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Genetic variability of myostatin and prolactin genes in popular goat breeds in Egypt

The genetic polymorphisms of two functional genes named: myostatin (MSTN) and prolactin (PRL) were investigated in three goat breeds (Barki, Damascus and Zaraibi) using Sanger nucleotide sequence and restriction fragment length polymorphism (RFLP) methods, in order to differentiate between these bre...

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Autores principales: Abdel-Aziem, Sekena H., Mahrous, K.F., Abd El-Hafez, M.A.M., Abdel Mordy, M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Academy of Scientific Research and Technology, Egypt 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6296629/
https://www.ncbi.nlm.nih.gov/pubmed/30647710
http://dx.doi.org/10.1016/j.jgeb.2017.10.005
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author Abdel-Aziem, Sekena H.
Mahrous, K.F.
Abd El-Hafez, M.A.M.
Abdel Mordy, M.
author_facet Abdel-Aziem, Sekena H.
Mahrous, K.F.
Abd El-Hafez, M.A.M.
Abdel Mordy, M.
author_sort Abdel-Aziem, Sekena H.
collection PubMed
description The genetic polymorphisms of two functional genes named: myostatin (MSTN) and prolactin (PRL) were investigated in three goat breeds (Barki, Damascus and Zaraibi) using Sanger nucleotide sequence and restriction fragment length polymorphism (RFLP) methods, in order to differentiate between these breeds. Nucleotide sequencing of 337 bp MSTN gene detected five SNPs in Barki breed, two SNPs in Damascus breed, while the Zaraibi breed did not show any SNPs. Moreover, MSTN-HaeIII/PCR-RFLP gave a single Genotype BB was found in all the studied breeds. Meanwhile, Nucleotide sequencing of 196 bp PRL gene showed two SNPs in Damascus breed, one SNPs in Zaraibi breed, while the Barki breed did not show any SNPs. Moreover, PRL-Eco24I/PCR-RFLP showed three genotypes (AA, AB and BB). The genotype AB showed the maximum frequency in all the studied breeds (0.75, 0.85, and 0.90 for Damascus, Barki and Zaraibi breeds, respectively). Observed heterozygosity (Ho) value was higher than expected heterozygosity (He) value all studied breeds. In addition, the values of both Ho and He were the highest in Zaraibi breed (0.90 and 0.51 respectively). Chi-square (χ(2)) value revealed a significant variation Hardy-Weinberg equilibrium (P < .05) in the three studied breeds. It is the highest in Zaraibi goats and lowest in Damascus breed. The results demonstrated that the PRL-Eco24I/PCR-RFLP polymorphism may be utilized as effective marker for genetic differentiation between goat breeds, but MSTN-HaeIII/PCR-RFLP revealed no polymorphism or variation, thus it is not recommended in the selection program. Moreover, these results open up interesting prospects for future selection programs, especially marker assisted selection. In addition, the results established that PCR-RFLP method is a suitable tool for calculating genetic variability.
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spelling pubmed-62966292019-01-15 Genetic variability of myostatin and prolactin genes in popular goat breeds in Egypt Abdel-Aziem, Sekena H. Mahrous, K.F. Abd El-Hafez, M.A.M. Abdel Mordy, M. J Genet Eng Biotechnol Animal Biotechnology The genetic polymorphisms of two functional genes named: myostatin (MSTN) and prolactin (PRL) were investigated in three goat breeds (Barki, Damascus and Zaraibi) using Sanger nucleotide sequence and restriction fragment length polymorphism (RFLP) methods, in order to differentiate between these breeds. Nucleotide sequencing of 337 bp MSTN gene detected five SNPs in Barki breed, two SNPs in Damascus breed, while the Zaraibi breed did not show any SNPs. Moreover, MSTN-HaeIII/PCR-RFLP gave a single Genotype BB was found in all the studied breeds. Meanwhile, Nucleotide sequencing of 196 bp PRL gene showed two SNPs in Damascus breed, one SNPs in Zaraibi breed, while the Barki breed did not show any SNPs. Moreover, PRL-Eco24I/PCR-RFLP showed three genotypes (AA, AB and BB). The genotype AB showed the maximum frequency in all the studied breeds (0.75, 0.85, and 0.90 for Damascus, Barki and Zaraibi breeds, respectively). Observed heterozygosity (Ho) value was higher than expected heterozygosity (He) value all studied breeds. In addition, the values of both Ho and He were the highest in Zaraibi breed (0.90 and 0.51 respectively). Chi-square (χ(2)) value revealed a significant variation Hardy-Weinberg equilibrium (P < .05) in the three studied breeds. It is the highest in Zaraibi goats and lowest in Damascus breed. The results demonstrated that the PRL-Eco24I/PCR-RFLP polymorphism may be utilized as effective marker for genetic differentiation between goat breeds, but MSTN-HaeIII/PCR-RFLP revealed no polymorphism or variation, thus it is not recommended in the selection program. Moreover, these results open up interesting prospects for future selection programs, especially marker assisted selection. In addition, the results established that PCR-RFLP method is a suitable tool for calculating genetic variability. Academy of Scientific Research and Technology, Egypt 2018-06 2017-10-23 /pmc/articles/PMC6296629/ /pubmed/30647710 http://dx.doi.org/10.1016/j.jgeb.2017.10.005 Text en © 2017 Production and hosting by Elsevier B.V. on behalf of Academy of Scientific Research & Technology. http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Animal Biotechnology
Abdel-Aziem, Sekena H.
Mahrous, K.F.
Abd El-Hafez, M.A.M.
Abdel Mordy, M.
Genetic variability of myostatin and prolactin genes in popular goat breeds in Egypt
title Genetic variability of myostatin and prolactin genes in popular goat breeds in Egypt
title_full Genetic variability of myostatin and prolactin genes in popular goat breeds in Egypt
title_fullStr Genetic variability of myostatin and prolactin genes in popular goat breeds in Egypt
title_full_unstemmed Genetic variability of myostatin and prolactin genes in popular goat breeds in Egypt
title_short Genetic variability of myostatin and prolactin genes in popular goat breeds in Egypt
title_sort genetic variability of myostatin and prolactin genes in popular goat breeds in egypt
topic Animal Biotechnology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6296629/
https://www.ncbi.nlm.nih.gov/pubmed/30647710
http://dx.doi.org/10.1016/j.jgeb.2017.10.005
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