Polymorphisms within IGF1 and IGF1R Candidate genes in Gaolao Cattle Population

Authors

  • Aboli Wankhade Department of Animal Genetics and Breeding, Nagpur Veterinary College, Maharashtra Animal and Fishery Sciences University (MAFSU), Nagpur 440006, Maharashtra, India
  • Deepak Kale Department of Animal Genetics and Breeding, Nagpur Veterinary College, Maharashtra Animal and Fishery Sciences University (MAFSU), Nagpur 440006, Maharashtra, India
  • Jaya Singh Department of Animal Genetics and Breeding, Nagpur Veterinary College, Maharashtra Animal and Fishery Sciences University (MAFSU), Nagpur 440006, Maharashtra, India
  • Dinesh Patil Department of Animal Genetics and Breeding, Nagpur Veterinary College, Maharashtra Animal and Fishery Sciences University (MAFSU), Nagpur 440006, Maharashtra, India
  • Sachin Bonde Department of Veterinary Biochemistry, Nagpur Veterinary College, MAFSU, Nagpur 440006, Maharashtra, India
  • Atul Dhok Department of Animal Nutrition, Nagpur Veterinary College, MAFSU, Nagpur 440006, Maharashtra, India
  • Krushna Bahiram Department of Veterinary Physiology, Nagpur Veterinary College, MAFSU, Nagpur 440006, Maharashtra, India

DOI:

https://doi.org/10.48165/ijvsbt.19.6.11

Keywords:

IGF1, IGF1R, Milk traits, Polymorphism, Zebu cattle

Abstract

IGF1 gene expresses during lactation, mediates galactopoietic effects, and regulates metabolism and growth and IGF1R gene relation with milk components. The objectives were to identify polymorphisms within IGF1 and IGF1R genes & find associations with milk traits. The blood was collected from 262 purebred cattle from the breeding tract, and test-day milk traits were recorded. PCR- SnaBI analysis of the 5′UTR region of the IGF1 gene revealed only BB genotype; however; IGFG1-SSCP screening of 5′UTR region of IGF1 gene revealed polymorphism with pattern A frequency as 0.685 and of B as 0.314 respectively. IGFG2 -TasI PCR-RFLP analysis of 5′UTR region of IGF1 gene revealed CC genotype. The monomorphic PCR-SSCP followed by sequencing revealed 14 computational SNPs. IGFRG5-TaqI PCR-RFLP within exon-21 region exhibited genetic variation at the locus. The IGFRG5 screening of the same exon 21 regions revealed two polymorphic SSCP patterns, which after direct sequencing revealed SNP A>G at 36th position. The findings will enrich IGF1 and IGFR candidate gene variation status and will aid in selecting and breeding decisions to improve Gaolao cattle.

 

Downloads

Download data is not yet available.

References

Alim, M. A., Xie, Y., Fan, Y., Wu, X., Zhang, Y., Sun, D., Zhang, S., Zhang, Y., Zhang, Q., Liu, L. (2012). Effects of polymorphism in the 5′-flanking region of the IGF-I gene on milk-production traits in Chinese Holstein cattle. Animal Production Science, 52 (9), 795-798.

Ardiçli, S. (2018). Analysis of IGF1 C472T and TG C422T polymorphisms in Turkish Grey Steppe and Holstein Crossbred Bulls. Uludag University Journal of the Faculty of Veterinary Medicine, 37(1), 21-28.

Beishova, I. S., Ulyanov, V. A., Shaikamal, G., Papusha, N., Belaya, E.V. (2019). Features of Holstein Cattle Bred in Kazakhstan by the Polymorphic Genes of the Somatotropin Cascade. Advances in Animal and Veterinary Sciences, 7 (1), 60-65.

Bonakdar, E., Rahmani, H. R., Edriss, M. A., Sayed Tabatabaei B.E. (2010). IGF-I gene polymorphism, but not its blood concentration, is associated with milk fat and protein in Holstein dairy cows. Genetics and Molecular Research, 9(3), 1726-1734.

Czerniawska-Piatkowska, E. Szatkowska, Zaborski, I. D., Grzesiak,W., Tabor-Osinska, S., Wasielewska, M., Witold Proskura, S., Kruszynski, W., Pawlina, E. (2021). Single Nucleotide Polymorphism in the Promoter Region of the IGF-1 Gene is Associated with Milk Production in Holstein and Jersey Cattle – Is the Aspect of Present Research Still Relevant in the Era of Genomic Selection? Pakistan Journal of Zoology, 53, 2295-2303.

Ge, W., Davis, M. E., Hines, H.C., Irvin, K. M., Simmen, R.C.M. (2001). Association of a genetic marker with blood serum insulin-like growth factor-I concentration and growth traits in Angus cattle. Journal of Animal Science, 79 (7):1757-62.

Mehmannavaz, Y., Amirinia, C., Bonyadi, M., Torshizi, R.V. (2010). Association of IGF-1 gene polymorphism with milk production traits and paternal genetic trends in Iranian Holstein bulls. African Journal of Microbiology Research, 4 (1),110-114.

Mu’in, M.A. (2010). PCR-RFLP analysis of Insulin-like Growth Factor-I gene in Bali cattle. Jurnal Ilmu Peternakan, 5 (1), 1 – 4.

Omer, R.M.A., Masri, M.A.R.M., Jawasreh, K.I., Nour, I.A., Biraima, A.D.A., Musa,L.M.A., Ahmed, M.K.A. (2018). Molecular detection of selected genetic polymorphisms in Growth Hormone and Insulin like Growth Factor1 genes in indigenous Sudanese Baggara Cattle. Kafkas Universitesi Veteriner Fakultesi Dergisi, 24 (2),187-194.

Polasik, D., Górecka, E.,Wojdak-Maksymiec, K. (2014). Association between IGF-1 gene polymorphism and milk production traits in Polish Red-and-White cattle. Indian Journal of Animal Sciences, 84 (11), 1241–1243.

Potu, H., Lali, F. A., Anilkumar, K., Dipu, M. T., Aravindakshan, T.V. (2022). High resolution melt curve analysis identifies a novel SNP (G21A) in butyrophilin gene having significant association with milk production traits in Holstein Friesian crossbreds of Kerala. Animal Biotechnology,34 (4), 1544-1552.

Putra, W.P.B., Nugraheni, S.T., Irnidayanti, Y., Said, S. (2018). Genotyping in the Insulin-like Growth Factor 1 (IGF1/SnaBI) Gene of Pasundan Cattle with PCR-RFLP Method. Indonesian Journal of Animal and Veterinary Sciences, 23 (4),174-179.

Ramesha, K.P., Rao, A., Basavaraju, M., Geetha, G,R., Kataktalware, M.A., Jeyakumar, S. (2015). Genetic variability of bovine GHR, IGF-1 and IGFBP-3 genes in Indian cattle and buffalo. South African Journal of Animal Sciences, 45 (5),485-493.

Szewczuk, M. (2016). Association of single nucleotide polymorphisms in genes coding insulin-like growth factor 1 system and milk production traits in Montbeliarde cows. South African Journal of Animal Sciences, 46 (2),191-195.

Szewczuk, M., Bajurna, M., Zych, S., Kruszyński, W. (2013). Association of insulin-like growth factor I gene polymorphisms (IGF1/TasI and IGF1/SnaBI) with the growth and subsequent milk yield of Polish Holstein-Friesian heifers. Czech Journal of Animal Sciences, 58 (9), 404–411.

Szewczuk, M., Zych S., Czerniawska-Piątkowska. E. (2011). Association between IGF1/TasI polymorphism and milk traits of Polish Holstein Friesian cows. Archives Animal Breeding, 54 (1), 10-17.

Szewczuk, M., Zych,S. Czerniawska-Piątkowska, E., Wojcik, J. (2012). Association between IGF1R / i16 / TaqI and IGF1 / SnaBI polymorphisms and milk production traits in Polish Holstein-Friesian cows. Animal Science Papers and Reports, 30 (1),13-24.

Ulyanov, V. A., Kubekova, B. Z., Beishova, I. S., Belaya, A. V., Papusha, N.V. (2021). Preferred and undesirable genotypes of bGH and bIGF-1 genes for the milk yield and quality of black-and-white breed. Veterinary World, 14, 1202-1209.

Wasielewska, M., Szatkowska, I. (2019). Possible relationship between IGF-1/SnaBI genotypes and milk yield of Holstein-Friesian cows. Scientific Annals of Polish Society of Animal Production, 15(4), 35-41.

Zhang, L. Z., Ren, G., Hua, L.S, Lan, X.Y., Lei C. Z., Chen, H. (2014). Polymorphism in the 5’UTR of the insulin-like growth factor I gene associated with production traits in Chinese cattle. Genetics and Molecular Research, 13(3), 6899-6905.

Zych, S.,Szewczuk, M., Czerniawska Piątkowska, S., Szatkowska I. (2007). A new ACRS-SNP in the 5’ flanking region of the bovine insulin-like growth factor 1 (IGF1) gene (Brief report). Archives Animal Breeding, 50, 531–532.

Published

2023-11-07

How to Cite

Wankhade, A., Kale, D., Singh, J., Patil, D., Bonde, S., Dhok, A., & Bahiram, K. (2023). Polymorphisms within IGF1 and IGF1R Candidate genes in Gaolao Cattle Population. Indian Journal of Veterinary Sciences and Biotechnology, 19(6), 50–55. https://doi.org/10.48165/ijvsbt.19.6.11