Molecular regulation of high muscle mass in developing Blonde d'Aquitaine cattle foetuses

The Blonde d'Aquitaine (BA) is a French cattle breed with enhanced muscularity, partly attributable to a MSTN mutation. The BA m. Semitendinosus has a faster muscle fibre isoform phenotype comprising a higher proportion of fast type IIX fibres compared to age-matched Charolais (CH). To better u...

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Main Authors: Isabelle Cassar-Malek, Céline Boby, Brigitte Picard, Antonio Reverter, Nicholas J. Hudson
Format: Article
Language:English
Published: The Company of Biologists 2017-10-01
Series:Biology Open
Subjects:
Online Access:http://bio.biologists.org/content/6/10/1483
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spelling doaj-c7e16a894ca74db79523fbbe13f445df2021-06-02T13:29:34ZengThe Company of BiologistsBiology Open2046-63902017-10-016101483149210.1242/bio.024950024950Molecular regulation of high muscle mass in developing Blonde d'Aquitaine cattle foetusesIsabelle Cassar-Malek0Céline Boby1Brigitte Picard2Antonio Reverter3Nicholas J. Hudson4 UMR1213 Herbivores, Institut National de la Recherche Agronomique, VetAgro Sup, 63122 Saint Genès Champanelle, Clermont-Ferrand F-63122, France UMR1213 Herbivores, Institut National de la Recherche Agronomique, VetAgro Sup, 63122 Saint Genès Champanelle, Clermont-Ferrand F-63122, France UMR1213 Herbivores, Institut National de la Recherche Agronomique, VetAgro Sup, 63122 Saint Genès Champanelle, Clermont-Ferrand F-63122, France Agriculture, Commonwealth Science and Industrial Research Organisation, Queensland Bioscience Precinct, St. Lucia, Brisbane 4075, Australia School of Agriculture and Food Sciences, University of Queensland, Brisbane 4075, Australia The Blonde d'Aquitaine (BA) is a French cattle breed with enhanced muscularity, partly attributable to a MSTN mutation. The BA m. Semitendinosus has a faster muscle fibre isoform phenotype comprising a higher proportion of fast type IIX fibres compared to age-matched Charolais (CH). To better understand the molecular network of modifications in BA compared to CH muscle, we assayed the transcriptomes of the m. Semitendinosus at 110, 180, 210 and 260 days postconception (dpc). We used a combination of differential expression (DE) and regulatory impact factors (RIF) to compare and contrast muscle gene expression between the breeds. Prominently developmentally regulated genes in both breeds reflected the replacement of embryonic myosin isoforms (MYL4, MYH3) with adult isoforms (MYH1) and the upregulation of mitochondrial metabolism (CKMT2, AGXT2L1) in preparation for birth. However, the transition to a fast, glycolytic muscle phenotype in the MSTN mutant BA is detectable through downregulation of various slow twitch subunits (TNNC1, MYH7, TPM3, CSRP3) beyond 210 dpc, and a small but consistent genome-wide reduction in mRNA encoding the mitoproteome. Across the breeds, NRIP2 is the regulatory gene possessing a network change most similar to that of MSTN.http://bio.biologists.org/content/6/10/1483Skeletal muscleMyostatinMitochondriaGenomicsMyogenesis
collection DOAJ
language English
format Article
sources DOAJ
author Isabelle Cassar-Malek
Céline Boby
Brigitte Picard
Antonio Reverter
Nicholas J. Hudson
spellingShingle Isabelle Cassar-Malek
Céline Boby
Brigitte Picard
Antonio Reverter
Nicholas J. Hudson
Molecular regulation of high muscle mass in developing Blonde d'Aquitaine cattle foetuses
Biology Open
Skeletal muscle
Myostatin
Mitochondria
Genomics
Myogenesis
author_facet Isabelle Cassar-Malek
Céline Boby
Brigitte Picard
Antonio Reverter
Nicholas J. Hudson
author_sort Isabelle Cassar-Malek
title Molecular regulation of high muscle mass in developing Blonde d'Aquitaine cattle foetuses
title_short Molecular regulation of high muscle mass in developing Blonde d'Aquitaine cattle foetuses
title_full Molecular regulation of high muscle mass in developing Blonde d'Aquitaine cattle foetuses
title_fullStr Molecular regulation of high muscle mass in developing Blonde d'Aquitaine cattle foetuses
title_full_unstemmed Molecular regulation of high muscle mass in developing Blonde d'Aquitaine cattle foetuses
title_sort molecular regulation of high muscle mass in developing blonde d'aquitaine cattle foetuses
publisher The Company of Biologists
series Biology Open
issn 2046-6390
publishDate 2017-10-01
description The Blonde d'Aquitaine (BA) is a French cattle breed with enhanced muscularity, partly attributable to a MSTN mutation. The BA m. Semitendinosus has a faster muscle fibre isoform phenotype comprising a higher proportion of fast type IIX fibres compared to age-matched Charolais (CH). To better understand the molecular network of modifications in BA compared to CH muscle, we assayed the transcriptomes of the m. Semitendinosus at 110, 180, 210 and 260 days postconception (dpc). We used a combination of differential expression (DE) and regulatory impact factors (RIF) to compare and contrast muscle gene expression between the breeds. Prominently developmentally regulated genes in both breeds reflected the replacement of embryonic myosin isoforms (MYL4, MYH3) with adult isoforms (MYH1) and the upregulation of mitochondrial metabolism (CKMT2, AGXT2L1) in preparation for birth. However, the transition to a fast, glycolytic muscle phenotype in the MSTN mutant BA is detectable through downregulation of various slow twitch subunits (TNNC1, MYH7, TPM3, CSRP3) beyond 210 dpc, and a small but consistent genome-wide reduction in mRNA encoding the mitoproteome. Across the breeds, NRIP2 is the regulatory gene possessing a network change most similar to that of MSTN.
topic Skeletal muscle
Myostatin
Mitochondria
Genomics
Myogenesis
url http://bio.biologists.org/content/6/10/1483
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