Araştırma Makalesi
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Comparison of Allele Frequencies of LAP3 and MC4R Gene Polymorphisms in Berrichon Du Cher, Ile De France, and Karacabey Merino Sheep

Yıl 2025, Cilt: 18 Sayı: 4, 349 - 356, 24.12.2025

Öz

Meat production yield and quality are common objectives for the Berrichon Du Cher (BDC), Ile De France (IDF), and Karacabey Merino (KM) sheep, which are bred for slaughter. Growth performance has a crucial role in these traits. LAP3 and MC4R genes are thought to influence growth and development in sheep by affecting embryonic cell functions, adult height, or body weights at different ages. The polymorphisms of the LAP3 and MC4R genes have been studied in cattle and razor clams, but only to a limited extent in in sheep breeds. Moreover, the novel SNP of target genes have not been studied in meat sheep such as BDC, IDF, and KM. Thus, the aim of this study is to compare the allele and genotype frequencies of LAP3 and MC4R genes in BDC, IDF, and KM sheep. The BDC (n=48), IDF (n=58), KM(n=54) sheep were genotyped by PCR- RFLP method. Three different breeds of animals were compared for the LAP3 gene; differences between groups were assessed using chi-square test. According to the results, the genotype frequencies for g.232C>G of the LAP3 gene were calculated as 54.17% and 45.83% for GC and GG, respectively, in BDC. Similarly, the GC (57.41%) and GG (42.59%) genotypes were detected in KM. However, only one genotype (GG) was found in IDF for the LAP3 gene. Similarly, all investigated flocks were identified as GG in terms of the MC4R gene. As a consequence, these findings could be a source for further projects. Expanding the study by using different gene pools in terms of the investigated races should be useful for identifying the genetic structure of the flocks in detailed.

Etik Beyan

This research was approved by the Animal Experiments Local Ethics Committee of Uludag University (Approval number: 2021-01/03).

Teşekkür

We would like to express our gratitude to ACE Hayvancılık A.Ş. for its contribution to the study in terms of providing the study material.

Kaynakça

  • Achkakanova, E., & Staykova, G. (2019). Evaluation of the main productive traits of Ile de France sheep in Bulgaria. Bulgarian Journal of Agricultural Science, 25.
  • Akçapınar, H. (1983). Comparison of German Meat Merino and Karacabey Merino in terms of live weight body structure and fleece yield. Journal of Ankara University Faculty of Veterinary Medicine, 30(1), 201–215.
  • Baelden, M., Tiphine, L., Poivey, J. P., Bouix, J., Bibé, B., & Robert-Granié, C. (2005). Estimation of genetic parameters for litter size after natural and hormone-induced oestrus in sheep. Livestock Production Science, 97, 275–281.
  • Bonev, G. (2012). Effect of melatonin treatment on fertility, fecundity, litter size, and sex ratio in ewes. Agricultural Science and Technology, 2, 113–116.
  • Borzan, M. M., Cimpean, A., Pusta, D., & Pasca, I. (2019). Body weight evolution of Tsigai and Tsigai and Berrichon du Cher crossbred lambs. Bucharest Chemistry Magazine, 8, 70.
  • Botstein, D., White, R. L., Skolnick, M., & Davis, R. W. (1980). Construction of a genetic linkage map in man using restriction fragment length polymorphisms. American Journal of Human Genetics, 32, 314.
  • Burgos, C., Carrodeguas, J. A., Moreno, C., Altarriba, J., Tarrafeta, L., & Barcelona, J. A. (2006). Allelic incidence in several pig breeds of a missense variant of pig melanocortin-4 receptor (MC4R) gene associated with carcass and productive traits; its relation to IGF2 genotype. Meat Science, 73, 144–150.
  • Ciani, E., Lasagna, E., D’Andrea, M., Alloggio, I., Marroni, F., & Cecchi, F. (2015). Merino and Merino-derived sheep breeds: A genome-wide intercontinental study. Genetics Selection Evolution, 47, 1–12.
  • Czub, G., Niznikowski, R., & Villavicencio, A. M. (2010). Influence of age and sex on body conformation of alpacas bred in Poland. Annals of Warsaw University of Life Sciences, Animal Science, 47, 5–9.
  • Dawud, H. H., Al-Shuhaib, M. B. S., & Al-Thuwaini, T. M. (2019). MC4R gene polymorphism associated with hematology parameters of Awassi and Arabi Iraqi sheep. Euphrates Journal of Agricultural Science, 11, 4.
  • Demirsoy, Ş., & Akçapınar, H. (1997). Kuzularda büyümeyi etkileyen çevresel faktörlerin kovaryans analizi ile incelenmesi. Lalahan Hayvancılık Araştırma Enstitüsü Dergisi, 37, 37–55.
  • Ekiz, B., Ozcan, M., Yilmaz, A., & Ceyhan, A. (2005). Estimates of phenotypic and genetic parameters for ewe productivity traits of Turkish Merino (Karacabey Merino) sheep. Turkish Journal of Veterinary and Animal Sciences, 29, 557–564.
  • Fang, C., Zhang, J., Yang, H., Peng, L., Wang, K., & Wang, Y. (2019). Leucine aminopeptidase 3 promotes migration and invasion of breast cancer cells through upregulation of fascin and matrix metalloproteinases-2/9 expression. Journal of Cellular Biochemistry, 120, 3611–3620.
  • Ge, L., Su, P., Wang, S., Gu, Y., Cao, X., Lv, X., & Sun, W. (2022). New insight into the role of the leucine aminopeptidase 3 (LAP3) in cell proliferation and myogenic differentiation in sheep embryonic myoblasts. Genes, 13, 1438.
  • Gorlov, I. F., Shirokova, N. V., Anisimova, E. Y., Slozhenkina, M. I., Kolosov, Y. A., & Natyrov, A. K. (2021). MC4R gene polymorphism and its association with meat traits of Karachai sheep grown in the Russian Federation. Journal of Applied Animal Research, 49, 68–74.
  • Green, M., & Sambrook, J. (2012). Analysis of DNA. In Molecular Cloning: A Laboratory Manual (4th ed., pp. 350–370). Cold Spring Harbor Laboratory Press.
  • Hatziminaoglou, J., & Boyazoglu, J. (2011). Sheep: Multipurpose management. In Encyclopedia of Dairy Sciences (pp. 875–881).
  • Heinzen, B. C., Weber, S. H., Maia, D., & Sotomaior, C. S. (2023). Productive performance of lambs born in different seasons of the year. Open Veterinary Journal, 3, 932–941.
  • Ilisiu, E., Galatan, A., Anghel, A., Nadolu, D., & Chirtes, I. D. (2020). Growth performance of simple-and triracial crossbred lambs and ewes productivity of R1 German Blackface × Tsigai crossed with French meat breed. Animal Science, 63, 62.
  • Ito, T., Nomura, S., Okada, M., Katsumata, Y., Iwase, A., & Kikkawa, F. (2001). Transcriptional regulation of human placental leucine aminopeptidase/oxytocinase gene. Basic Science of Reproductive Medicine, 7, 887–894.
  • Ivanova, T., & Raicheva, E. (2015). Weight growth of Ile de France lambs according to the genealogy line. Bulgarian Journal of Agricultural Science, 21, 409–412.
  • Koyuncu, M., & Uzun, S. K. (2009). Growth performance of Karacabey Merino and Kivircik lambs under semi-intensive management in Turkey. Small Ruminant Research, 83, 64–66.
  • La, Y., Zhang, X., Li, F., Zhang, D., Li, C., & Mo, F. (2019). Molecular characterization and expression of SPP1, LAP3, and LCORL and their association with growth traits in sheep. Genes, 10, 616.
  • Moreira, R. P., Pedrosa, V. B., Falcão, P. R., Sieklicki, M. F., Rocha, C. G., & Santos, I. C. (2016). Curvas de crescimento de fêmeas da raça Ile de France criadas em confinamento. Semina: Ciências Agrárias, 37, 303–310.
  • Nei, M., & Roychoudhury, A. K. (1974). Sampling variances of heterozygosity and genetic distance. Genetics, 76, 379–990.
  • Ozder, M., Sezenler, T., Refik, A., & Ceyhan, A. (2009). Genetic and non-genetic parameter estimates for growth traits in Turkish Merino lambs. Journal of Animal and Veterinary Advances, 8, 1729–1734.
  • Piorkowska, K., Tyra, M., Rogoz, M., Ropka-Molik, K., Oczkowicz, M., & Rozycki, M. (2010). Association of the melanocortin-4 receptor (MC4R) with feed intake, growth, fatness, and carcass composition in pigs raised in Poland. Meat Science, 85, 297–301.
  • Polatoglu, M. G. (2019). Cumhuriyet Dönemi’nde hayvancılığın sanayiye tatbikine bir örnek: Merinos yetiştiriciliği. Atatürk Araştırma Merkezi Dergisi, 35, 585–620.
  • Raicheva, E., Ivanova, T., Kistanova, E., & Metodiev, N. (2007). Score estimation of gain of female lambs from Ile de France breed in Bulgaria. CABI Digital, 78, 82.
  • Sezenler, T., Soysal, D., Yıldırır, M., Yüksel, M. A., Ceyhan, A., & Yaman, Y. (2013). Karacabey Merinos koyunların kuzu verimi ve kuzularda büyüme performansı üzerine bazı çevre faktörlerinin etkisi. Tekirdağ Ziraat Fakültesi Dergisi, 10, 40–47.
  • Shan, H., Song, X., Cao, Y., Xiong, P., Wu, J., & Jiang, J. (2020). Association of the melanocortin 4 receptor (MC4R) gene polymorphism with growth traits of Hu sheep. Small Ruminant Research, 192, 106206.
  • Shishay, G., Liu, G., Jiang, X., Yu, Y., Teketay, W., & Du, D. (2019). Variation in the promoter region of the MC4R gene elucidates the association of body measurement traits in Hu sheep. International Journal of Molecular Sciences, 20, 240.
  • Slavova, S., & Achkakanova, E. (2021). Study on some economic indicators, characterizing the production efficiency of raising Ile de France sheep I. Comparative analysis of economic results in different production units. Bulgarian Journal of Agricultural Science, 27, 5.
  • Song, X. M., Jiang, J. F., Zhang, G. Z., Shi, F. X., & Jiang, Y. Q. (2012). DNA polymorphisms of the Hu sheep melanocortin-4 receptor gene associated with birth weight and 45-day weaning weight. Genetics and Molecular Research, 11, 4432–4441.
  • Sonmez, R., Kaymakcı, M., Eliçin, A., Tuncel, E., Wassmuth, R., & Taskin, T. (2009). Türkiye koyun ıslahı çalışmaları. Uludağ Üniversitesi Ziraat Fakültesi Dergisi, 23, 43–65.
  • Sundaramurthy, D., Campbell, D. A., Leek, J. P., Markham, A. F., & Pieri, L. F. (1998). Assignment of the melanocortin 4 receptor (MC4R) gene to human chromosome band 18q22 by in situ hybridisation and radiation hybrid mapping. Cytogenetics and Cell Genetics, 82.
  • Wang, Y., Wang, C., Zhang, J., Meng, C., Zhang, X., & Wang, Z. (2015). Three novel MC4R SNPs associated with growth traits in Hu sheep and East Friesian × Hu crossbred sheep. Small Ruminant Research, 125, 26–33.
  • Xiang, Z., Litherland, S. A., Sorensen, N. B., Proneth, B., Wood, M. S., & Shaw, A. M. (2006). Pharmacological characterization of 40 human melanocortin-4 receptor polymorphisms with the endogenous proopiomelanocortin-derived agonists and the agouti-related protein (AGRP) antagonist. Biochemistry, 45, 7277–7288.
  • Yao, H., Liu, C., Lin, D., Liu, S., Lin, Z., & Dong, Y. (2020). Polymorphisms of LAP3 gene and their association with the growth traits in the razor clam Sinonovacula constricta. Molecular Biology Reports, 47, 1257–1264.
  • Yeh, F. C., Yang, R. C., Boyle, T. J., Ye, Z., Xiyan, J. M., & Yang, R. (2020). POPGENE 32, Microsoft Windows-based freeware for population genetic analysis. Molecular Biology and Biotechnology Center, University of Alberta, Edmonton.
  • Yilmaz, O., Wilson, R. T., Cengiz, F., & Ertugrul, M. (2012). The farm animal genetic resources of Turkey: Sheep – II – Crossbreed and extinct genotypes/breeds. Bitlis Eren University Journal of Science and Technology, 2, 38–43.
  • Zhao, X., Cao, S., & Wang, J. (2018). Association analysis of MC4R gene polymorphisms and genotype combination with growth traits of Tibetan sheep (Ovis aries). Journal of Agricultural Biotechnology, 26, 429–436.
  • Zheng, X., Ju, Z., Wang, J., Li, Q., Huang, J., & Zhang, A. (2011). Single nucleotide polymorphisms, haplotypes and combined genotypes of LAP3 gene in bovine and their association with milk production traits. Molecular Biology Reports, 38, 4053–4061.
  • Zuo, B., Liu, G., Peng, Y., Qian, H., Liu, J., & Jiang, X. (2014). Melanocortin-4 receptor (MC4R) polymorphisms are associated with growth and meat quality traits in sheep. Molecular Biology Reports, 41, 6967–6974.

Berrichon Du Cher, Ile De France ve Karacabey Merinosu Koyunlarında LAP3 ve MC4R Gen Polimorfizmlerine İlişkin Allel Frekanslarının Karşılaştırılması

Yıl 2025, Cilt: 18 Sayı: 4, 349 - 356, 24.12.2025

Öz

Et üretimi ile birlikte verim ve kalite, besi amaçlı yetiştirilen Berrichon Du Cher (BDC), Ile De France (IDF) ve Karacabey Merinosu (KM) koyunları için ortak bir hedeftir. Büyüme performansı, bu özellikte kritik bir rol oynamaktadır. LAP3 ve MC4R genlerinin, embriyonik hücre fonksiyonlarını, yetişkinlikteki boy uzunluğunu veya farklı yaşlardaki vücut ağırlıklarını etkileyerek koyunlarda büyüme ve gelişimi etkilediği düşünülmektedir. LAP3 ve MC4R gen polimorfizmleri, sığır ve denizçakısı (ustura istiridye) türlerinde araştırılmış olup, koyun ırklarında bu araştırmalar sınırlı kalmıştır. Ayrıca, bu genlerin yeni SNP’leri etçi koyunlar olan BDC, IDF ve KM’de henüz çalışılmamıştır. Bu nedenle, çalışmanın amacı, BDC, IDF ve KM koyunlarında LAP3 ve MC4R genlerinin allel ve genotip frekanslarını karşılaştırmaktır. BDC (n=48), IDF (n=58) ve KM (n=54) genotiplendirmesi PCR-RFLP yöntemiyle yapılmıştır. Üç farklı ırk hayvan, LAP3 geni açısından karşılaştırıldı; gruplar arasındaki farklar ki-kare kullanılarak değerlendirildi. Elde edilen bulgulara göre; LAP3 geninin g.232C>G polimorfizmi için BDC’de genotip frekansları GC ve GG genotipleri sırasıyla % 54,17 ve % 45,83 olarak hesaplanmıştır. Benzer şekilde, KM’de GC (% 57,41) ve GG (% 42,59) genotipleri tespit edilmiştir. Ancak, IDF koyunlarında sadece bir genotip (GG) belirlenmiştir. Benzer şekilde, incelenen tüm ırklar MC4R geni açısından GG genotipi ile tanımlanmıştır. Sonuç olarak, elde edilen sonuçların ilerideki çalışmalara temel oluşturacağı düşünülmektedir. Araştırmanın, incelenen ırklar açısından farklı gen havuzları kullanılarak genişletilmesi, sürülerin genetik yapısının daha ayrıntılı belirlenmesi açısından faydalı olacaktır.

Kaynakça

  • Achkakanova, E., & Staykova, G. (2019). Evaluation of the main productive traits of Ile de France sheep in Bulgaria. Bulgarian Journal of Agricultural Science, 25.
  • Akçapınar, H. (1983). Comparison of German Meat Merino and Karacabey Merino in terms of live weight body structure and fleece yield. Journal of Ankara University Faculty of Veterinary Medicine, 30(1), 201–215.
  • Baelden, M., Tiphine, L., Poivey, J. P., Bouix, J., Bibé, B., & Robert-Granié, C. (2005). Estimation of genetic parameters for litter size after natural and hormone-induced oestrus in sheep. Livestock Production Science, 97, 275–281.
  • Bonev, G. (2012). Effect of melatonin treatment on fertility, fecundity, litter size, and sex ratio in ewes. Agricultural Science and Technology, 2, 113–116.
  • Borzan, M. M., Cimpean, A., Pusta, D., & Pasca, I. (2019). Body weight evolution of Tsigai and Tsigai and Berrichon du Cher crossbred lambs. Bucharest Chemistry Magazine, 8, 70.
  • Botstein, D., White, R. L., Skolnick, M., & Davis, R. W. (1980). Construction of a genetic linkage map in man using restriction fragment length polymorphisms. American Journal of Human Genetics, 32, 314.
  • Burgos, C., Carrodeguas, J. A., Moreno, C., Altarriba, J., Tarrafeta, L., & Barcelona, J. A. (2006). Allelic incidence in several pig breeds of a missense variant of pig melanocortin-4 receptor (MC4R) gene associated with carcass and productive traits; its relation to IGF2 genotype. Meat Science, 73, 144–150.
  • Ciani, E., Lasagna, E., D’Andrea, M., Alloggio, I., Marroni, F., & Cecchi, F. (2015). Merino and Merino-derived sheep breeds: A genome-wide intercontinental study. Genetics Selection Evolution, 47, 1–12.
  • Czub, G., Niznikowski, R., & Villavicencio, A. M. (2010). Influence of age and sex on body conformation of alpacas bred in Poland. Annals of Warsaw University of Life Sciences, Animal Science, 47, 5–9.
  • Dawud, H. H., Al-Shuhaib, M. B. S., & Al-Thuwaini, T. M. (2019). MC4R gene polymorphism associated with hematology parameters of Awassi and Arabi Iraqi sheep. Euphrates Journal of Agricultural Science, 11, 4.
  • Demirsoy, Ş., & Akçapınar, H. (1997). Kuzularda büyümeyi etkileyen çevresel faktörlerin kovaryans analizi ile incelenmesi. Lalahan Hayvancılık Araştırma Enstitüsü Dergisi, 37, 37–55.
  • Ekiz, B., Ozcan, M., Yilmaz, A., & Ceyhan, A. (2005). Estimates of phenotypic and genetic parameters for ewe productivity traits of Turkish Merino (Karacabey Merino) sheep. Turkish Journal of Veterinary and Animal Sciences, 29, 557–564.
  • Fang, C., Zhang, J., Yang, H., Peng, L., Wang, K., & Wang, Y. (2019). Leucine aminopeptidase 3 promotes migration and invasion of breast cancer cells through upregulation of fascin and matrix metalloproteinases-2/9 expression. Journal of Cellular Biochemistry, 120, 3611–3620.
  • Ge, L., Su, P., Wang, S., Gu, Y., Cao, X., Lv, X., & Sun, W. (2022). New insight into the role of the leucine aminopeptidase 3 (LAP3) in cell proliferation and myogenic differentiation in sheep embryonic myoblasts. Genes, 13, 1438.
  • Gorlov, I. F., Shirokova, N. V., Anisimova, E. Y., Slozhenkina, M. I., Kolosov, Y. A., & Natyrov, A. K. (2021). MC4R gene polymorphism and its association with meat traits of Karachai sheep grown in the Russian Federation. Journal of Applied Animal Research, 49, 68–74.
  • Green, M., & Sambrook, J. (2012). Analysis of DNA. In Molecular Cloning: A Laboratory Manual (4th ed., pp. 350–370). Cold Spring Harbor Laboratory Press.
  • Hatziminaoglou, J., & Boyazoglu, J. (2011). Sheep: Multipurpose management. In Encyclopedia of Dairy Sciences (pp. 875–881).
  • Heinzen, B. C., Weber, S. H., Maia, D., & Sotomaior, C. S. (2023). Productive performance of lambs born in different seasons of the year. Open Veterinary Journal, 3, 932–941.
  • Ilisiu, E., Galatan, A., Anghel, A., Nadolu, D., & Chirtes, I. D. (2020). Growth performance of simple-and triracial crossbred lambs and ewes productivity of R1 German Blackface × Tsigai crossed with French meat breed. Animal Science, 63, 62.
  • Ito, T., Nomura, S., Okada, M., Katsumata, Y., Iwase, A., & Kikkawa, F. (2001). Transcriptional regulation of human placental leucine aminopeptidase/oxytocinase gene. Basic Science of Reproductive Medicine, 7, 887–894.
  • Ivanova, T., & Raicheva, E. (2015). Weight growth of Ile de France lambs according to the genealogy line. Bulgarian Journal of Agricultural Science, 21, 409–412.
  • Koyuncu, M., & Uzun, S. K. (2009). Growth performance of Karacabey Merino and Kivircik lambs under semi-intensive management in Turkey. Small Ruminant Research, 83, 64–66.
  • La, Y., Zhang, X., Li, F., Zhang, D., Li, C., & Mo, F. (2019). Molecular characterization and expression of SPP1, LAP3, and LCORL and their association with growth traits in sheep. Genes, 10, 616.
  • Moreira, R. P., Pedrosa, V. B., Falcão, P. R., Sieklicki, M. F., Rocha, C. G., & Santos, I. C. (2016). Curvas de crescimento de fêmeas da raça Ile de France criadas em confinamento. Semina: Ciências Agrárias, 37, 303–310.
  • Nei, M., & Roychoudhury, A. K. (1974). Sampling variances of heterozygosity and genetic distance. Genetics, 76, 379–990.
  • Ozder, M., Sezenler, T., Refik, A., & Ceyhan, A. (2009). Genetic and non-genetic parameter estimates for growth traits in Turkish Merino lambs. Journal of Animal and Veterinary Advances, 8, 1729–1734.
  • Piorkowska, K., Tyra, M., Rogoz, M., Ropka-Molik, K., Oczkowicz, M., & Rozycki, M. (2010). Association of the melanocortin-4 receptor (MC4R) with feed intake, growth, fatness, and carcass composition in pigs raised in Poland. Meat Science, 85, 297–301.
  • Polatoglu, M. G. (2019). Cumhuriyet Dönemi’nde hayvancılığın sanayiye tatbikine bir örnek: Merinos yetiştiriciliği. Atatürk Araştırma Merkezi Dergisi, 35, 585–620.
  • Raicheva, E., Ivanova, T., Kistanova, E., & Metodiev, N. (2007). Score estimation of gain of female lambs from Ile de France breed in Bulgaria. CABI Digital, 78, 82.
  • Sezenler, T., Soysal, D., Yıldırır, M., Yüksel, M. A., Ceyhan, A., & Yaman, Y. (2013). Karacabey Merinos koyunların kuzu verimi ve kuzularda büyüme performansı üzerine bazı çevre faktörlerinin etkisi. Tekirdağ Ziraat Fakültesi Dergisi, 10, 40–47.
  • Shan, H., Song, X., Cao, Y., Xiong, P., Wu, J., & Jiang, J. (2020). Association of the melanocortin 4 receptor (MC4R) gene polymorphism with growth traits of Hu sheep. Small Ruminant Research, 192, 106206.
  • Shishay, G., Liu, G., Jiang, X., Yu, Y., Teketay, W., & Du, D. (2019). Variation in the promoter region of the MC4R gene elucidates the association of body measurement traits in Hu sheep. International Journal of Molecular Sciences, 20, 240.
  • Slavova, S., & Achkakanova, E. (2021). Study on some economic indicators, characterizing the production efficiency of raising Ile de France sheep I. Comparative analysis of economic results in different production units. Bulgarian Journal of Agricultural Science, 27, 5.
  • Song, X. M., Jiang, J. F., Zhang, G. Z., Shi, F. X., & Jiang, Y. Q. (2012). DNA polymorphisms of the Hu sheep melanocortin-4 receptor gene associated with birth weight and 45-day weaning weight. Genetics and Molecular Research, 11, 4432–4441.
  • Sonmez, R., Kaymakcı, M., Eliçin, A., Tuncel, E., Wassmuth, R., & Taskin, T. (2009). Türkiye koyun ıslahı çalışmaları. Uludağ Üniversitesi Ziraat Fakültesi Dergisi, 23, 43–65.
  • Sundaramurthy, D., Campbell, D. A., Leek, J. P., Markham, A. F., & Pieri, L. F. (1998). Assignment of the melanocortin 4 receptor (MC4R) gene to human chromosome band 18q22 by in situ hybridisation and radiation hybrid mapping. Cytogenetics and Cell Genetics, 82.
  • Wang, Y., Wang, C., Zhang, J., Meng, C., Zhang, X., & Wang, Z. (2015). Three novel MC4R SNPs associated with growth traits in Hu sheep and East Friesian × Hu crossbred sheep. Small Ruminant Research, 125, 26–33.
  • Xiang, Z., Litherland, S. A., Sorensen, N. B., Proneth, B., Wood, M. S., & Shaw, A. M. (2006). Pharmacological characterization of 40 human melanocortin-4 receptor polymorphisms with the endogenous proopiomelanocortin-derived agonists and the agouti-related protein (AGRP) antagonist. Biochemistry, 45, 7277–7288.
  • Yao, H., Liu, C., Lin, D., Liu, S., Lin, Z., & Dong, Y. (2020). Polymorphisms of LAP3 gene and their association with the growth traits in the razor clam Sinonovacula constricta. Molecular Biology Reports, 47, 1257–1264.
  • Yeh, F. C., Yang, R. C., Boyle, T. J., Ye, Z., Xiyan, J. M., & Yang, R. (2020). POPGENE 32, Microsoft Windows-based freeware for population genetic analysis. Molecular Biology and Biotechnology Center, University of Alberta, Edmonton.
  • Yilmaz, O., Wilson, R. T., Cengiz, F., & Ertugrul, M. (2012). The farm animal genetic resources of Turkey: Sheep – II – Crossbreed and extinct genotypes/breeds. Bitlis Eren University Journal of Science and Technology, 2, 38–43.
  • Zhao, X., Cao, S., & Wang, J. (2018). Association analysis of MC4R gene polymorphisms and genotype combination with growth traits of Tibetan sheep (Ovis aries). Journal of Agricultural Biotechnology, 26, 429–436.
  • Zheng, X., Ju, Z., Wang, J., Li, Q., Huang, J., & Zhang, A. (2011). Single nucleotide polymorphisms, haplotypes and combined genotypes of LAP3 gene in bovine and their association with milk production traits. Molecular Biology Reports, 38, 4053–4061.
  • Zuo, B., Liu, G., Peng, Y., Qian, H., Liu, J., & Jiang, X. (2014). Melanocortin-4 receptor (MC4R) polymorphisms are associated with growth and meat quality traits in sheep. Molecular Biology Reports, 41, 6967–6974.
Toplam 44 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Konular Zootekni, Genetik ve Biyoistatistik
Bölüm Araştırma Makalesi
Yazarlar

Deniz Dinçel 0000-0002-8015-9032

Emine Mutlu Bu kişi benim 0000-0002-6260-4497

Gönderilme Tarihi 24 Aralık 2024
Kabul Tarihi 18 Eylül 2025
Yayımlanma Tarihi 24 Aralık 2025
Yayımlandığı Sayı Yıl 2025 Cilt: 18 Sayı: 4

Kaynak Göster

APA Dinçel, D., & Mutlu, E. (2025). Comparison of Allele Frequencies of LAP3 and MC4R Gene Polymorphisms in Berrichon Du Cher, Ile De France, and Karacabey Merino Sheep. Kocatepe Veterinary Journal, 18(4), 349-356. https://doi.org/10.30607/kvj.1606689
AMA Dinçel D, Mutlu E. Comparison of Allele Frequencies of LAP3 and MC4R Gene Polymorphisms in Berrichon Du Cher, Ile De France, and Karacabey Merino Sheep. Kocatepe Veterinary Journal. Aralık 2025;18(4):349-356. doi:10.30607/kvj.1606689
Chicago Dinçel, Deniz, ve Emine Mutlu. “Comparison of Allele Frequencies of LAP3 and MC4R Gene Polymorphisms in Berrichon Du Cher, Ile De France, and Karacabey Merino Sheep”. Kocatepe Veterinary Journal 18, sy. 4 (Aralık 2025): 349-56. https://doi.org/10.30607/kvj.1606689.
EndNote Dinçel D, Mutlu E (01 Aralık 2025) Comparison of Allele Frequencies of LAP3 and MC4R Gene Polymorphisms in Berrichon Du Cher, Ile De France, and Karacabey Merino Sheep. Kocatepe Veterinary Journal 18 4 349–356.
IEEE D. Dinçel ve E. Mutlu, “Comparison of Allele Frequencies of LAP3 and MC4R Gene Polymorphisms in Berrichon Du Cher, Ile De France, and Karacabey Merino Sheep”, Kocatepe Veterinary Journal, c. 18, sy. 4, ss. 349–356, 2025, doi: 10.30607/kvj.1606689.
ISNAD Dinçel, Deniz - Mutlu, Emine. “Comparison of Allele Frequencies of LAP3 and MC4R Gene Polymorphisms in Berrichon Du Cher, Ile De France, and Karacabey Merino Sheep”. Kocatepe Veterinary Journal 18/4 (Aralık2025), 349-356. https://doi.org/10.30607/kvj.1606689.
JAMA Dinçel D, Mutlu E. Comparison of Allele Frequencies of LAP3 and MC4R Gene Polymorphisms in Berrichon Du Cher, Ile De France, and Karacabey Merino Sheep. Kocatepe Veterinary Journal. 2025;18:349–356.
MLA Dinçel, Deniz ve Emine Mutlu. “Comparison of Allele Frequencies of LAP3 and MC4R Gene Polymorphisms in Berrichon Du Cher, Ile De France, and Karacabey Merino Sheep”. Kocatepe Veterinary Journal, c. 18, sy. 4, 2025, ss. 349-56, doi:10.30607/kvj.1606689.
Vancouver Dinçel D, Mutlu E. Comparison of Allele Frequencies of LAP3 and MC4R Gene Polymorphisms in Berrichon Du Cher, Ile De France, and Karacabey Merino Sheep. Kocatepe Veterinary Journal. 2025;18(4):349-56.