190
Views
0
CrossRef citations to date
0
Altmetric
Breeding/genetics

Relationship between β-casein genotypes (A1A1, A1A2, and A2A2) and coagulation properties of milk and the fatty acid composition and sensory characteristics of dairy products (soft cheese, sour cream, and butter)

, , , , &
Pages 21-32 | Received 13 Jan 2022, Accepted 24 Oct 2022, Published online: 05 Dec 2022

References

  • Amalfitano, N., Cipolat-Gotet, C., Cecchinato, A., Malacarne, M., Summer, A. & Bittante, G. (2019). Milk protein fractions strongly affect the patterns of coagulation, curd firming, and syneresis. Journal of Dairy Science, 102(4), 2903–2917.
  • Bittante, G. (2011). Modeling rennet coagulation time and curd firmness of milk. Journal of Dairy Science, 94(12), 5821–5832.
  • Bittante, G., Penasa, M. & Cecchinato, A. (2012). Invited review: Genetics and modeling of milk coagulation properties. Journal of Dairy Science, 95(12), 6843–6870.
  • Bonfatti, V., Cecchinato, A., Gallo, L., Blasco, A. & Carnier, P. (2011). Genetic analysis of detailed milk protein composition and coagulation properties in Simmental cattle. Journal of Dairy Science, 94, 5183–5193.
  • Brennan, K. C., Bates, E. A., Shapiro, R. E., Zyuzin, J., Hallows, W. C., Huang, Y., Lee, H. Y., Jones, C. R., Fu, Y. H., Charles, A. C. & Ptáček, L. J. (2013). Casein kinase Iδ mutations in familial migraine and advanced sleep phase. Science Translational Medicine, 5(183), 183ra56.1–183ra56.11.
  • Caroli, A. M., Chessa, S. & Erhardt, G. J. (2009). Invited review: Milk protein polymorphisms in cattle: Effect on animal breeding and human nutrition. Journal of Dairy Science, 92(11), 5335–5352.
  • Cendron, F., Franzoi, M., Penasa, M., De Marchi, M. & Cassandro, M. (2021). Effects of β- and κ-casein, and β-lactoglobulin single and composite genotypes on milk composition and milk coagulation properties of Italian Holsteins assessed by FT-MIR. Italian Journal of Animal Science, 20(1), 2243–2253.
  • Cieślińska, A., Sienkiewicz-Szłapka, E., Wasilewska, J., Fiedorowicz, E., Chwała, B., Moszyńska-Dumara, M., Cieśliński, T., Bukało, M. & Kostyra, E. (2015). Influence of candidate polymorphisms on the dipeptidyl peptidase IV and μ-opioid receptor genes expression in aspect of the β-casomorphin-7 modulation functions in autism. Peptides, 65, 6–11.
  • Citek, J., Brzakova, M., Hanusova, L., Hanus, O., Vecerek, L., Samkova, E., Krizova, Z., Hostickova, I., Kavova, T., Strakova, K. & Hasonova, L. (2021). Gene polymorphisms influencing yield, composition and technological properties of milk from Czech Simmental and Holstein cows. Animal Bioscience, 34, 2–11.
  • De Vitte, K., Kerziene, S., Klementavičiūtė, J., De Vitte, M., Mišeikienė, R., Kudlinskienė, I., Čepaitė, J., Dilbiene, V. & Stankevičius, R. (2022). Relationship of β-casein genotypes (A1A1, A1A2 and A2A2) to the physicochemical composition and sensory characteristics of cows’ milk. Journal of Applied Animal Research, 50(1), 161–166.
  • Farrell Jr, H. M., Jimenez-Flores, R., Bleck, G. T., Brown, E. M., Butler, J. E., Creamer, L. K., Hicks, C. L., Hollar, C. M., Ng-Kwai-Hang, K. F. & Swaisgood, H. E. (2004). Nomenclature of the proteins of cows’ milk—Sixth revision. Journal of Dairy Science, 87(6), 1641–1674.
  • Fekete, ÁA, Givens, D. I. & Lovegrove, J. A. (2013). The impact of milk proteins and peptides on blood pressure and vascular function: a review of evidence from human intervention studies. Nutrition Research Reviews, 26(2), 177–190.
  • Gagoi, D., Sharma, A., Mann, S. & Mukesh, M. (2020). Analysis of allelic pattern across milk trait genes in native cattle adapted to high altitude region of Leh-Ladakh. Indian Journal of Animal Sciences, 90(11), 1499–1508.
  • Gantner, V., Mijić, P., Baban, M., Škrtić, Z. & Turalija, A. (2015). The overall and fat composition of milk of various species. Mljekarstvo, 65(4), 223–231. doi:10.15567/mljekarstvo.2015.0401
  • Gustavsson, F., Buitenhuis, A. J., Johansson, M., Bertelsen, H. P., Glantz, M., Poulsen, N. A., Månsson, H. L., Stålhammar, H., Larsen, L. B., Bendixen, C. & Paulsson, M. (2014). Effects of breed and casein genetic variants on protein profile in milk from Swedish Red, Danish Holstein, and Danish Jersey cows. Journal of Dairy Science, 97(6), 3866–3877.
  • He, M., Sun, J., Jiang, Z. Q. & Yang, Y. X. (2017). Effects of cow’s milk beta-casein variants on symptoms of milk intolerance in Chinese adults: a multicentre, randomised controlled study. Nutrition Journal, 16(1), 1–2.
  • ISO 12966-2:2011. (2011). Animal and vegetable fats and oils — Gas chromatography of fatty acid methyl esters — Part 2: Preparation of methyl esters of fatty acids.
  • ISO 707/IDF 50C:2008. (2008). Milk and milk products — Guidance on sampling.
  • ISO 8586:2012. (2012). Sensory analysis — General guidelines for the selection, training and monitoring of selected assessors and expert sensory assessors.
  • Kaskous, S. (2020). A1- and A2-milk and their effect on human health. Journal of Food Engineering and Technology, 9(1), 15–21 (in English). doi:10.32732/jfet.2020.9.1.15
  • Ketto, I. A., Knutsen, T. M., Øyaas, J., Heringstad, B., Ådnøy, T., Devold, T. G. & Skeie, S. B. (2017). Effects of milk protein polymorphism and composition, casein micelle size, and salt distribution on the milk coagulation properties in Norwegian Red cattle. International Dairy Journal, 70, 55–64. doi:10.1016/j.idairyj.2016.10.010
  • Konstantinou, G. N., Bencharitiwong, R., Grishin, A., Caubet, J. C., Bardina, L., Sicherer, S. H., Sampson, H. A. & Nowak-Wegrzyn, A. (2014). The role of casein-specific IgA and TGF-β in children with food protein-induced enterocolitis syndrome to milk. Pediatric Allergy and Immunology, 25(7), 651–656. doi:10.1111/pai.12288
  • Koscelkovskienė, I. & Pupelienė, I. (2017). Methodological tool for food biochemistry laboratory works 1 Part; Kaunas College.
  • Kudlinskienė, I. (2020). Analysis of chemical composition indicators of extruded lupines (Lupinus L.), faba beans (Vicia faba L.) and peas (Pisum sativum L.) and efficiency of their use in the nutrition of dairy cows: doctoral dissertation: agricultural sciences, animal sciences (A 003).
  • Kumar, A., Singh, R. V., Chauhan, A., Ilayakumar, K., Kumar, S., Kumar, A., Sonwane, A., Kumar, S., Panigrahi, M. & Bhushan, B. (2020). Genetic association analysis reveals significant effect of β-casein A1/A2 loci on production & reproduction traits in Frieswal crossbred cows. Biological Rhythm Research, 51(8), 1259–1272. doi:10.1080/09291016.2019.1571705
  • Kurek, M. & Malaczynnska, T. (1999). Nutritive casein formula elicits pseudoallergic skin reactions by prick testing. International Archives of Allergy and Immunology, 118(2-4), 228.
  • Kyselová, J., Ječmínková, K., Matějíčková, J., Hanuš, O., Kott, T., Štípková, M. & Krejčová, M. (2019). Physiochemical characteristics and fermentation ability of milk from Czech Fleckvieh cows are related to genetic polymorphisms of β-casein, κ-casein, and β-lactoglobulin. Asian-Australasian Journal of Animal Sciences, 32(1), 14–22. doi:10.5713/ajas.17.0924
  • Ladyka, V. I., Pavlenko, Y. M., Drevytska, T. I., Dosenko, V. Y., Skliarenko, Y. I. & Bartienieva, L. S. (2021). Study of beta-casein gene polymorphism and its relationship with milk composition in Simmental cows. Animal Breeding and Genetics, 62, 106–113.
  • Long, C., WangYan, F., QiongYan, F., Guo, T., Lun, L. & SongTao, X. (2019). Recent advances of β-casein genotyping in bovine milk and potential impact of β-casomorphin-7 on human health. China Dairy Industry, 47(8), 29–34.
  • Markiewicz-Kęszycka, M., Czyżak-Runowska, G., Lipińska, P. & Wójtowski, J. (2013). Fatty acid profile of milk - A review. Bulletin of the Veterinary Institute in Pulawy, 57(2), 135–139. doi:10.2478/bvip-2013-0026
  • Marko, R., Uros, G., Branislav, V., Milan, M., Danijela, K., Vlado, T. & Zoran, S. (2020). Beta-casein gene polymorphism in Serbian Holstein-Friesian cows and its relationship with milk production traits. Acta Veterinaria, 70(4), 497–510.
  • Mendes, M. O., de Morais, M. F. & Rodrigues, J. F. (2019). A2A2 milk: Brazilian consumers’ opinions and effect on sensory characteristics of Petit Suisse and Minas cheeses. LWT, 108, 207–213.
  • Miluchová, M., Gábor, M., Trakovická, A. & Hanusová, J. (2016). Bovine beta casein A1 variant as risk factor for human health. Acta Fytotechnica et Zootechnica, 19(5), 48–51.
  • Morris, C. A., Hickey, S. M., Cullen, N. G., Prosser, C. G., Anderson, R. M. & Tate, M. L. (2005). Associations between β-casein genotype and milk yield and composition in grazing dairy cows. New Zealand Journal of Agricultural Research, 48(4), 441–450. doi:10.1080/00288233.2005.9513678
  • Nguyen, H. T. H., Schwendela, H., Harlandb, D. & Daya, L. (2018). Differences in the yoghurt gel microstructure and physicochemical properties of bovine milk containing A1A1 and A2A2 β-casein phenotypes. Food Research International, 112, 217–224. doi:10.1016/j.foodres.2018.06.043
  • Pandey, A., Thakur, M. S. & Pandey, Y. (2020). Polymorphism of beta (β) casein gene and their association with milk production traits in Malvi and Nimari breeds of cattle. Indian Journal of Animal Research, 54(5), 647–650.
  • Park, Y. W. & Haenlein, G. F. (2021). A2 bovine milk and caprine milk as a means of remedy for milk protein allergy. Dairy, 2(2), 191–201.
  • Penasa, M., Cassandro, M., Pretto, D., De Marchi, M., Comin, A., Chessa, S., Dal Zotto, R. & Bittante, G. (2010). Short Communication: Influence of composite casein genotypes on additive genetic variation of milk production traits and coagulation properties in Holstein-Friesian cows. Journal of Dairy Science, 93(7), 3346–3349. doi:10.3168/jds.2010-3164
  • Perna, A., Intaglietta, I., Simonetti, A. & Gambacorta, E. (2016). The influence of casein haplotype on morphometric characteristics of fat globules and fatty acid composition of milk in Italian Holstein cows. Journal of Dairy Science, 99(4), 2512–2519. doi:10.3168/jds.2015-10397
  • Ramakrishnan, M., Eaton, T. K., Sermet, O. M. & Savaiano, D. A. (2020). Milk containing A2 β-casein only, as a single meal, causes fewer symptoms of lactose intolerance than milk containing A1 and A2 β-caseins in subjects with lactose maldigestion and intolerance: A randomized, double-blind, crossover trial. Nutrients, 12(12), 3855.
  • Rangel, A. H. N., Zaros, L. G., Lima, T. C., Borba, L. H. F., Novaes, L. P., Mota, L. F. M. & Silva, M. S. (2017). Polymorphism in the Beta Casein Gene and analysis of milk characteristics in Gir and Guzerá dairy cattle. Genetics and Molecular Research, 16(2), 1–9.
  • Simionato, J. I., Garcia, J. C., Santos, G. T. D., Oliveira, C. C., Visentainer, J. V. & Souza, N. E. D. (2010). Validation of the determination of fatty acids in milk by gas chromatography. Journal of the Brazilian Chemical Society, 21(3), 520–524.
  • Soyudal, B., Ardıçlı, S. E. N. A., Şamlı, H. A. L. E., Dinçel, DENİZ & Balcı, F. (2019). Association of polymorphisms in the CSN2, CSN3, LGB and LALBA genes with milk production traits in Holstein cows raised in Turkey. Journal of the Hellenic Veterinary Medical Society, 69(4), 1271–1282.
  • Summer, A., Pecorari, M., Fossa, E., Malacarne, M., Formaggioni, P., Franceschi, P. & Mariani, P. (2004). Protein fractions, rennet coagulation properties and Parmigiano Reggiano cheese yield of milk from Italian Brown cows. In 7th world conference of The Brown Swiss Cattle Breeders-Bruna.
  • Teter, A., Barłowska, J., Florek, M., Kędzierska-Matysek, M., Król, J., Brodziak, A. & Litwińczuk, Z. (2019). Coagulation capacity of milk of local Polish and Holstein-Friesian cattle breeds. Animal Science Papers & Reports, 37(3), 259–268.
  • Vigolo, V., Franzoi, M., Penasa, M. & De Marchi, M. (2022). β-Casein variants differently affect bulk milk mineral content, protein composition, and technological traits. International Dairy Journal, 124, 105221. doi:10.1016/j.idairyj.2021.105221

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.