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Polymorphism and Bioinformatics Analysis of Growth Differentiation Factor 9 Gene in Lori Sheep


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Abdoli R., Zamani P., Deljou A., Rezvan H. (2013). Association of BMPR-1B and GDF9 genes polymorphisms and secondary protein structure changes with reproduction traits in Mehraban ewes. Gene, 524: 296-303.Search in Google Scholar

Barzegari A., Atashpaz S., Ghabili K, Nemati Z., Rustaei M., Azarbaij ani R. (2010). Polymorphisms in GDF9 and BMP15 associated with fertility and ovulation rate in Moghani and Ghezel sheep in Iran. Reprod. Dom. Anim., 45: 666-669.Search in Google Scholar

Bodensteiner K.J., Clay C.M., Moeller C.L., Sawyer H.R. (1999). Molecular cloning of the ovine growth differentiation factor 9 gene and expression of growth differentiation factor 9 in ovine and bovine ovaries. Biol. Reprod., 60: 381-386.Search in Google Scholar

Davis G.H. (2004). Fecundity genes in sheep. Anim. Reprod. Sci., 83: 247-253.Search in Google Scholar

Eghbalsaied S., Ghaedi K, Shahmoradi S., Pirestani A., Amini H., Saiedi T., Nicol L., McNeilly A. (2012). Presence of SNPs in GDF9 mRNA of Iranian Afshari sheep. Int. J. Fertil. Steril., 5: 225-230.Search in Google Scholar

Farajzadeh M., Rahimi G., Sayahzadeh H., Dehnad A., Elyasi G., Javanmard A. (2005). Molecular analysis of ovine oocyte-derived growth factor in Iranian Zel sheep breed by using PCR-RFLP. Proc. 4th National Biotechnology Congress, Kerman, Islamic Republic of Iran.Search in Google Scholar

Galloway S.M., McNatty K.P., Cambridge L.M., Laitinen M.P.E., Juengel J.L., Jokiranta S., McLaren R.J., Luiro K, Dodds K.G., Montgomery G.W. (2000). Mutations in an oocyte derived growth factor gene (BMP15) cause increased ovulation rate and infertility in a dosage-sensitive manner. Nat. Genet., 25: 279-283.Search in Google Scholar

GhaderiA., Beigi Nasiri M.T., M irz ad eh K.H., Fayazi J. Sadr A.S. (2010). Identifica­tion of the GDF9 mutation in two sheep breeds by using polymerase chain reaction-restriction frag­ment length polymorphism (PCR-RFLP) technique. Afric. J. Biotech., 9: 8020-8022.Search in Google Scholar

Hanrahan J.P., Gregan S.M., Mulsant P., Mullen M. Davis G.H., Powell R. Gal­loway S. (2004). Mutations in the genes for oocyte derived growth factors GDF9 and BMP15 are associated with both increased ovulation rate and sterility in Cambridge and Belclare sheep (Ovis aries). Biol. Reprod., 70: 900-909.Search in Google Scholar

Juengel J.L., Bibby A.H., Reader K.L., Stan L. Quirke L.D., Haydon L.J., McNat- ty K.P. (2004). The role of transforming growth factor-beta (TGF-beta) during ovarian follicular development in sheep. Reprod. Biol. Endocrine., 2: 78.Search in Google Scholar

Kasiriyan M.M., Hafezian S.H., Hassani N. (2010). Genetic polymorphism BMP15 and GDF9 genes in Sangsari sheep of Iran. Inter. J. Genet. Mol. Biol., 3: 31-34.Search in Google Scholar

Knight P.G., Glister C. (2006). Focus on TGF-P signalling: TGF-P superfamily members and ovarian follicle development. Reprod., 132: 191-206.Search in Google Scholar

Moradband F., Rahimi G., Gholizadeh M. (2011). Association of polymorphism in fecun­dity genes of GDF9, BMP15 and BMPR-1B with litter size in Iranian Baluchi sheep. Asian-Aust. J. Anim. Sci., 9: 1179-1183.Search in Google Scholar

Nicol L., Bishop S.C., Pong-Wong R., Bendixen C., Holm L-E., Rhind S.M., Mc­Neil l y S.A. (2009). Homozygosity for a single base-pair mutation in the oocyte specific GDF9 gene results in sterility in Thoka sheep. Reproduction, 138: 921-933.Search in Google Scholar

Pirovano W., Heringa J. (2010). Protein secondary structure prediction. Methods. Mol. Biol., 609: 327-48.Search in Google Scholar

Polley S, De S., Brahma B., Mukherjee A., Vinesh P.V., B ataby al S., Ar or a J.S., Pan S., Samanta A.K., Datta T. K., Goswami S.L. (2010). Polymorphism of BMPR1B, BMP15 and GDF9 fecundity genes in prolific Garole sheep. Trop. Anim. Health. Prod., 85: 122-129.Search in Google Scholar

Rozen S., Skaletsky H.J. (1998). Primer 3. Code available at <http://www.Genome.wi.mit.edu/genomesoftware/other/primer3.html.Search in Google Scholar

Sanguinetti C.J., Dias Neto E., Simpson A.J.G. (1994). Rapid silver staining and recovery of PCR products separated on polyacrylamide gels. Bio. Techniques., 17: 914-921.Search in Google Scholar

Silva B.D. Castro E.A. Souza CJ. Paiva S.R. Sartori R. Franco M.M. Azevedo H.C., Silva T.A.S.N., Vieira A.M.C., Neves J.P., Melo E.O. (2011). A new polymor­phism in the Growth and Differentiation Factor 9 (GDF9) gene is associated with increased ovula­tion rate and prolificacy in homozygous sheep. Anim. Genet., 42: 89-92.10.1111/j.1365-2052.2010.02078.x20528846Search in Google Scholar

Souza C.J.L. MacDougall C.Campbell B.K.McNeilly A.S. Baird D.T. (2001). The Booroola (FecB) phenotype is associated with a mutation in the bone morphogenetic receptor type 1 B (BMPR1B) gene. J. Endocrinol., 169: R1-R6.10.1677/joe.0.169r00111312159Search in Google Scholar

Yu T.P., Tuggle C.K., Schmitz C.B., Rothschild M.F. (1995). Association of PIT1 polymor­phisms with growth and carcass traits in pig. J. Anim. Sci., 73: 1282-1288. Search in Google Scholar

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Biologie, Biotechnologie, Zoologie, Medizin, Veterinärmedizin