment analysis revealed that eight pathways involved in lipid metabolism related processes, such as fatty acid metabolism and fatty acid elongation. Meanwhile a putative miRNA, gga-miR-18b-3p, was identified be served a function in the intramuscular adipocyte differentiation. Luciferase assay suggested that the gga-miR-18b-3p targeted to the 3′UTR of ACOT13. Subsequent functional experiments demonstrated that gga-miR-18b-3p acted as an inhibitor of intramuscular adipocyte differentiation by targeting ACOT13. Our findings laid a new theoretical foundation for the study of lipid metabolism, and also provided a potential target to improve the meat quality in the poultry industry. MDPI 2019-06-07 /pmc/articles/PMC6627633/ /pubmed/31181634 http://dx.doi.org/10.3390/cells8060556 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Sun, Guirong
Li, Fang
Ma, Xiangfei
Sun, Junwei
Jiang, Ruirui
Tian, Yadong
Han, Ruili
Li, Guoxi
Wang, Yanbin
Li, Zhuanjian
Kang, Xiangtao
Li, Wenting
gga-miRNA-18b-3p Inhibits Intramuscular Adipocytes Differentiation in Chicken by Targeting the ACOT13 Gene
title gga-miRNA-18b-3p Inhibits Intramuscular Adipocytes Differentiation in Chicken by Targeting the ACOT13 Gene
title_full gga-miRNA-18b-3p Inhibits Intramuscular Adipocytes Differentiation in Chicken by Targeting the ACOT13 Gene
title_fullStr gga-miRNA-18b-3p Inhibits Intramuscular Adipocytes Differentiation in Chicken by Targeting the ACOT13 Gene
title_full_unstemmed gga-miRNA-18b-3p Inhibits Intramuscular Adipocytes Differentiation in Chicken by Targeting the ACOT13 Gene
title_short gga-miRNA-18b-3p Inhibits Intramuscular Adipocytes Differentiation in Chicken by Targeting the ACOT13 Gene
title_sort gga-mirna-18b-3p inhibits intramuscular adipocytes differentiation in chicken by targeting the acot13 gene
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6627633/
https://www.ncbi.nlm.nih.gov/pubmed/31181634
http://dx.doi.org/10.3390/cells8060556
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