1. Izuchenie i provedenie DNK-testirovaniya sel'skohozyaystvennyh zhivotnyh po genam, opredelyayuschim produktivnye kachestva: metod. rekomendacii / Z.K. Gadzhiev, E.S. Surzhikova., T.N. Mihaylenko [i dr.] // Stavropol': Stavropol'-servis-shkola, 2022. 78 s. ISBN: 978-5-6048650-3-3 EDN: https://elibrary.ru/KPMYFF

2. Romanishko E.L. Issledovanie polimorfizma rs17872000 v genah kal'paina (capn1) i rs109221039 kal'pastatina (cast) u krupnogo rogatogo skota myasnogo napravleniya produktivnosti // Molekulyarnaya i prikladnaya genetika. T. 32, 2022 g. DOL 0.47612/1999-9127-2022-32-88-96. EDN: https://elibrary.ru/BHCDBW

3. Issledovanie polimorfizma S316G v gene kal'paina (CAPN1) krupnogo rogatogo skota, associirovannogo s organolepticheskim kachestvom myasa / E.L. Romanishko, A.I. Kireeva, M.E. Mihaylova [i dr.] // Materialy IV Mezhdunar. nauch. konf. "Genetika i biotehnologiya XXI veka: problemy, dostizheniya, perspektivy". Minsk. 2020. S. 99.

4. Ivanova I.P., Kabickaya Ya.A. Polimorfizm gena DGAT1 v populyacii korov krasnoy stepnoy porody v Omskoy oblasti // Vestnik Omskogo GAU. 2023. № 4 (52). S. 56-61. EDN: https://elibrary.ru/XZKTDU

5. Selionova M.I., Plahtyukova V.R. Polimorfizm genov CAPN1 i GH i ego svyaz' s produktivnost'yu krupnogo rogatogo skota kazahskoy belogolovoy porody // Seriya konferenciy IOP: Nauki o Zemle i okruzhayuschey srede. 132(2). 2020. № 010132.

6. Kolpakov V.I. Vliyanie nekotoryh polimorfnyh genov na myasnuyu produktivnost' i kachestvo myasa u krupnogo rogatogo skota (obzor) // Zhivotnovodstvo i kormoproizvodstvo. 2020. T. 103. № 4. DOI:https://doi.org/10.33284/2658-3135-103-4-47 EDN: https://elibrary.ru/XQLTWJ

7. Kostuziak P., Slosarz J., Golebiewski M., Grodkowski G., Puppel K. Gene polymorphism and their influence on beef quality. Issues Curr Mol Biol. 2023 30 may;45(6):4749-4762. dol:. DOI:https://doi.org/10.3390/cimb45060302

8. Ma J., Fan A.P., Wang W.S., Zhang J.C., Jiang X.J., Ma R.J., Jia S.Q., Liu F., Lei C.C., Huang Y.Z. [et al.]. Analysis of genetic diversity and genetic structure of Qinchuan cattle conservation population using whole-genome resequencing. // Theriogenology. 2023 Sep 15;208:185-193. DOI:https://doi.org/10.1016/j.theriogenology.2023.06.023 EDN: https://elibrary.ru/THGSQJ

9. Chimidova N.V., Ubushieva A.V., Moiseikina L.G. Genetic structure of the Kalmyk cattle population / E3S WEB OF CONFERENCES. XV International Scientific Conference on Precision Agriculture and Agricultural Machinery Industry "State and Prospects for the Development of Agribusiness - INTERAGROMASH 2022". Rostov-on-Don, 2022. S. 03025.

10. Rol' reproduktivnyh biotehnologiy v vosproizvodstve i sohranenii genofonda redkih i ischezayuschih porod krupnogo rogatogo skota / V.Yu. Babenkov, N.V. Chimidova, A.I. Hahlinov [i dr.] // Zhivotnovodstvo i kormoproizvodstvo. 2023;106 (1),. DOI:https://doi.org/10.33284/2658-3135-106-1-67 EDN: https://elibrary.ru/YJQWOI

11. Genome-wide association study identifies loci and candidate genes for meat quality traits in Simmental beef cattle /j. Xia, X. Qi, Y. Wu, B. Zhu, L. Xu [et al.] // Mammalian Genome. 2016. 27 (5-6). PP. 246-255. EDN: https://elibrary.ru/MMGUZW