Variant <i>GDF9</i> mRNA is likely not the main cause of larger litter size in Iranian Lori-Bakhtyari, Shal, Ghezel, and Afshari sheep breeds

This study was carried out to screen the <i>GDF9</i> gene and evaluate the polymorphism effect on litter size of four Iranian sheep breeds using the PCR-RFLP and PCR-SSCP methods. First, sequencing of the <i>GDF9</i> gene in 16 twin-birth, 4 triplet-birth, and 2 infertile...

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Main Authors: S. Eghbalsaied, F. R. Khorasgani, H.-R. Amini, M. Farahi, M. Davari, A. Pirali, S. Pourali, M. Vatankhah, M. Rostami, H. Atashi
Format: Article
Language:English
Published: Copernicus Publications 2017-05-01
Series:Archives Animal Breeding
Online Access:http://www.arch-anim-breed.net/60/119/2017/aab-60-119-2017.pdf
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spelling doaj-e0b3cfc241a5401a92b71fa9211cc26e2020-11-25T00:02:41ZengCopernicus PublicationsArchives Animal Breeding0003-94382363-98222017-05-016011912910.5194/aab-60-119-2017Variant <i>GDF9</i> mRNA is likely not the main cause of larger litter size in Iranian Lori-Bakhtyari, Shal, Ghezel, and Afshari sheep breedsS. Eghbalsaied0S. Eghbalsaied1F. R. Khorasgani2H.-R. Amini3M. Farahi4M. Davari5A. Pirali6S. Pourali7M. Vatankhah8M. Rostami9H. Atashi10Transgenesis Center of Excellence, Isfahan (Khorasgan) branch, Islamic Azad University, Isfahan, IranDepartment of Animal Science, Faculty of Agriculture, Isfahan (Khorasgan) branch, Islamic Azad University, Isfahan, IranTransgenesis Center of Excellence, Isfahan (Khorasgan) branch, Islamic Azad University, Isfahan, IranTransgenesis Center of Excellence, Isfahan (Khorasgan) branch, Islamic Azad University, Isfahan, IranTransgenesis Center of Excellence, Isfahan (Khorasgan) branch, Islamic Azad University, Isfahan, IranDepartment of Animal Science, Faculty of Agriculture, Isfahan (Khorasgan) branch, Islamic Azad University, Isfahan, IranDepartment of Animal Science, Faculty of Agriculture, Isfahan (Khorasgan) branch, Islamic Azad University, Isfahan, IranTransgenesis Center of Excellence, Isfahan (Khorasgan) branch, Islamic Azad University, Isfahan, IranDepartment of Animal Science, Chaharmahal va Bakhtiary Agricultural and Natural Resources Research and Education Center, AREEO, Shahrekord, IranTransgenesis Center of Excellence, Isfahan (Khorasgan) branch, Islamic Azad University, Isfahan, IranDepartment of Animal Science, Shiraz University, Shiraz, IranThis study was carried out to screen the <i>GDF9</i> gene and evaluate the polymorphism effect on litter size of four Iranian sheep breeds using the PCR-RFLP and PCR-SSCP methods. First, sequencing of the <i>GDF9</i> gene in 16 twin-birth, 4 triplet-birth, and 2 infertile ewes showed that, in addition to G2, G3, G4, G5, and G6 mutations that have been previously reported in other breeds, a new G0 mutation, called C25T, exists in the <i>GDF9</i> sequence of 1 out of 22 ewes and causes L9F substitution in the signal peptide region. None of the triplet-birth or infertile ewes carried G1, G4, G7, FecGE, G8, or FecGT mutations. In the second experiment, a large dataset was used: 605 individuals including 496 ewes (145 Afshari, 54 Shal, 126 Ghezel, and 171 Lori-Bakhtyari sheep), and 109 rams (26 Afshari, 23 Shal, 10 Ghezel, and 50 Lori-Bakhtyari sheep. There were no sheep carrying the G7, G8, or Thoka mutations. Among all 109 rams that were used in this study, none of them were homozygous for the G1 mutation. Moreover, abundance of heterozygote rams (G1/G+) varied from 0.0 (Afshari) to 28.6 % (Lori-Bakhtyari and Ghezel). The highest and the lowest frequencies of the G4 mutation were 30.6 and 3.0 % in Shal and Afshari breeds, respectively. Moreover, G4 abundance varied from 0.0 to 42.3 %, from 3.0 to 26.9, and from 3.0 to 30.6 % in rams, ewes, and overall, respectively. There was a significant difference in the abundance of G1 and G4 mutations between breeds. However, neither the G1 nor the G4 mutation was associated with litter size in Afshari, Ghezel, Lori-Bakhtyari, or Shal sheep breeds. In conclusion, the results of this study showed that <i>GDF9</i> G1 and G4 mutations are not the reason for higher litter size in Iranian sheep. Moreover, the <i>GDF9</i> G0 and G6 mutations do not cause triplet births or infertility in Iranian ewes. Therefore, it is unlikely that variant <i>GDF9</i> mRNA induces larger litter size or infertility in Iranian ewes.http://www.arch-anim-breed.net/60/119/2017/aab-60-119-2017.pdf
collection DOAJ
language English
format Article
sources DOAJ
author S. Eghbalsaied
S. Eghbalsaied
F. R. Khorasgani
H.-R. Amini
M. Farahi
M. Davari
A. Pirali
S. Pourali
M. Vatankhah
M. Rostami
H. Atashi
spellingShingle S. Eghbalsaied
S. Eghbalsaied
F. R. Khorasgani
H.-R. Amini
M. Farahi
M. Davari
A. Pirali
S. Pourali
M. Vatankhah
M. Rostami
H. Atashi
Variant <i>GDF9</i> mRNA is likely not the main cause of larger litter size in Iranian Lori-Bakhtyari, Shal, Ghezel, and Afshari sheep breeds
Archives Animal Breeding
author_facet S. Eghbalsaied
S. Eghbalsaied
F. R. Khorasgani
H.-R. Amini
M. Farahi
M. Davari
A. Pirali
S. Pourali
M. Vatankhah
M. Rostami
H. Atashi
author_sort S. Eghbalsaied
title Variant <i>GDF9</i> mRNA is likely not the main cause of larger litter size in Iranian Lori-Bakhtyari, Shal, Ghezel, and Afshari sheep breeds
title_short Variant <i>GDF9</i> mRNA is likely not the main cause of larger litter size in Iranian Lori-Bakhtyari, Shal, Ghezel, and Afshari sheep breeds
title_full Variant <i>GDF9</i> mRNA is likely not the main cause of larger litter size in Iranian Lori-Bakhtyari, Shal, Ghezel, and Afshari sheep breeds
title_fullStr Variant <i>GDF9</i> mRNA is likely not the main cause of larger litter size in Iranian Lori-Bakhtyari, Shal, Ghezel, and Afshari sheep breeds
title_full_unstemmed Variant <i>GDF9</i> mRNA is likely not the main cause of larger litter size in Iranian Lori-Bakhtyari, Shal, Ghezel, and Afshari sheep breeds
title_sort variant <i>gdf9</i> mrna is likely not the main cause of larger litter size in iranian lori-bakhtyari, shal, ghezel, and afshari sheep breeds
publisher Copernicus Publications
series Archives Animal Breeding
issn 0003-9438
2363-9822
publishDate 2017-05-01
description This study was carried out to screen the <i>GDF9</i> gene and evaluate the polymorphism effect on litter size of four Iranian sheep breeds using the PCR-RFLP and PCR-SSCP methods. First, sequencing of the <i>GDF9</i> gene in 16 twin-birth, 4 triplet-birth, and 2 infertile ewes showed that, in addition to G2, G3, G4, G5, and G6 mutations that have been previously reported in other breeds, a new G0 mutation, called C25T, exists in the <i>GDF9</i> sequence of 1 out of 22 ewes and causes L9F substitution in the signal peptide region. None of the triplet-birth or infertile ewes carried G1, G4, G7, FecGE, G8, or FecGT mutations. In the second experiment, a large dataset was used: 605 individuals including 496 ewes (145 Afshari, 54 Shal, 126 Ghezel, and 171 Lori-Bakhtyari sheep), and 109 rams (26 Afshari, 23 Shal, 10 Ghezel, and 50 Lori-Bakhtyari sheep. There were no sheep carrying the G7, G8, or Thoka mutations. Among all 109 rams that were used in this study, none of them were homozygous for the G1 mutation. Moreover, abundance of heterozygote rams (G1/G+) varied from 0.0 (Afshari) to 28.6 % (Lori-Bakhtyari and Ghezel). The highest and the lowest frequencies of the G4 mutation were 30.6 and 3.0 % in Shal and Afshari breeds, respectively. Moreover, G4 abundance varied from 0.0 to 42.3 %, from 3.0 to 26.9, and from 3.0 to 30.6 % in rams, ewes, and overall, respectively. There was a significant difference in the abundance of G1 and G4 mutations between breeds. However, neither the G1 nor the G4 mutation was associated with litter size in Afshari, Ghezel, Lori-Bakhtyari, or Shal sheep breeds. In conclusion, the results of this study showed that <i>GDF9</i> G1 and G4 mutations are not the reason for higher litter size in Iranian sheep. Moreover, the <i>GDF9</i> G0 and G6 mutations do not cause triplet births or infertility in Iranian ewes. Therefore, it is unlikely that variant <i>GDF9</i> mRNA induces larger litter size or infertility in Iranian ewes.
url http://www.arch-anim-breed.net/60/119/2017/aab-60-119-2017.pdf
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