The effect of the genotype of holstein bulls on the phosphorus content in the liver of descendants
https://doi.org/10.31677/2072-6724-2024-73-4-272-279
Abstract
Russian and foreign scientists continue to systematize knowledge about the accumulation of macroand microelements in the body of animals, as their study remains an urgent topic for many studies. Questions about the hereditary determination of the level of macroand microelements in animal organs and tissues are also being studied. Currently, articles by Russian and foreign authors contain separate, disparate information about the macroand microelement status of farm animals and fish of different species. Our article describes data on the phosphorus content in the liver of offspring obtained from producing bulls of the Holstein breed. The research was conducted in Kuzbass. The studied animals were in the same conditions of maintenance and feeding. The groups were formed according to the principle of analogues. The same feeding and maintenance conditions were created for the experimental animals. In the animal breeding area, the content of macroand microelements in soil, water and feed was determined, the level of heavy metals was within acceptable concentrations. The phosphorus content in the liver was determined by atomic emission spectrometry on the ICP AES IRIS device. The phosphorus level in the offspring of the sons of different Holstein bulls was in the range of 2964–3417 mg/kg. In the liver of the descendants of some bulls, the phosphorus content was 1.15 times higher than in others. The index of the strength of the influence (RW) of fathers on the phosphorus content in the liver of sons was 0,49 (p < 0.05). This indicates the influence of the genotype of fathers on the phosphorus content in the liver of descendants. The level of phenotypic variability of phosphorus concentration in the liver of offspring of different bulls was in the range of 5.6–11.6 %. The obtained average values of phosphorus levels can be taken as the physiological norm for animals of the Holstein breed in Western Siberia. The study of the level of phosphorus and other elements in organs and tissues expands the understanding of the chemical status of animals and is a characteristic of the interior.
About the Authors
M. V. StrizhkovaRussian Federation
PhD in Biological Sciences
Novosibirsk
T. V. Konovalova
Russian Federation
Senior lecturer
Novosibirsk
O. S. Korotkevich
Russian Federation
Doctor of Biological Sciences, Professor
Novosibirsk
B. L. Petukhov
Russian Federation
Doctor of Biological Sciences, Professor
Novosibirsk
O. A. Zaiko
Russian Federation
PhD in Biological Sciences
Novosibirsk
A. I. Zheltikov
Russian Federation
Doctor of Agricultural Sciences
Novosibirsk
M. L. Kochneva
Russian Federation
Doctor of Biological Sciences
Novosibirsk
References
1. Zaiko O., Nazarenko A., Strizhkova M., Zheltikov A., Konovalova T., Correlation of phosphorus level with macroand microelements in the bristles of Landrace pigs, BIO Web of Conferences, 2021, 36, 0631.
2. Osadchuk L.V., Sebezhko O.I., Shishin N.G. [i dr.], Vestnik NGAU (Novosibirskij gosudarstvennyj agrarnyj universitet), 2017, No. 2 (43), pp. 52–61. (In Russ.)
3. Sposob polucheniya vysokoproduktivnykh proizvoditelej sel’skokhozyajstvennykh zhivotnykh (Method for obtaining highly productive producers of agricultural animals), Petukhov V.L., Ehrnst L.K., Zheltikov A.I. [i dr.], 2011, Patent na izobretenie RU 2414124 C2, 20.03.2011, Zayavka № 2009122691/10 ot 15.06.2009.
4. Narozhnykh K.N., Strizhkova M.V., Konovalova T.V., Fundamental’nye issledovaniya, 2015, № 2 (10), pp. 2158– 2163. (In Russ.)
5. Strizhkova M.V., Soderzhanie, izmenchivost’ i korrelyaciya makroehlementov v organakh i tkanyakh krupnogo rogatogo skota cherno-pestroj porody (Content, variability and correlation of macroelements in organs and tissues of black-and-white cattle), Candidate of Science Dissertation, Novosibirsk, 2018, 131 p.
6. Panov B.L. Petukhov V.L., Ehrnst L.K. [i dr.], Problemy selekcii sel’skokhozyajstvennykh zhivotnykh (Problems of breeding farm animals), Novosibirsk, 1997, 284 p.
7. Korotkevich O., Lyukhanov M.P., Petukhov V.L., Yudin N.S., Single nucleotide polymorphism in dairy cattle populations on West Siberia, 10th World Congress of Genetics Applied to livestock Production, Vancouver, Canada, 2014, DOI: 10.13140/2.1.1987.0084.
8. Mingzhun Liu, Saurbaeva R.T., Venrong Lee [et al.], The impact of the Romanov stud rams genotype on the accumulation of zink in the wool, 2019, DOI: 10.31677/2072-6724-2019-52-3-91-97.
9. Miller I.S., Petukhov V.L., Korotkova G.N., Accumulation of heavy metals in the muscles of zander from Novosibirsk water basin, E.3. Web of conferences. Rroceedings of the 16 h International Conference on Heavy Metals in the Environment electronic edition, 2013, pp. 110007.
10. Konovalova T.V., Korotkevich O.S., Narozhnykh K.N., Petukhov V.L. i dr., Sposob opredeleniya koncentracii svinca v legkikh krupnogo rogatogo skota (Method for Determining Lead Concentration in Lungs of Cattle), 2016, Patent na izobretenie RU 2602915 C1, 20.11.2016, Zayavka № 2015130994/15 ot 24.07.2015.
11. Chysyma R.B., Petukhov V.L., Kuzmina E.E. [et al.], The content of heavy metals in feeds of thé Tyva Republic, 20030 Journal Physique IV; France 107 XII International Conference on Heavy Metals in the Environment, pp. 297– 299, DOI: 10.1051/jp420030300.
12. Chysyma R.B., Bakhtina R.D., Petukhov V.L., Heavy metal concentration in water and soil of different ecological areas of Tyva Republic, Journal Physique IV; 107 p XII International Conference on Heavy Metals in the environment, 2003, pp. 301–302, DOI: 10.1051/jp4::20030301.
13. Sebezhko O.I., Petukhov V.L., Sokolov V.A., Korotkevich O., Comparative assessment of radioactive strontium and cesium contents in the feedstuffs and dairy products of western Siberia, Indian Journal of Ecology, 2017, T. 44, No. 3, pp. 662–666.
14. Sebezhko O.I., Petukhov V.L., Chysyma R.B., Kuzmina E.E., Influence of antropogenic pollution on interior parameters, accumulation of heavy metals in organs and tissues, and the resistance to disorders in the yak population in the republic of Tyva, Journal of Pharmaceutical Sciences and Research, 2017, T. 9, No. 9, pp. 1530–1535.
15. Patrashkov S.A., Korotkevich O.S., Petukhov V.L., Content of heavy metals in the hair, Journal De Physique, IV: JP. editors: Boutron C., Ferrari C., 2003, pp. 1025–1027.
16. Kamaldinov E.V., Petukhov V.L., Korotkevich O.S. [et al.], Genetic similarity of Siberian pig breeds in allele frequencies of serum protein allotype systems, Indian Veterinary Journal, 2018, T. 95, No. 2, pp. 47– 49.
17. Narozhnykh K.N., Izmenchivost’, korrelyacii i uroven’ tyazhelykh metallov v organakh i tkanyakh gerefordskogo skota v usloviyakh Zapadnoj Sibiri (Variability, correlations and levels of heavy metals in organs and tissues of Hereford cattle in Western Siberia), Candidate of Science Dissertation, Novosibirsk, 2019, 163 p.
18. Narozhnykh K.N., Efanova Y.U., Korotkevich O., Petukhov V., Molochnoe i myasnoe skotovodstvo, 2013, No. 1, pp. 24–25. (In Russ.) 19.
19. Petukhov V.L., Afonina I.A., Kleptsyna E.S. [et al.], Effect of copper on biological and productive parameters of laying hens, Research Journal of Pharmaceutical, Biological and chemical sciences, 2016, Vol. 7, No. 5, pp. 1093– 1100.
20. Tsygankova A.R., Kuptsov A.V., Saprykin A.I. [et al.], Analysis of trace elements in the hair of farm animals by atomic emission spectrometry with arc excitation sources, Journal of Pharmaceutical Sciences and Research, 2017, Vol. 9, No. 5, pp. 601–605.
21. Narozhnykh K.N., Konovalova T.V., Fedyaev J.I. [et al.], Iron content in soil, water, fodder, grain, organs and muscular tissues in cattle of Western Siberia, Indian Journal of Ecology, 2017, Vol. 44, No. 2, pp. 217–220.
22. Narozhnykh K.N., Konovalova T.V., Fedyaev J., Lead content in soil, water, forage, grains, organs and the muscle tissue of cattle in Western Siberia, Indian Journal of Ecology, 2018, Vol. 45, No. 4, pp. 866–871.
23. Syso A.I., Lebedeva M.A., Khudyaev S.A. [i dr.], Vestnik NGAU (Novosibirskij gosudarstvennyj agrarnyj universitet), 2017, No. 3 (44), pp. 54–61. (In Russ.)
24. Bolch B., Khuan’ K.D., Mnogomernye statisticheskie metody dlya ehkonomiki (Multivariate Statistical Methods for Economics), Moscow, 1979, 317 p.
25. Rodrigues L.S., Rodrigues da Silva J.A. [et al.], Mineral Content of Liver of Buffaloes (Bubalus bubalis) Rearedin Different Ecosystems in the Eastern Amazon, Animals, 2023, 13, 1157, pp. 1–13, DOI: 10.3390/ani13071157.
26. Tizioto P.C., Decker J.E. [et al.], Detection of quantitative trait loci for mineral content Nelore longissimus dorsi muscle, Genetics Selection Evolution, 2015, T. 47 (15), pp. 1–9, DOI: 10.1186/s12711-014-0083-3.
27. Tair Mateescu R.G., Garrik D.J. [et al.], Genome – wide association study of concentrations of iron and other minerals in longissimus muscle of Angus cattle, Journal of animal Science, 2013, T. 91, pp. 3593–3600, DOI: 10.2527/jas.2012-6079.
Review
For citations:
Strizhkova M.V., Konovalova T.V., Korotkevich O.S., Petukhov B.L., Zaiko O.A., Zheltikov A.I., Kochneva M.L. The effect of the genotype of holstein bulls on the phosphorus content in the liver of descendants. Bulletin of NSAU (Novosibirsk State Agrarian University). 2024;(4):272-279. (In Russ.) https://doi.org/10.31677/2072-6724-2024-73-4-272-279