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Polymorphism of the Myostatin (MSTN) Gene in Landes and Kielecka Geese Breeds

SIMPLE SUMMARY: Identification of mutations in the myostatin gene, affecting the occurrence of the double muscling phenotype in some breeds of beef cattle, was an impetus for further analysis and identification of mutations within this gene in other animal breeds, characterized by increased meat per...

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Autores principales: Smołucha, Grzegorz, Kozubska-Sobocińska, Anna, Koseniuk, Anna, Żukowski, Kacper, Lisowski, Mirosław, Grajewski, Bartosz
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7022763/
https://www.ncbi.nlm.nih.gov/pubmed/31861528
http://dx.doi.org/10.3390/ani10010010
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author Smołucha, Grzegorz
Kozubska-Sobocińska, Anna
Koseniuk, Anna
Żukowski, Kacper
Lisowski, Mirosław
Grajewski, Bartosz
author_facet Smołucha, Grzegorz
Kozubska-Sobocińska, Anna
Koseniuk, Anna
Żukowski, Kacper
Lisowski, Mirosław
Grajewski, Bartosz
author_sort Smołucha, Grzegorz
collection PubMed
description SIMPLE SUMMARY: Identification of mutations in the myostatin gene, affecting the occurrence of the double muscling phenotype in some breeds of beef cattle, was an impetus for further analysis and identification of mutations within this gene in other animal breeds, characterized by increased meat performance parameters. The number of geese in poultry livestock production in Poland is small. The native geese breeds can be successfully used to produce high-quality poultry meat and can be a very good source of goose meat production for regional and organic products. The aim of the study was to identify a mutation in the MSTN (Myostatin) gene and investigate whether this polymorphism can affect body weight in different periods of life in Landes and Kielecka breeds. Measurements of the examined trait were taken with time intervals to demonstrate the putative effect of the identified SNP (Single Nucleotide Polymorphism) on body weight over the course of bird growth. In conclusion, the identified c.1231C>T polymorphism suggests a possible link between the polymorphism and the BW (body weight) of Kielecka geese in the 12th week of life. The most significant factors affecting the BW values in geese are breed and sex. ABSTRACT: Myostatin, also known as growth differentiation factor 8 (GDF8), belongs to the TGF- [Formula: see text] superfamily of proteins. MSTN is a highly conserved protein that acts as a negative regulator of skeletal muscle growth. Loss of myostatin functionality causes the phenotype to appear in the form of ‘double musculature’, among others in cattle, sheep, and house mice. The presented results of the research were carried out on two geese breeds—Landes and Kielecka. The aim of the study was to identify mutations in the MSTN gene and study their impact on body weight in both geese breeds in different periods of life. Analysis of the obtained results showed the existence of polymorphism in exon 3 (c.1231C>T) and suggested a possible association (p < 0.05) between BW and genotype in 12 weeks of life in male Kielecka geese breed. The identified polymorphism may be one of the factors important for improving body weight in the studied Kielecka breed, therefore, it is necessary to conduct further research on a larger population of geese breeds in order to more accurately estimate the effect of the identified SNP c.1231C>T on BW in geese.
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spelling pubmed-70227632020-03-11 Polymorphism of the Myostatin (MSTN) Gene in Landes and Kielecka Geese Breeds Smołucha, Grzegorz Kozubska-Sobocińska, Anna Koseniuk, Anna Żukowski, Kacper Lisowski, Mirosław Grajewski, Bartosz Animals (Basel) Article SIMPLE SUMMARY: Identification of mutations in the myostatin gene, affecting the occurrence of the double muscling phenotype in some breeds of beef cattle, was an impetus for further analysis and identification of mutations within this gene in other animal breeds, characterized by increased meat performance parameters. The number of geese in poultry livestock production in Poland is small. The native geese breeds can be successfully used to produce high-quality poultry meat and can be a very good source of goose meat production for regional and organic products. The aim of the study was to identify a mutation in the MSTN (Myostatin) gene and investigate whether this polymorphism can affect body weight in different periods of life in Landes and Kielecka breeds. Measurements of the examined trait were taken with time intervals to demonstrate the putative effect of the identified SNP (Single Nucleotide Polymorphism) on body weight over the course of bird growth. In conclusion, the identified c.1231C>T polymorphism suggests a possible link between the polymorphism and the BW (body weight) of Kielecka geese in the 12th week of life. The most significant factors affecting the BW values in geese are breed and sex. ABSTRACT: Myostatin, also known as growth differentiation factor 8 (GDF8), belongs to the TGF- [Formula: see text] superfamily of proteins. MSTN is a highly conserved protein that acts as a negative regulator of skeletal muscle growth. Loss of myostatin functionality causes the phenotype to appear in the form of ‘double musculature’, among others in cattle, sheep, and house mice. The presented results of the research were carried out on two geese breeds—Landes and Kielecka. The aim of the study was to identify mutations in the MSTN gene and study their impact on body weight in both geese breeds in different periods of life. Analysis of the obtained results showed the existence of polymorphism in exon 3 (c.1231C>T) and suggested a possible association (p < 0.05) between BW and genotype in 12 weeks of life in male Kielecka geese breed. The identified polymorphism may be one of the factors important for improving body weight in the studied Kielecka breed, therefore, it is necessary to conduct further research on a larger population of geese breeds in order to more accurately estimate the effect of the identified SNP c.1231C>T on BW in geese. MDPI 2019-12-19 /pmc/articles/PMC7022763/ /pubmed/31861528 http://dx.doi.org/10.3390/ani10010010 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
Smołucha, Grzegorz
Kozubska-Sobocińska, Anna
Koseniuk, Anna
Żukowski, Kacper
Lisowski, Mirosław
Grajewski, Bartosz
Polymorphism of the Myostatin (MSTN) Gene in Landes and Kielecka Geese Breeds
title Polymorphism of the Myostatin (MSTN) Gene in Landes and Kielecka Geese Breeds
title_full Polymorphism of the Myostatin (MSTN) Gene in Landes and Kielecka Geese Breeds
title_fullStr Polymorphism of the Myostatin (MSTN) Gene in Landes and Kielecka Geese Breeds
title_full_unstemmed Polymorphism of the Myostatin (MSTN) Gene in Landes and Kielecka Geese Breeds
title_short Polymorphism of the Myostatin (MSTN) Gene in Landes and Kielecka Geese Breeds
title_sort polymorphism of the myostatin (mstn) gene in landes and kielecka geese breeds
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7022763/
https://www.ncbi.nlm.nih.gov/pubmed/31861528
http://dx.doi.org/10.3390/ani10010010
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