Cargando…

Integration of multi-omics approaches for functional characterization of muscle related selective sweep genes in Nanchukmacdon

Pig as a food source serves daily dietary demand to a wide population around the world. Preference of meat depends on various factors with muscle play the central role. In this regards, selective breeding abled us to develop “Nanchukmacdon” a pig breeds with an enhanced variety of meat and high fert...

Descripción completa

Detalles Bibliográficos
Autores principales: Arora, Devender, Srikanth, Krishnamoorthy, Lee, Jongin, Lee, Daehwan, Park, Nayoung, Wy, Suyeon, Kim, Hyeonji, Park, Jong-Eun, Chai, Han-Ha, Lim, Dajeong, Cho, In-Cheol, Kim, Jaebum, Park, Woncheoul
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8009959/
https://www.ncbi.nlm.nih.gov/pubmed/33785872
http://dx.doi.org/10.1038/s41598-021-86683-4
_version_ 1783672969057271808
author Arora, Devender
Srikanth, Krishnamoorthy
Lee, Jongin
Lee, Daehwan
Park, Nayoung
Wy, Suyeon
Kim, Hyeonji
Park, Jong-Eun
Chai, Han-Ha
Lim, Dajeong
Cho, In-Cheol
Kim, Jaebum
Park, Woncheoul
author_facet Arora, Devender
Srikanth, Krishnamoorthy
Lee, Jongin
Lee, Daehwan
Park, Nayoung
Wy, Suyeon
Kim, Hyeonji
Park, Jong-Eun
Chai, Han-Ha
Lim, Dajeong
Cho, In-Cheol
Kim, Jaebum
Park, Woncheoul
author_sort Arora, Devender
collection PubMed
description Pig as a food source serves daily dietary demand to a wide population around the world. Preference of meat depends on various factors with muscle play the central role. In this regards, selective breeding abled us to develop “Nanchukmacdon” a pig breeds with an enhanced variety of meat and high fertility rate. To identify genomic regions under selection we performed whole-genome resequencing, transcriptome, and whole-genome bisulfite sequencing from Nanchukmacdon muscles samples and used published data for three other breeds such as Landrace, Duroc, Jeju native pig and analyzed the functional characterization of candidate genes. In this study, we present a comprehensive approach to identify candidate genes by using multi-omics approaches. We performed two different methods XP-EHH, XP-CLR to identify traces of artificial selection for traits of economic importance. Moreover, RNAseq analysis was done to identify differentially expressed genes in the crossed breed population. Several genes (UGT8, ZGRF1, NDUFA10, EBF3, ELN, UBE2L6, NCALD, MELK, SERP2, GDPD5, and FHL2) were identified as selective sweep and differentially expressed in muscles related pathways. Furthermore, nucleotide diversity analysis revealed low genetic diversity in Nanchukmacdon for identified genes in comparison to related breeds and whole-genome bisulfite sequencing data shows the critical role of DNA methylation pattern in identified genes that leads to enhanced variety of meat. This work demonstrates a way to identify the molecular signature and lays a foundation for future genomic enabled pig breeding.
format Online
Article
Text
id pubmed-8009959
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher Nature Publishing Group UK
record_format MEDLINE/PubMed
spelling pubmed-80099592021-04-01 Integration of multi-omics approaches for functional characterization of muscle related selective sweep genes in Nanchukmacdon Arora, Devender Srikanth, Krishnamoorthy Lee, Jongin Lee, Daehwan Park, Nayoung Wy, Suyeon Kim, Hyeonji Park, Jong-Eun Chai, Han-Ha Lim, Dajeong Cho, In-Cheol Kim, Jaebum Park, Woncheoul Sci Rep Article Pig as a food source serves daily dietary demand to a wide population around the world. Preference of meat depends on various factors with muscle play the central role. In this regards, selective breeding abled us to develop “Nanchukmacdon” a pig breeds with an enhanced variety of meat and high fertility rate. To identify genomic regions under selection we performed whole-genome resequencing, transcriptome, and whole-genome bisulfite sequencing from Nanchukmacdon muscles samples and used published data for three other breeds such as Landrace, Duroc, Jeju native pig and analyzed the functional characterization of candidate genes. In this study, we present a comprehensive approach to identify candidate genes by using multi-omics approaches. We performed two different methods XP-EHH, XP-CLR to identify traces of artificial selection for traits of economic importance. Moreover, RNAseq analysis was done to identify differentially expressed genes in the crossed breed population. Several genes (UGT8, ZGRF1, NDUFA10, EBF3, ELN, UBE2L6, NCALD, MELK, SERP2, GDPD5, and FHL2) were identified as selective sweep and differentially expressed in muscles related pathways. Furthermore, nucleotide diversity analysis revealed low genetic diversity in Nanchukmacdon for identified genes in comparison to related breeds and whole-genome bisulfite sequencing data shows the critical role of DNA methylation pattern in identified genes that leads to enhanced variety of meat. This work demonstrates a way to identify the molecular signature and lays a foundation for future genomic enabled pig breeding. Nature Publishing Group UK 2021-03-30 /pmc/articles/PMC8009959/ /pubmed/33785872 http://dx.doi.org/10.1038/s41598-021-86683-4 Text en © The Author(s) 2021 Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons licence, and indicate if changes were made. The images or other third party material in this article are included in the article's Creative Commons licence, unless indicated otherwise in a credit line to the material. If material is not included in the article's Creative Commons licence and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this licence, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Article
Arora, Devender
Srikanth, Krishnamoorthy
Lee, Jongin
Lee, Daehwan
Park, Nayoung
Wy, Suyeon
Kim, Hyeonji
Park, Jong-Eun
Chai, Han-Ha
Lim, Dajeong
Cho, In-Cheol
Kim, Jaebum
Park, Woncheoul
Integration of multi-omics approaches for functional characterization of muscle related selective sweep genes in Nanchukmacdon
title Integration of multi-omics approaches for functional characterization of muscle related selective sweep genes in Nanchukmacdon
title_full Integration of multi-omics approaches for functional characterization of muscle related selective sweep genes in Nanchukmacdon
title_fullStr Integration of multi-omics approaches for functional characterization of muscle related selective sweep genes in Nanchukmacdon
title_full_unstemmed Integration of multi-omics approaches for functional characterization of muscle related selective sweep genes in Nanchukmacdon
title_short Integration of multi-omics approaches for functional characterization of muscle related selective sweep genes in Nanchukmacdon
title_sort integration of multi-omics approaches for functional characterization of muscle related selective sweep genes in nanchukmacdon
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8009959/
https://www.ncbi.nlm.nih.gov/pubmed/33785872
http://dx.doi.org/10.1038/s41598-021-86683-4
work_keys_str_mv AT aroradevender integrationofmultiomicsapproachesforfunctionalcharacterizationofmusclerelatedselectivesweepgenesinnanchukmacdon
AT srikanthkrishnamoorthy integrationofmultiomicsapproachesforfunctionalcharacterizationofmusclerelatedselectivesweepgenesinnanchukmacdon
AT leejongin integrationofmultiomicsapproachesforfunctionalcharacterizationofmusclerelatedselectivesweepgenesinnanchukmacdon
AT leedaehwan integrationofmultiomicsapproachesforfunctionalcharacterizationofmusclerelatedselectivesweepgenesinnanchukmacdon
AT parknayoung integrationofmultiomicsapproachesforfunctionalcharacterizationofmusclerelatedselectivesweepgenesinnanchukmacdon
AT wysuyeon integrationofmultiomicsapproachesforfunctionalcharacterizationofmusclerelatedselectivesweepgenesinnanchukmacdon
AT kimhyeonji integrationofmultiomicsapproachesforfunctionalcharacterizationofmusclerelatedselectivesweepgenesinnanchukmacdon
AT parkjongeun integrationofmultiomicsapproachesforfunctionalcharacterizationofmusclerelatedselectivesweepgenesinnanchukmacdon
AT chaihanha integrationofmultiomicsapproachesforfunctionalcharacterizationofmusclerelatedselectivesweepgenesinnanchukmacdon
AT limdajeong integrationofmultiomicsapproachesforfunctionalcharacterizationofmusclerelatedselectivesweepgenesinnanchukmacdon
AT choincheol integrationofmultiomicsapproachesforfunctionalcharacterizationofmusclerelatedselectivesweepgenesinnanchukmacdon
AT kimjaebum integrationofmultiomicsapproachesforfunctionalcharacterizationofmusclerelatedselectivesweepgenesinnanchukmacdon
AT parkwoncheoul integrationofmultiomicsapproachesforfunctionalcharacterizationofmusclerelatedselectivesweepgenesinnanchukmacdon