Association of Single Nucleotide Polymorphism in Bone Morphogenetic Protein Receptor 1B (BMPR-1B) Gene with Growth Traits in Chicken

Büyüme özellikleri çok sayıda genin kontrolü altındadır. İlgili genlerdeki genetik bilgiyi anlamak, marker-destekli seleksiyon yoluyla seçim ve üreme sürecinde yardımcı olur. Bu çalışmanın amacı, tavuklarda BMPR-1B genindeki A287G SNP ile büyüme özellikleri arasındaki ilişkiyi araştırmaktır. PCR-RFLP tekniği kullanılarak, 240 bireyde bir tek nükleotid polimorfizmi tespit edildi ve sekanslama ile doğrulandı. Allellik ve genotipik frekanslar Ki-kare testi kullanılarak karşılaştırıldı. Her polimorfizm genotipi ve özellikler arasındaki ilişkiler SAS istatistiksel yazılımının Genel Lineer Modeli kullanılarak analiz edildi. Fayoumi ve Rhold Adası Kırmızı tavuklarında üç genotipi (AA, AG ve GG) saptandı. Sıralama, genotip GG'ye kıyasla genotip AA'da bir mutasyon (287 A->G) olduğunu gösterdi. BMPR1B geninin A287G SNP'si, vücut ağırlığı ile 2. (P=0.022), 3. (P=0.034), 4. (P=0.011), 5. (P=0.035), 6. (P=0.001), 7. (P=0.008) ve 8. haftalarda (P=0.016) önemli ölçüde ilişkili idi. Sonuç olarak, BMPR-1B geni tavuklarda vücut ağırlığı ile ilişkili olabilir ve Markör Destekli Seçim programında tavukların büyüme performansını artırmak için dikkate alınabilir

Tavuklarda Kemik Morfogenetik Protein Reseptörü 1B (BMPR-1B) Genindeki Tek Nükleotid Polimorfizmi ile Büyüme Özellikleri Arasındaki İlişki

Growth traits are under the control of multiple genes. Understanding the genetic information of related genes is helpful for the selection and breeding course through marker assisted selection. The aim of the current study was to investigate the association of A287G SNP in BMPR-1B gene with growth traits in chicken. A single nucleotide polymorphism was identified in 240 individuals using the PCR-RFLP technique and confirmed by sequencing. The allelic and genotypic frequencies were compared, using the Chisquared test. Associations between the genotype of each polymorphism and the traits were analyzed using the General Linear Model of statistical software SAS. Three genotypes (AA, AG and GG) were detected in Fayoumi and Rhold Island Red chicken. Sequencing revealed one mutation (287 A->G) in the genotype AA in comparison to the genotype GG. The A287G SNP of BMPR-1B gene was associated significantly with body weight at 2nd (P=0.022), 3rd (P=0.034), 4th (P=0.011), 5th (P=0.035), 6th (P=0.001), 7th (P=0.008) and 8th(P=0.016) week of age. In conclusion, BMPR-1B gene may be associated with body weight in chicken and may be considered in Marker Assisted Selection program to improve chicken growth performance

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  • Ikeobi CON, Woolliams JA, Morrice DR, Law A, Windso D, Burt DW, Hocking PM: Quantitative trait loci affecting fatness in the chicken. Anim Genet, 33, 428-435, 2002. DOI: 10.1046/j.1365-2052.2002.00911.x
  • Kim TH, Choi BH, Lee HK, Park HS, Lee HY, Yoon DH, Lee JW, Jeon GJ, Cheong IC, Oh SJ, Han JY: Identification of quantitative traits loci (QTL) affecting growth traits in pigs. Asian Australas J Anim Sci, 18, 1524- , 2005. DOI: 10.5713/ajas.2005.1524
  • Li H, Deeb N, Zhou H, Mitchell AD, Ashwell CM, Lamont SJ: Chicken quantitative trait loci for growth and body composition associated with transforming growth factor-? genes. Poult Sci, 82, 347-356, 2003. DOI: 1093/ps/82.3.347
  • Jiang YL, Fan XZ, Lu ZX, Tang H, Xu JQ, Du LX: Detection of A->881G mutation in tyrosinase gene and associations with the Black ear Coat Color in rabbits. Asian-Australas J Anim Sci, 15, 1395-1397, DOI: 10.5713/ajas.2002.1395
  • Yan B, Deng X, Fei J, Hu X, Wu C, Li N: Single nucleotide polymorphism analysis in chicken growth hormone gene and its associations with growth and carcass traits. Chinese Sci Bull, 48, 1561-1564, 2003. DOI: 1007/BF03183961
  • Zhang BZ, Lei MG, Deng CY, Xiong YH, Zuo B, Li FE: Association between PCR-RFLP polymorphism of the fifth intron in lipoprotein lipase gene and productive traits in pig resource family. Asian Australas J Anim Sci, 18, 458-462, 2005. DOI: 10.5713/ajas.2005.458
  • Meng H, Zhao JG, Li ZH, Li H: Single nucleotide polymorphism on peroxisome proliferators-activated receptor genes associated with fatness traits in chicken. Asian-Australas J Anim Sci, 18, 1221-1225, 2005. DOI: 10.5713/ajas.2005.1221
  • Hossary MA, Galal ESE: Improvement and adaptation of the Fayoumi chickens. Anim Genet Resour, 14, 33-39, 1994. DOI: 10.1017/ S1014233900000328
  • Ashraf M, Mahmood S, Ahmed F: Comparative reproductive efficiency and egg characteristics of Lyallpur silver Black and Rhode Island Red breeds of poultry. Int J Agric Biol, 5, 449-451, 2003.
  • Kulibaba RA, Podstreshnyi AP: Prolactin and growth hormone gene polymorphisms in chicken lines of Ukrainian selection. Cytol Genet, 46, 395, 2012.
  • Fang X, Xu H, Zhang C, Chen H, Hu X, Gao X, Gu C, Yue W: Polymorphism in BMP4 gene and its association with growth traits in goats. Mol Biol Rep, 36, 1339-1344, 2009. DOI: 10.1007/s11033-008- 1
  • Monget P, Fabre S, Mulsant P, Lecerf F, Elsen JM, Mazerbourg S, Pisselet C, Monniaux D: Regulation of ovarian folliculogenesis by IGF and BMP system in domestic animals. Domest Anim Endocrinol, 23, 139- , 2002. DOI: 10.1016/S0739-7240(02)00152-2
  • Nishii N, Arai M, Yanai N, Togari A, Nakabayashi T: Effect of bone morphogenetic protein-2 (BMP-2) or troglitazone, as an inducer of osteogenic cells or adipocytes, on differentiation of a bone marrow mesenchymal progenitor cell line established from temperature-sensitive (ts) simian virus (SV) 40 T-antigen gene transgenic mice. Biol Pharm Bull, ,10-17, 2009.
  • Seol YJ, Kim KH, Park YJ, Lee YM, Ku Y, Rhyu IC, Lee SJ, Han SB, Chung CP: Osteogenic effects of bone-morphogenetic-protein-2 plasmid gene transfer. Biotechnol Appl Biochem, 49, 85-96, 2008. DOI: 1042/BA20060247
  • Monika M, Krzysztof M, Daniel L, Anna S, Agnieszka ?: Static magnetic field enhances synthesis and secretion of membrane-derived microvesicles (MVs) rich in VEGF and BMP-2 in equine adipose-derived stromal cells (EqASCs) - A new approach in veterinary regenerative medicine. In Vitro Cell Dev Biol Anim, 51, 230-240, 2015. DOI: 10.1007/ s11626-014-9828-0
  • Souza CJH, MacDougall C, Campbell BK, McNeilly AS, Baird DT: The Booroola (FecB) phenotype is associated with a mutation in the bone morphogenetic receptor type 1B (BMPR1B) gene. J Endocrinol, 169, R1-R6, Onagbesan OM, Bruggeman V, Van As P, Tona K, Williams J, Decuypere E: BMPs and BMPRs in chicken ovary and effects of BMP-4 and 7 on granulosa cell proliferation and progesterone production in vitro. Am J Physiol Endocrinol Metabol, 285, 973-83, 2003.
  • Zhang NB, Tang H, Kang L, Ma YH, Cao DG, Lu Y, Hou M, Jiang YL: Associations of single nucleotide polymorphisms in BMPR-1B gene with egg production in a synthetic broiler line. Asian Australas J Anim Sci, 21, 632, 2008.
  • SAS Institute: SAS/STAT users guide. SAS Institute Inc., Cary, NC, USA. Scanes CG, Harvey S, Marsh JA, King DB: Hormones and growth in poultry. Poult Sci, 63, 2062-2074, 1984. DOI: 10.3382/ps.0632062
  • Deeb N, Lamont SJ: Genetic architecture of growth and body composition in unique chicken population. J Hered, 93, 107-118, 2002. DOI: 10.1093/jhered/93.2.107
  • Rothschild MF, Soller M: Candidate gene analysis to detect genes controlling traits of economic importance in domestic livestock. Prob Newslet Agric Genom, 8, 13-20, 1997.
  • Guimarães EP, Ruane J, Scherf BD, Sonnino A, Dargie JD: Marker- Assisted Selection. Food and Agricultural Organization of the United Nations, Rome, Italy, 427-440, 2007.
  • Niknafs S, Javaremi AN, Sadeghi M: Single nucleotide poly- morphisms in BMPR-1B and STAT5B genes and their association with growth and reproductive traits in chicken. Songklanakarin J Sci Technol, , 137-142, 2014.
  • Wilson T, Wu XY, Juengel JL, Ross IK, Lumsden JM, Lord EA, Dodds KG, Walling GA, McEwan JC, O'Connell AR, McNatty KP, Montgomery GW: Highly prolific Booroola sheep have a mutation in the intracellular kinase domain of bone morphogenetic protein IB receptor (ALK-6) that is expressed in both oocytes and granulosa cells. Biol Reprod, 64, 1225- , 2001.
  • Sumitomo S, Saito T, Nohno T: A new receptor protein kinase from chick embryo related to type II receptor for TGF-beta. DNA Seq, 3, 297-302, Lim Y, Cho G, Minarcik J, Golden J: Altered BMP signaling disrupts chick diencephalic development. Mech Dev, 122, 603-620, 2005. DOI: 1016/j.mod.2004.12.001
  • Derynck R, Zhang YE: Smad-dependent and Smad independent pathways in TGF-beta family signaling. Nature, 425, 577-584, 2003. DOI: 1038/nature02006
Kafkas Üniversitesi Veteriner Fakültesi Dergisi-Cover
  • ISSN: 1300-6045
  • Yayın Aralığı: Yılda 6 Sayı
  • Başlangıç: 1995
  • Yayıncı: Kafkas Üniv. Veteriner Fak.