Genetic studies on monthly test day milk yield of Jersey crossbred cattle


Abstract views: 91 / PDF downloads: 63

Authors

  • AJOY MANDAL Principal Scientist, ICAR-National Dairy Research Institute, Eastern Regional Station, Kalyani, Nadia, West Bengal 741 235 India
  • GIRISH VERMA M.V.Sc. Student, ICAR-National Dairy Research Institute, Eastern Regional Station, Kalyani, Nadia, West Bengal 741 235 India
  • SUBRATA KOLOI M.V.Sc. Student, ICAR-National Dairy Research Institute, Eastern Regional Station, Kalyani, Nadia, West Bengal 741 235 India
  • KANAI PATHAK M.V.Sc. Student, ICAR-National Dairy Research Institute, Eastern Regional Station, Kalyani, Nadia, West Bengal 741 235 India
  • C BHAKAT Principal Scientist, ICAR-National Dairy Research Institute, Eastern Regional Station, Kalyani, Nadia, West Bengal 741 235 India
  • D K MANDAL Principal Scientist,  ICAR-National Dairy Research Institute, Eastern Regional Station, Kalyani, Nadia, West Bengal 741 235 India

https://doi.org/10.56093/ijans.v88i7.81502

Keywords:

Cattle, Environmental factors, Genetic studies, Jersey, Heritability, Test day milk yield

Downloads

Download data is not yet available.

References

Cruz D A C, Peixoto M G C D, Bruneli F A T, Bignardi A B and El Faro L. 2015. Genetic parameters of test-day milk yield in Guzera cattle under tropical conditions. Genetic and Molecular Research 14(4): 13618–24. DOI: https://doi.org/10.4238/2015.October.28.23

Çilek S and Kaygýsýz A. 2008. Breeding value estimation of dairy cattle using test day milk yields for Brown Swiss cows reared at Ula state farm. Journal of Animal and Veterinary Advances 7(6): 703–06.

Çilek S. 2009. Milk yield traits of Holstein cows raised at polatli state farm in Turkey. Journal of Animal and Veterinary Advances 8(1): 6–10.

Dongre V B and Gandhi R S. 2014. Genetic and phenotypic parameters of fortnightly test day and first lactation 305-day or less milk yield in Sahiwal cattle. International Journal of Livestock Research 4(3): 17–20. DOI: https://doi.org/10.5455/ijlr.20140423043653

Dongre V B, Gandhi R S, Singh A, Sachdeva G K, Singh R K and Gupta A. 2013. Influence of non-genetic factors on fortnightly test day milk yields and first lactation 305-day milk yield in Sahiwal cattle. Indian Journal of Animal Research 47(2): 181–83.

DongreV B, Gandhi R S, Singh A, Raja T V and Singh R K. 2011. Effect of non-genetic factors on weekly test day milk yields and first lactation traits in Sahiwal cattle. Indian Journal of Animal Research 45(2): 139–42.

Dutt T, Gaur G K and Bhusan B. 1999. Maximum likelihood estimates of first lactation traits in halfbreds and three breed crosses of Friesian, Brown Swiss and Jersey with Hariana. Indian Journal of Animal Production and Management 15(4): 150–53.

Guler O, Yanar M, Aydin R, Bayram B, Dogru U and Kopuslu S. 2009. Genetic and environmental parameters of milkability traits in Holstein Friesian cows. Journal of Animal and Veterinary Advances 8(1):143–47.

Harvey W R. 1990. Guide for LSMLMW, PC-1 Version, mixed model least squares and maximum likelihood computer programme. Mimeograph, Ohio State University, USA.

Jensen J. 2001. Genetic evaluation of dairy cattle using test-day models. Journal of Dairy Science 84(12): 2803–12. DOI: https://doi.org/10.3168/jds.S0022-0302(01)74736-4

Kaygisiz A. 2013. Estimation of genetic parameters and breeding values for dairy cattle using test-day milk yield records. Journal of Animal and Plant Sciences 23(2): 345–49.

Kokate L. 2009. ‘Genetic evaluation of Karan Fries sires based on test day milk yield records.’M.V.Sc. Thesis, NDRI (Deemed University), Karnal, Haryana, India.

Kokate L S, Singh A, Banu R, Gandhi R S, Chakravarty A K, Gupta A K and Sachdeva G K. 2013. Genetic and non-genetic factors affecting monthly test day milk yields in Karan Fries. Indian Journal of Animal Sciences 83(4): 385–89.

Kramer C Y. 1957. Extension of multiple range tests to group correlated adjusted means. Biometrics 13: 13–18. DOI: https://doi.org/10.2307/3001898

Lakshmi S B, Gupta B R, Prakash M G, Sudhakar K and Sharma S. 2010. Genetic analysis of the production performance of Frieswal cattle. Tamil Nadu Journal of Veterinary and Animal Sciences 6(5): 215–22.

Machado S G, Freitas M A R and Gadini C H. 1999. Genetic parameters of test day milk yields of Holstein cows. Genetics and Molecular Biology 22(3): 383–86. DOI: https://doi.org/10.1590/S1415-47571999000300016

Mandal A, Roy P K, Ghosh M K, Chatterjee A and Das S K. 2013. Genetic and environmental effects on first lactation traits of Jersey crossbred cattle in an organized herd of Eastern India. Indian Journal of Dairy Science 66(2): 130–33.

Monalisa D, Gandhi R S, Raja T V, Singh A and Sachdeva G K. 2010. Influence of certain non-genetic factors on test day milk records in Sahiwal cattle. Indian Journal of Dairy Science 63(6): 504–06.

Monalisa D, Gandhi R S, Raja T V, Singh A and Sachdeva G K. 2014. Genetic studies on monthly test-day milk records in Sahiwal cattle. Indian Journal of Animal Sciences 84(6): 706–08.

Mundhe U T, Gandhi R S, Das D N, Dongre V B and Gupta A. 2015. Genetic and non- genetic factors affecting monthly part lactation milk yields in Sahiwal cattle. Indian Journal of Animal Sciences 85(5): 517–18.

Nigm A A, Sadek R R, Yassien S A, Ibrahim M A M and El- Wardani M A. 2015. Effect of climate change on test-day milk yield of Holstein cows maintained in the Nile delta of Egypt. Egyptian Journal of Animal Production 52(2): 113–21. DOI: https://doi.org/10.21608/ejap.2015.93628

Nyamushamba G B, Chikwanda D, Matondi G, Marandure T, Mamutse J, Tavirimirwa B, Banana N Y D and Dhliwayo M. 2014. The effect of non-genetic factors on milk yield and composition of Red Dane cattle in Zimbabwe. Livestock Research for Rural Development. Volume 26, Article #93. DOI: https://doi.org/10.1186/2193-1801-3-88

Pelmus R S, Grosu H, Rotar M C, Gras M A, Ghita E and Lazar C. 2017. Estimation of the genetic parameters for test-day milk yield in Holstein cattle. Animal Science and Biotechnologies 50(1): 85–89.

Pereira R J, Ayres D R, El Faro L, VercesiFilho A E, da Silva Verneque R and de Albuquerque L G. 2013. Genetic parameters for production traits of dairy Gyr (Bos indicus)× Holstein cattle estimated with a random regression model. Livestock Science 158: 24–31. DOI: https://doi.org/10.1016/j.livsci.2013.10.003

Rana J. 2008. ‘Genetic evaluation of Murrah buffalo sires based on part lactation and test day milk yield records.’ Ph.D. Thesis, Choudhary Charan Singh University, Meerut, Uttar Pradesh.

Ribas M and Perez B. 1990. Monthly test day milk records and yield at 244 days. II. Genetic parameters in first lactation. Cuban Journal of Agriculture Science 24: 129–44.

Rios-Utrera A, Calderon-Robles R C, Galaviz-Rodriguez J R, Vega-Murillo V E and Lagunes-Lagunes J. 2013. Effects of breed, calving season and parity on milk yield, body weight and efficiency of dairy cows under subtropical conditions. International Journal of Animal and Veterinary Advances 5(6): 226–32. DOI: https://doi.org/10.19026/ijava.5.5602

Sahana G and Gurnani M. 2000. Performance of crossbred cattle and comparison of sire evaluation methods under organized farm condition. Indian Journal of Animal Sciences 70(4): 409– 14.

Santos D J A, Peixoto M G C D, Borquis R R A, Verneque R S, Panetto J C C and Tonhati H. 2013. Genetic parameters for test-day milk yield, 305-day milk yield, and lactation length in Guzerat cows. Livestock Science 152: 114–19. DOI: https://doi.org/10.1016/j.livsci.2012.12.012

Schaeffer L R, Jamrozik J, Kistemaker G J and Doormaal B J. 2000. Experience with a test day model. Journal of Dairy Science 83: 1135–44. DOI: https://doi.org/10.3168/jds.S0022-0302(00)74979-4

Singh A, Singh A, Singh M, Prakash V, Ambhore G S, Sahoo S K and Dash S. 2016. Estimation of genetic parameters for first lactation monthly test-day milk yields using random regression test day model in Karan Fries cattle. Asian Australasian Journal of Animal Science 29(6): 775–81. DOI: https://doi.org/10.5713/ajas.15.0643

Swalve H H. 2000. Theoretical basis and computational methods for different test-day genetic evaluation methods. Journal of Dairy Science 83: 1115–24. DOI: https://doi.org/10.3168/jds.S0022-0302(00)74977-0

Visscher P M and Goddard M E. 1995. Genetic parameters for milk yield, survival, workability and type traits for Australian dairy cattle. Journal of Dairy Science 78: 205–20. DOI: https://doi.org/10.3168/jds.S0022-0302(95)76630-9

Yoon J T, Lee J H, Kim C K, Chung Y C and Kim C H. 2004. Effects of milk production, season, parity and lactation period on variations of milk urea nitrogen concentration and milk components of Holstein dairy cows. Asian Australasian Journal of Animal Science 4: 479–84. DOI: https://doi.org/10.5713/ajas.2004.479

Downloads

Submitted

2018-07-17

Published

2022-12-28

Issue

Section

Short-Communication

How to Cite

MANDAL, A., VERMA, G., KOLOI, S., PATHAK, K., BHAKAT, C., & MANDAL, D. K. (2022). Genetic studies on monthly test day milk yield of Jersey crossbred cattle. The Indian Journal of Animal Sciences, 88(7), 863-867. https://doi.org/10.56093/ijans.v88i7.81502
Citation