Preview

Agrarian science

Advanced search

The influence of zootechnical factors on the composition of proteins in raw cow's milk

https://doi.org/10.32634/0869-8155-2024-387-10-192-200

Abstract

The scientific review is devoted to the current problem of the quality of raw materials in the production of dairy products. The purpose of the research is to update scientific data on the influence of zootechnical factors on the protein composition of raw cow›s milk. In the context of the development of the specialized nutrition market, an in-depth study of milk proteins is necessary as the most important source of essential amino acids. The authors reviewed the scientific works of domestic and foreign specialists, covering the influence of various factors on the protein composition of raw cattle milk. During the formation of the scientific review, the factors studied were divided into the following groups: selection-genetic, feed, temporal, zoohygienic and technological. This made it possible to determine the degree of influence of factors on milk quality indicators, especially proteins, and to trace their dependence on each other.

About the Authors

E. V. Serba
All-Russian Scientific Research Institute of Dairy Industry (VNIMI)
Russian Federation

Ekaterina Vladislavovna Serba, Junior Research Assistant

35 Lyusinovskaya Str., 7 building, Moscow, 115093



E. A. Yurova
All-Russian Scientific Research Institute of Dairy Industry (VNIMI)
Russian Federation

Elena Anatolyevna Yurova, Candidate of Technical Sciences, Head of the Laboratory of Technochemical Control

35 Lyusinovskaya Str., 7 building, Moscow, 115093



References

1. Okoneshnikova Yu.A., Antipina V.P. Factors affecting the composition and properties of cow’s milk. Fundamental and applied scientific research: current issues, achievements and innovations. Collection of articles of the XXXIX International Scientific and Practical Conference. Penza: Nauka i рrosveshcheniye. 2020; 80–82 (in Russian). https://elibrary.ru/ihnzgd

2. Rudakov O.B., Rudakova L.V., Buksha M.S. Genotypical variability of amino acid composition of animal and plant proteins. Sorbtsionnye i Khromatograficheskie Protsessy. 2020; 20(1): 8–21 (in Russian). https://doi.org/10.17308/sorpchrom.2020.20/2375

3. Walther B. et al. Comparison of nutritional composition between plant-based drinks and cow’s milk. Frontiers in Nutrition. 2022; 9: 988707. https://doi.org/10.3389/fnut.2022.988707

4. Pérez-Rodríguez M.L., Serrano-Carretero A., García-Herrera P., CámaraHurtado M., Sánchez-Mata M.C. Plant-based beverages as milk alternatives? Nutritional and functional approach through food labelling. Food Research International. 2023; 173(1): 113244. https://doi.org/10.1016/j.foodres.2023.113244

5. Vostrikov P.S., Ryzhkov E.I. Composition and properties of milk depending on zootechnical factors. Veterinary and sanitary aspects of the quality and safety of agricultural products. Proceedings of the V International scientific and practical conference. Voronezh: Voronezh State Agrarian University named after Emperor Peter the Great. 2021; 2: 30–32 (in Russian). https://www.elibrary.ru/ohxcxh

6. Patton R.A. Effect of rumen-protected methionine on feed intake, milk production, true milk protein concentration, and true milk protein yield, and the factors that influence these effects: a meta-analysis. Journal of Dairy Science. 2010; 93(5): 2105–2118. https://doi.org/10.3168/jds.2009-2693

7. Kharisov M.M. Thermal stability of milk depending on the level of total protein in milk. The Veterinarny Vrach. 2006; (3): 50–51 (in Russian). https://www.elibrary.ru/jxcrjj

8. Kuznetsov A., Kuznetsov S. Methods of the regulation of the content of protein in the milk of dairy cows. Dairy and beef cattle farming. 2011; (1): 26–27 (in Russian). https://www.elibrary.ru/ndcstt

9. Bogdanova L.L., Podryabinkina A.A., Bogdanov I.A., Savelyeva T.A. Studying the influence of seasonal factors on casein and whey protein content in raw milk and cheese yield. Topical Issues of Processing of Meat and Milk Raw Materials. 2020; 14: 142–151 (in Russian). https://doi.org/10.47612/2220-8755-2019-14-142-151

10. Skorkina I.A., Lamonov S.A. Features of the chemical and amino acid composition of cattle milkbreeded in the conditions of the Tambov region. Bulletin of Michurinsk State Agrarian University. 2021; (3): 66–70 (in Russian). https://www.elibrary.ru/imslbp

11. Caroli A.M., Chessa S., Erhardt G.J. Invited review: Milk protein polymorphisms in cattle: Effect on animal breeding and human nutrition. Journal of Dairy Science. 2009; 92(11): 5335–5352. https://doi.org/10.3168/jds.2009-2461

12. Alekseenko V.A., Dovgan N.B. Evaluation significant factors influencing on the content of protein in milk cheese. Natsionalnaya assotsiatsiya uchenykh. 2016; (5–2): 135–136 (in Russian). https://www.elibrary.ru/xxeixn

13. Amalfitano N., Stocco G., Maurmayr A., Pegolo S., Cecchinato A., Bittante G. Quantitative and qualitative detailed milk protein profiles of 6 cattle breeds: Sources of variation and contribution of protein genetic variants. Journal of Dairy Science. 2020; 103(12): 11190–11208. https://doi.org/10.3168/jds.2020-18497

14. Ignatieva N.L. Content and structure of protein in the milk of cows-daughters of bulls of domestic and imported selection. Advanced achievements of science in the dairy industry. Collection of scientific papers based on the results of the All-Russian scientific and practical conference. Vologda. 2019; 216–221 (in Russian). https://www.elibrary.ru/iuvwvm

15. Maurmayr A., Pegolo S., Malchiodi F., Bittante G., Cecchinato A. Milk protein composition in purebred Holsteins and in first/second-generation crossbred cows from Swedish Red, Montbeliarde and Brown Swiss bulls. Animal. 2018; 12(10): 2214–2220. https://doi.org/10.1017/S1751731117003640

16. Ignatieva N.L. Dependence of the content and structure of dairy proteins on the origin of cows. Vestnik Chuvash State Agricultural Academy. 2019; (4): 86–92 (in Russian). https://www.elibrary.ru/mgmmfk

17. Tarasova E.I., Notova S.V. Gene markers of the productive characteristics of dairy cattle (review). Animal Husbandry and Fodder Production. 2020; 103(3): 58–80 (in Russian). https://doi.org/10.33284/2658-3135-103-3-58

18. Harlamov A.V., Panin V.A., Kosilov V.I. Effect of kappa-casein and lactoglobulin genes on milk yields of cows and the content of protein in milk. Izvestia Orenburg State Agrarian University. 2020; (1): 193–197 (in Russian). https://www.elibrary.ru/xbgdqh

19. Fedorova E.Yu., Mosyagin V.V., Maksimov V.I. Characteristics of the fractional composition of milk protein of various cow breeds. Russian Agricultural Sciences. 2011; 37(2): 157–159. https://doi.org/10.3103/S106836741102011X

20. Ignatieva N.L., Aizatov R.M. Albumin milk coutent of differeut genetic parentage. Scientific notes Kazan Bauman State Academy of Veterinary Medicine. 2012; 209: 128–132 (in Russian). https://www.elibrary.ru/oxzjiz

21. Basonov O.A., Arutyunyan S.G. Preliminary results of the influence of genotypes for milk protein genes on the productive indicators of daughters. Mechanization and electrification of agricultural production. Innovative technologies for the production and processing of agricultural products. Current problems of livestock farming. Proceedings of the International scientific and practical conference, in honor of the 5th anniversary of the Center for Russian-Belarusian Cooperation, additional education, assistance in the employment of students. Nizhny Novgorod: Nizhny Novgorod State Agricultural Academy. 2020; 179–183 (in Russian). https://www.elibrary.ru/jqttpu

22. Azhiniyazova Zh.M., Papusha N.V. Chemical composition and milk suitability for cheese producing depending on paratypical and genetic factors. Veles. 2018; (11–1): 36–41 (in Russian). https://www.elibrary.ru/ythlnj

23. Morton J.M., Auldist M.J., Douglas M.L., Macmillan K.L. Milk protein concentration, estimated breeding value for fertility, and reproductive performance in lactating dairy cows. Journal of Dairy Science. 2017; 100(7): 5850–5862. https://doi.org/10.3168/jds.2016-11273

24. Kashaeva A.R., Mukhametgaliev N.N. Lactation period effect on protein composition and cheese-yelding capacity of cows milk. Scientific notes Kazan Bauman State Academy of Veterinary Medicine. 2013; 216: 169–172 (in Russian). https://www.elibrary.ru/rgefcz

25. Wang X. et al. Characteristics of ruminal microbiota and metabolome in Holstein cows differing in milk protein concentrations. Journal of Animal Science. 2022; 100(11): skac253. https://doi.org/10.1093/jas/skac253

26. Dubova E.A., Builova L.A., Ostretsova N.G., Gulyaev E.G., Inihova O.V. About “true” protein and urea levels in milk. Dairy industry. 2017; (4): 48–49 (in Russian). https://www.elibrary.ru/yhxahn

27. Stepanova M.V., Yarlykov N.G., Lapina E.M. Influence of feeding cows on the quality and chemical composition of milk. Herald of Agroindustrial complex of Upper Volga region. 2021; (4): 45–51 (in Russian). https://doi.org/10.35694/YARCX.2021.56.4.008

28. Papusha N.V., Bermagambetova N.N., Kubekova B.Zh., Smailova M.N., Kosilov V.I. Optimization of dairy cows diets for crude protein. Agrarian science. 2023; (11): 46–53 (in Russian). https://doi.org/10.32634/0869-8155-2023-376-11-46-53

29. Nosyreva Yu.N., Karelina L.N., Tokareva V.F. Methods of nutritional value increase nutrition and as feed for lactating cows. New agricultural technologies are the main factor in increasing production efficiency. Proceedings of the scientific and practical conference. Irkutsk: Irkutsk State University of Agriculture. 2016; 54–58 (in Russian). https://www.elibrary.ru/qwkpfy

30. Kashaeva A.R., Akhmetzyanova F.K. The effect of the type of feeding on the protein composition and cheese suitability of cow’s milk during lactation completion. Scientific notes of the Kazan State Academy of Veterinary Medicine named after N.E. Bauman. 2014; 217: 112–117 (in Russian). https://www.elibrary.ru/samjhx

31. Chasovshchikova M.A., Gubanov M.V. Indicators of milk composition as an indicator of the quality of feeding of a dairy herd of cows. Izvestia Orenburg State Agrarian University. 2023; (4): 292–298 (in Russian). https://www.elibrary.ru/qvlpko

32. Volgin V.I., Romanenko L.V., Prokhorenko P.N., Fedorova Z.L., Korochkina E.A. Full feeding dairy cattle is the basis of realization of the genetic productivity potential. Monograph. Moscow: Russian Academy of Sciences. 2016; 260 (in Russian). ISBN 978-5-906906-85-4 https://www.elibrary.ru/xvjnql

33. Efendiev B.Sh., Ulimbashev M.B. Problems of full nutrition of dairy cattle during summer-pasturing period. Sbornik nauchnykh trudov SeveroKavkazskogo nauchno-issledovatel’skogo instituta zhivotnovodstva. 2016; 5(1): 142–147 (in Russian). https://www.elibrary.ru/vwlqpj

34. Shcheglov A.M. High-protein feeds in the diets of lactating cows. Scientific problems of livestock production and improving its quality. Materials of the XXXVI scientific and practical conference of students and graduate students. Bryansk: Bryansk State Agrarian University. 2021; 190–194 (in Russian). https://www.elibrary.ru/mzoptq

35. Leduc A. et al. Milk proteins as a feed restriction signature indicating the metabolic adaptation of dairy cows. Scientific Reports. 2022; 12: 18886. https://doi.org/10.1038/s41598-022-21804-1

36. Kharitonov E.L., Panyushkin D.E., Makar Z.N. Biosynthesis of milk components when varying the level of readily available carbohydrates in cows diets. Volga Region Farmland. 2019; (1): 48–53. https://doi.org/10.26177/VRF.2019.1.1.010

37. Alothman M. et al. The “Grass-Fed” Milk Story: Understanding the Impact of Pasture Feeding on the Composition and Quality of Bovine Milk. Foods. 2019; 8(8): 350. https://doi.org/10.3390/foods8080350

38. Laroche J.-P. et al. Milk production and efficiency of utilization of nitrogen, metabolizable protein, and amino acids are affected by protein and energy supplies in dairy cows fed alfalfa-based diets. Journal of Dairy Science. 2022; 105(1): 329–346. https://doi.org/10.3168/jds.2021-20923

39. Proshkina T.G., Belov A.N., Odegov N.I., Shalimova E.V. The influence of seasonal characteristics of milk composition on cheese suitability. Cheesemaking and buttermaking. 2010; (3): 28–31 (in Russian). https://www.elibrary.ru/mjbjcb

40. O’Neill B.F. et al. Predicting grass dry matter intake, milk yield and milk fat and protein yield of spring calving grazing dairy cows during the grazing season. Animal. 2013; 7(8): 1379–1389. https://doi.org/10.1017/S1751731113000438

41. Bernabucci U. et al. Effect of summer season on milk protein fractions in Holstein cows. Journal of Dairy Science. 2015; 98(3): 1815–1827. https://doi.org/10.3168/jds.2014-8788

42. Ostroumov L.A., Shakhmatov R.A., Kurbanova M.G. Investigation of seasonal changes in fractional composition of milk proteins. Food Processing: Techniques and Technology. 2011; (1): 36a–41 (in Russian). https://www.elibrary.ru/ndtdav

43. Safonov E.A. The influence of the season on the fractional composition of whole milk proteins. Ideas of young scientists for the agro-industrial complex. Proceedings of the student scientific conference of the Institute of Veterinary Medicine. Troitsk: South Ural State Agrarian University. 2019; 302–307 (in Russian). https://www.elibrary.ru/hfwwaj

44. Larionov G.A., Egorova K.D. Chemical composition of cow’s milk in autumn and winter period. Problems of veterinary sanitation, hygiene and ecology. 2021; (3): 274–279 (in Russian). https://doi.org/10.36871/vet.san.hyg.ecol.202103006

45. Shishkina T.V. Impact of calving season on cow productivity. Surskiy vestnik. 2020; (4): 54–58 (in Russian). https://www.elibrary.ru/epdbyx

46. Kudryavtseva E.N., Tolstova D.A. Changing the composition and properties of cows’ milk by regulating the level of fat in their diets. Aktual’nyye voprosy sovershenstvovaniya tekhnologii proizvodstva i pererabotki produktsii selskogo khozyaystva. 2018; 20: 181–184 (in Russian). https://www.elibrary.ru/pgxnvv

47. Zaitsev S.Yu., Kolesnik N.S., Bogolyubova N.V. Features of the amino acid composition of cow’s milk depending on the season. Scientific notes Kazan Bauman State Academy of Veterinary Medicine. 2023; 255: 160–168 (in Russian). https://www.elibrary.ru/kcsdle

48. Maryasov A.N., Kazantseva E.S. Influence of milking technology on the qualitative composition of milk. Youth and science. 2019; (1): 22 (in Russian). https://www.elibrary.ru/vxigsu

49. Simonov G.A., Nikiforov V.E., Serebrova I.S., Ivanova D.A., Filippova O.B. Influence of robotized milking on quality of cow milk. Science in the Central Russia. 2020; (2): 117–124 (in Russian). https://doi.org/10.35887/2305-2538-2020-2-117-124

50. Mazolo N.V., Guivan V.V. The influence of the conditions of keeping cows on their productivity and milk quality. Scientific notes of the educational institution «Vitebsk Order “Badge of Honor” State Academy of Veterinary Medicine». 2021; 57(1): 94–98 (in Russian). https://www.elibrary.ru/bzbxdx


Review

For citations:


Serba E.V., Yurova E.A. The influence of zootechnical factors on the composition of proteins in raw cow's milk. Agrarian science. 2024;1(10):192-200. (In Russ.) https://doi.org/10.32634/0869-8155-2024-387-10-192-200

Views: 166


Creative Commons License
This work is licensed under a Creative Commons Attribution 4.0 License.


ISSN 0869-8155 (Print)
ISSN 2686-701X (Online)
X