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Evaluation of the genetic structure of Polish Red-and-White cattle to support their genetic resources conservation program Cover

Evaluation of the genetic structure of Polish Red-and-White cattle to support their genetic resources conservation program

Open Access
|Aug 2025

References

  1. Bora S.K., Tessema T.S., Girmay G.l. (2023). Genetic Diversity and Population Structure of Selected Ethiopian Indigenous Cattle Breeds Using Microsatellite Markers. Genet. Res., 1106755: 12
  2. Botstein, D., White, R.L., Skolnick, M., Davis, R.W. (1980). Construction of a genetic linkage map in man using restriction fragment length polymorphisms. Am. J. Hum. Genet., 32: 314–331.
  3. Ciampolini R., Cecchi F., Ciani E., Mazzanti E., Tancredi M., Matteoli B., Presciuttini S., Cianci D. (2007). Genetic variability of three local cattle breeds (Calvana, Pontremolese, Garfagnina) by STR analysis. Ital. J. Anim. Sci., 6: 81-81.
  4. Demir E., Balcioglu, E. (2019). Genetic diversity and population structure of four cattle breeds raised in Turkey using microsatellite markers. Czech J. Anim. Sci., 64: 411–419.
  5. Gamarra D., Taniguchi M., Aldai N., Arakawa A., Lopez-Oceja A., de Pancorbo M.M. (2020). Genetic Characterization of the Local Pirenaica Cattle for Parentage and Traceability Purposes. Animals, 10: 1584.
  6. Hu L. R., Li D., Chu Q., Wang Y., Zhou L., Yu Y., Zhang Y., Zhang S., Usman T., Xie Z., Hou S., Liu L., Shi W. (2021). Selection and implementation of single nucleotide polymorphism markers for parentage analysis in crossbred cattle population. Animal, 15: 100066.
  7. Hulsegge I., Schoon M., Windig J., Neuteboom M., Hiemstra S. J., Schurink A. (2019). Development of a genetic tool for determining breed purity of cattle. Livest. Sci, 223: 60–67.
  8. ISAG. Cattle molecular markers and parentage testing (CMMPT) 2023.
  9. Jaiswal S., Dhanda S.K., Iquebal M.A., Arora V., Shah T.M., Angadi U.B., Joshi C.G., Raghava G.P.S., Rai A., Kumar D., (2016). BIS-CATTLE: a web server for breed identification using microsatellite DNA markers. Curr. Bioinform., 5: 10-17.
  10. Jamieson A., Taylor S.C.S. (1997). Comparisons of three probability formulae for parentage exclusion. Anim. Genet., 28: 397–400.
  11. Jasielczuk I., Gurgul A., Szmatoła T. Radko A., Majewska A., Sosin E., Litwińczuk Z., Rubiś D., Ząbek T. (2024). The use of SNP markers for cattle breed identification. J. Appl. Genet. 65: 575–589.
  12. Madilindi M.A., Banga C.B., Bhebhe E., Sanarana Y.P., Nxumalo K.S., Taela M.G., Mapholi N O. (2019). Genetic diversity and relationships among three Southern African Nguni cattle populations. Tropical Animal Health and Production. 52: 753-762.
  13. Martinez R., Bejarano D., Ramírez J., Ocampo R., Polanco N., Perez J.E., Onofre H.G., Rocha J.F. (2023). Genomic variability and population structure of six Colombian cattle breeds. Trop. Anim. Health. Prod., 55: 185.
  14. Nei M., Roychoudhury A.K. (1974). Sampling variances of heterozygosity and genetic distance. Genetics, 76: 379–390.
  15. Ocampo R.J., Martínez J.F., Martínez R. (2021). Assessment of genetic diversity and population structure of Colombian Creole cattle using microsatellites. Trop. Anim. Health. Prod., 53: 122.
  16. Opara A., Razpet A. and Zobec Logar B. (2012). Breed assignment test of Slovenian cattle breeds using microsatellites. Acta Agric. Slov., 100: 167-170.
  17. Peakall R., Smouse P. E. (2012) GenAlEx 6.5: genetic analysis in Excel. Population genetic software for teaching and research – an update. Bioinformatics, 28: 2537–2539,
  18. Pritchard J. K., Stephens M., Donnelly P. (2000). Inference of population structure using multilocus genotype data. Genetics, 155: 945–959.
  19. Genetic Resource Conservation Program of Polish Red-and-White cattle. IZ-PIB (2023), in Polish
  20. Polak G., Krupiński J., Martyniuk E., Calik J., Kawęcka A., Krawczyk J., Majewska A. A., Sikora J., Sosin Bzducha E., Szyndler Nędza M., Tomczyk Wrona I. (2020). The risk status of Polish local breeds under conservation programmes new approach. Ann. Anim. Sci., 21: 125-140.
  21. Radko A., Żyga A., Ząbek T., Słota E. (2005). Genetic variability among Polish Red, Hereford and Holstein-Friesian cattle raised In Poland based on analysis of microsatellite DNA sequences. J. Appl. Gen., 46: 89-91.
  22. Radko A. (2008). Microsatellite DNA polymorphism and its usefulness for pedigree verification of cattle raised in Poland. Ann. Anim. Sci., 8, 4: 205-216.
  23. Radko A., Rychlik T. (2009). Use of blood group tests and microsatellite DNA markers for parentage verification in a population of Polish Red-and-White cattle. Ann. Anim. Sci., 9: 119-125.
  24. Radko A. (2010). Application of a complementary set of 10 microsatellite DNA markers for parentage verification in Polish Red cattle. Ann. Anim. Sci., 10: 9-15.
  25. Schnabel R.D., Ward T.J., Der J.N. (2000). Validation of 15 microsatellites for parentage testing in North American bison, Bison bison and domestic cattle. Anim. Genet., 31: 360–366.
  26. Shang S., Wang Y., Yu X., Zhang D., Luo R., Jiang R., Zhao G., Du X., Zhang J., Irwin D. M., Wang Z., Zhang S. (2024). Development of a 17-plex STR typing system for the identification of individuals and parentage testing in cattle. Sci Rep., 14(1): 24998.
  27. Sosin E., Dziad M., (2024). Realizacja programu ochrony rasy polskiej czerwono-białej w latach 2008-2024. Mat. Konf. LXXXVIII Zjazd Naukowy Polskiego Towarzystwa Zootechnicznego „Hodowla zwierząt perspektywą rozwoju Polski”, str. 38, (in Polish)
  28. Sosin-Bzducha E. (2017). Comparison of meat quality of the Polish Red-and-White and Simmental young bulls. Ann. Warsaw Univ. of Life Sci. –SGGW, Anim. Sci., 56:129-136.
  29. Sosin-Bzducha E., Puchała M. (2017). Effect of breed and aging time on physicochemical and organoleptic quality of beef and its oxidative stability. Arch. Anim. Breed., 60: 191-198.
  30. Stevanov-Pavlović M., Dimitrijević V., Marić S., Radović D., Stevanović J., Stanimirovic Z. (2015). Applicability assessment of a standardized microsatellite marker set in endangered Busha cattle. Slovenian Vet. Res., 52: 133-9.
  31. Van de Goor L.H.P., Koskinen M.T., Van Haeringen W.A. (2011). Population studies of 16 bovine STR loci for forensic purposes. Intern. J. Leg. Med., 125: 111–119,
  32. Wright S. (1978). Evolution and the Genetics of Populations; University of Chicago Press: Chicago, IL, USA.
  33. Wyniki oceny PFHBiPM, (2023) (in Polish).
DOI: https://doi.org/10.2478/aoas-2025-0075 | Journal eISSN: 2300-8733 | Journal ISSN: 1642-3402
Language: English
Submitted on: Feb 10, 2025
Accepted on: Jun 18, 2025
Published on: Aug 26, 2025
Published by: National Research Institute of Animal Production
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2025 Anna Radko, Ewa Sosin, Anna Koseniuk, Agnieszka Szumiec, published by National Research Institute of Animal Production
This work is licensed under the Creative Commons Attribution 4.0 License.

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