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Research Article

Growth ability of Czech Fleckvieh bulls in modern cattle fattening stable

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Pages 316-321 | Received 20 Dec 2021, Accepted 11 Apr 2022, Published online: 04 May 2022

References

  • Andrýsek J, Večeřa M, Javorová J, Velecká M, Falta D, Chládek G. 2015. The Effect of Growth Rate on Some Beef Performance Characteristics of Czech Fleckvieh Heifers. Acta Universitatis Agriculturae et Silviculturae Mendelianae Brunensis. 63(4):1095–1100.
  • Bartoň L, Marounek M, Kudrna V, Bureš D, Zahrádková R. 2008. Growth, Carcass Traits, Chemical Composition and Fatty Acid Profile in Beef from Charolais and Simmental Bulls Fed Different Types of Dietary Lipids. Journal of the Science of Food and Agriculture. 88(15):2622–2630.
  • Bernard C, Cassar-Malek I, Renand G, Hocquette JF. 2009. Changes in Muscle Gene Expression Related to Metabolism According to Growth Potential in Young Bulls. Meat Science. 82(2):205–212.
  • Bezdíček J, Říha J, Kučera J, Dufek A, Bjelka M, Šubrt J. 2010. Relationships of Sire Breeding Values and Cutting Parts of Progeny in Czech Fleckvieh Bulls. Archives Animal Breeding. 53(4):415–425.
  • Bujko J, Candrák J, Žitný J, Hrnčár C, Koristek J, Zemanová J. 2020. Factors Influencing on Growth Traits in Selected Breeding Conditions of the Slovak Fleckvieh Calves. Scientific Papers Animal Science and Biotechnologies. 53(2):65–69.
  • Bureš D, Bartoň L. 2018. Performance, Carcass Traits and Meat Quality of Aberdeen Angus, Gascon, Holstein and Fleckvieh Finishing Bulls. Livestock Science. 214:231–237.
  • Chládek G, Žižlavský J, Šubrt J. 2011. A Comparison of Carcass Proportions in Czech Pied and Montbeliarde Bulls with a High Carcass Weight. Czech Journal of Animal Science. 50(3):109–115.
  • Dračková E, Filipčík R, Šubrt J. 2016. The Effect of Genotype (Purebred Czech Fleckvieh and their Crosses) on Some Beef Quality Characteristics in Bulls. Acta Universitatis Agriculturae et Silviculturae Mendelianae Brunensis. 64(3):769–773.
  • Engellandt TH, Tier B. 2002. Genetic Variances due to Imprinted Genes in Cattle. Journal of Animal Breeding and Genetics. 119(3):154–165.
  • Filipčík R, Falta D, Kopec T, Chládek G, Večeřa M, Rečková Z. 2020. Environmental Factors and Genetic Parameters of Beef Traits in Fleckvieh Cattle Using Field and Station Testing. Animals. 10(11):2159.
  • Fördős A, Fueller I, Bene S, Szabo F. 2010. Weaning Performance of Beef Hungarian Fleckvieh Calves: 3. Genotype × Environment Interaction. Archives Animal Breeding. 53(2):123–129.
  • Holló G, Nuernberg K, Somogyi T, Anton I, Holló I. 2012. Comparison of Fattening Performance and Slaughter Value of Local Hungarian Cattle Breeds to International Breeds. Archives Animal Breeding. 55(1):1–12.
  • Hozáková K, Vavrišínová K, Neirurerová P, Bujko J. 2020. Growth of Beef Cattle as Prediction for Meat Production: A review. Acta Fytotechnica et Zootechnica. 23(2):58–69.
  • Kebede D, Komlosi I. 2015. Evaluation of Genetic Parameters and Growth Traits of Hungarian Simmental Cattle Breed. Livestock Research for Rural Development. 27(9):172.
  • López-Paredes J, Pérez-Cabal MA, Jiménez-Montero JA, Alenda R. 2018. Influence of Age at First Calving in a Continuous Calving Season on Productive, Functional, and Economic Performance in a Blonde d’Aquitaine Beef Population. Journal of Animal Science. 96(10):4015–4027.
  • Mazzucco JP, Goszczynski DE, Ripoli MV, Melucci LM, Pardo AM, Colatto E, Rogberg-Muñoz A., Mezzadra CA, Depetris GJ, Giovambattista G, Villarreal EL. 2016. Growth, Carcass and Meat Quality Traits in Beef from Angus, Hereford and Cross-breed Grazing Steers, and their Association with SNPs in Genes Related to Fat Deposition Metabolism. Meat Science. 114:121–129.
  • Neugebauer N, Räder I, Schild HJ, Zimmer D, Reinsch N. 2010. Evidence for Parent-of-Origin Effects on Genetic Variability of Beef Traits. Journal of Animal Science. 88(2):523–532.
  • Pesonen M, Huuskonen AK. 2015. Production, Carcass Characteristics and Valuable Cuts of Beef Breed Bulls and Heifers in Finnish Beef Cattle Population. Agricultural and Food Science. 24(3):164–172.
  • Phocas F, Laloë D. 2004. Genetic Parameters for Birth and Weaning Traits in French Specialized Beef Cattle Breeds. Livestock Production Science. 89(2-3):121–128.
  • Savoia S, Brugiapaglia A, Pauciullo A, Di Stasio L, Schiavon S, Bittante G, Albera A. 2019. Characterisation of Beef Production Systems and their Effects on Carcass and Meat Quality Traits of Piemontese Young Bulls. Meat Science. 153:75–85.
  • Svitáková A, Bauer J, Přibyl J, Vesela Z, Vostry L. 2014. Changes Over Time in Genetic Parameters for Growth in Bulls and Assessment of Suitability of Test Methods. Czech Journal of Animal Science. 59:19–25.
  • Syrůček J, Kvapilík J, Bartoň L, Vacek M, Stádník L. 2017. Economic Efficiency of Bull Fattening Operations in the Czech Republic. Acta Universitatis Agriculturae et Silviculturae Mendelianae Brunensis. 65(2):527–536.
  • Toušová R, Ducháček J, Stádník L, Ptáček M, Beran J. 2014. The Effect of Selected Factors on the Growth Ability of Charolais Cattle. Acta Universitatis Agriculturae et Silviculturae Mendelianae Brunensis. 62(1):255–260.
  • Ustuner H, Ardicli S, Arslan O, Brav FC. 2020. Fattening Performance and Carcass Traits of Imported Simmental Bulls at Different Initial Fattening Age. Large Animal Review. 26(4):161–165.
  • Vestergaard M, Jørgensen KF, Çakmakçı C, Kargo M, Therkildsen M, Munk A, Kristensen T. 2019. Performance and Carcass Quality of Crossbred Beef x Holstein Bull and Heifer Calves in Comparison with Purebred Holstein Bull Calves Slaughtered at 17 Months of Age in an Organic Production System. Livestock Science. 223:184–192.