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Multi-Omics Approach Reveals miR-SNPs Affecting Muscle Fatty Acids Profile in Nelore Cattle

MicroRNAs (miRNAs) are key regulators of gene expression, potentially affecting several biological processes, whose function can be altered by sequence variation. Hence, the integration of single nucleotide polymorphisms (SNP) and miRNAs can explain individual differences in economic traits. To prov...

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Autores principales: Cardoso, Tainã Figueiredo, Coutinho, Luiz Lehmann, Bruscadin, Jennifer Jessica, da Silva Diniz, Wellison Jarles, Petrini, Juliana, Andrade, Bruno Gabriel Nascimento, de Oliveira, Priscila Silva Neubern, Poleti, Mirele Daiana, Cesar, Aline Silva Mello, da Silveira, Juliano Coelho, Chiaratti, Marcos Roberto, Zerlotini, Adhemar, Mourão, Gerson Barreto, de Almeida Regitano, Luciana Correia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7825288/
https://www.ncbi.nlm.nih.gov/pubmed/33419037
http://dx.doi.org/10.3390/genes12010067
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author Cardoso, Tainã Figueiredo
Coutinho, Luiz Lehmann
Bruscadin, Jennifer Jessica
da Silva Diniz, Wellison Jarles
Petrini, Juliana
Andrade, Bruno Gabriel Nascimento
de Oliveira, Priscila Silva Neubern
Poleti, Mirele Daiana
Cesar, Aline Silva Mello
da Silveira, Juliano Coelho
Chiaratti, Marcos Roberto
Zerlotini, Adhemar
Mourão, Gerson Barreto
de Almeida Regitano, Luciana Correia
author_facet Cardoso, Tainã Figueiredo
Coutinho, Luiz Lehmann
Bruscadin, Jennifer Jessica
da Silva Diniz, Wellison Jarles
Petrini, Juliana
Andrade, Bruno Gabriel Nascimento
de Oliveira, Priscila Silva Neubern
Poleti, Mirele Daiana
Cesar, Aline Silva Mello
da Silveira, Juliano Coelho
Chiaratti, Marcos Roberto
Zerlotini, Adhemar
Mourão, Gerson Barreto
de Almeida Regitano, Luciana Correia
author_sort Cardoso, Tainã Figueiredo
collection PubMed
description MicroRNAs (miRNAs) are key regulators of gene expression, potentially affecting several biological processes, whose function can be altered by sequence variation. Hence, the integration of single nucleotide polymorphisms (SNP) and miRNAs can explain individual differences in economic traits. To provide new insights into the effects of SNPs on miRNAs and their related target genes, we carried out a multi-omic analysis to identify SNPs in miRNA mature sequences (miR-SNPs) associated with fatty acid (FA) composition in the Nelore cattle. As a result, we identified 3 miR-SNPs in different miRNAs (bta-miR-2419-3p, bta-miR-193a-2, and bta-miR-1291) significantly associated with FA traits (p-value < 0.02, Bonferroni corrected). Among these, the rs110817643C>T, located in the seed sequence of the bta-miR-1291, was associated with different ω6 FAs, polyunsaturated FA, and polyunsaturated:saturated FA ratios. Concerning the other two miR-SNPs, the rs43400521T>C (located in the bta-miR-2419-3p) was associated with C12:0 and C18:1 cis-11 FA, whereas the rs516857374A>G (located in the bta-miR-193a-2) was associated with C18:3 ω6 and ratio of ω6/ω3 traits. Additionally, to identify potential biomarkers for FA composition, we described target genes affected by these miR-SNPs at the mRNA or protein level. Our multi-omics analysis outlines the effects of genetic polymorphism on miRNA, and it highlights miR-SNPs and target candidate genes that control beef fatty acid composition.
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spelling pubmed-78252882021-01-24 Multi-Omics Approach Reveals miR-SNPs Affecting Muscle Fatty Acids Profile in Nelore Cattle Cardoso, Tainã Figueiredo Coutinho, Luiz Lehmann Bruscadin, Jennifer Jessica da Silva Diniz, Wellison Jarles Petrini, Juliana Andrade, Bruno Gabriel Nascimento de Oliveira, Priscila Silva Neubern Poleti, Mirele Daiana Cesar, Aline Silva Mello da Silveira, Juliano Coelho Chiaratti, Marcos Roberto Zerlotini, Adhemar Mourão, Gerson Barreto de Almeida Regitano, Luciana Correia Genes (Basel) Article MicroRNAs (miRNAs) are key regulators of gene expression, potentially affecting several biological processes, whose function can be altered by sequence variation. Hence, the integration of single nucleotide polymorphisms (SNP) and miRNAs can explain individual differences in economic traits. To provide new insights into the effects of SNPs on miRNAs and their related target genes, we carried out a multi-omic analysis to identify SNPs in miRNA mature sequences (miR-SNPs) associated with fatty acid (FA) composition in the Nelore cattle. As a result, we identified 3 miR-SNPs in different miRNAs (bta-miR-2419-3p, bta-miR-193a-2, and bta-miR-1291) significantly associated with FA traits (p-value < 0.02, Bonferroni corrected). Among these, the rs110817643C>T, located in the seed sequence of the bta-miR-1291, was associated with different ω6 FAs, polyunsaturated FA, and polyunsaturated:saturated FA ratios. Concerning the other two miR-SNPs, the rs43400521T>C (located in the bta-miR-2419-3p) was associated with C12:0 and C18:1 cis-11 FA, whereas the rs516857374A>G (located in the bta-miR-193a-2) was associated with C18:3 ω6 and ratio of ω6/ω3 traits. Additionally, to identify potential biomarkers for FA composition, we described target genes affected by these miR-SNPs at the mRNA or protein level. Our multi-omics analysis outlines the effects of genetic polymorphism on miRNA, and it highlights miR-SNPs and target candidate genes that control beef fatty acid composition. MDPI 2021-01-06 /pmc/articles/PMC7825288/ /pubmed/33419037 http://dx.doi.org/10.3390/genes12010067 Text en © 2021 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
Cardoso, Tainã Figueiredo
Coutinho, Luiz Lehmann
Bruscadin, Jennifer Jessica
da Silva Diniz, Wellison Jarles
Petrini, Juliana
Andrade, Bruno Gabriel Nascimento
de Oliveira, Priscila Silva Neubern
Poleti, Mirele Daiana
Cesar, Aline Silva Mello
da Silveira, Juliano Coelho
Chiaratti, Marcos Roberto
Zerlotini, Adhemar
Mourão, Gerson Barreto
de Almeida Regitano, Luciana Correia
Multi-Omics Approach Reveals miR-SNPs Affecting Muscle Fatty Acids Profile in Nelore Cattle
title Multi-Omics Approach Reveals miR-SNPs Affecting Muscle Fatty Acids Profile in Nelore Cattle
title_full Multi-Omics Approach Reveals miR-SNPs Affecting Muscle Fatty Acids Profile in Nelore Cattle
title_fullStr Multi-Omics Approach Reveals miR-SNPs Affecting Muscle Fatty Acids Profile in Nelore Cattle
title_full_unstemmed Multi-Omics Approach Reveals miR-SNPs Affecting Muscle Fatty Acids Profile in Nelore Cattle
title_short Multi-Omics Approach Reveals miR-SNPs Affecting Muscle Fatty Acids Profile in Nelore Cattle
title_sort multi-omics approach reveals mir-snps affecting muscle fatty acids profile in nelore cattle
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7825288/
https://www.ncbi.nlm.nih.gov/pubmed/33419037
http://dx.doi.org/10.3390/genes12010067
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