Showing 1 - 20 results of 106 for search '"ДНК-анализ"', query time: 0.75s Refine Results
  1. 1
  2. 2
  3. 3
  4. 4
  5. 5
  6. 6
  7. 7
  8. 8
  9. 9
    Academic Journal

    Source: Food systems; Vol 4, No 2 (2021); 111-116 ; Пищевые системы; Vol 4, No 2 (2021); 111-116 ; 2618-7272 ; 2618-9771 ; 10.21323/2618-9771-2021-4-2

    File Description: application/pdf

    Relation: https://www.fsjour.com/jour/article/view/111/140; Анализ рынка мучных кондитерских изделий в России в 2015– 2019 гг, оценка влияния коронавируса и прогноз на 2020–2024 гг. Электронный ресурс: https://marketing.rbc.ru/research/27607/ Дата обращения 12.05.2021.; Российский рынок тортов — современные тенденции и направления развития. Электронный ресурс: https://vproizvodstvo.ru/analitika_rynok/rossijskij_rynok_tortov/ Дата обращения 12.05.2021; Производство основных видов продукции в натуральном выражении (годовые данные с 2017 г.) в соответствии с ОКПД2. Электронный ресурс: http://gks.ru/free_doc/new_site/business/prom/natura/god17.htm Дата обращения 12.05.2021; В России спрос на торты за год вырос на 72%. Электронный ресурс: https://iz.ru/1135176/2021–03–11/v-rossii-spros-na-torty-za-godvyros-na-72 Дата обращения 12.05.2021; ГОСТ Р 53041–2008 «Изделия кондитерские и полуфабрикаты кондитерского производства. Термины и определения». — М.: Стандартинформ, 2019. 16 с.; Sepahvand, R., Bahmani, M., Ahmadi-Roozbahani, H., Rajabi, T., Tavasoli, M., Keshvari, M. et al. (2016). The microbial quality assessment of confectionary products in Lorestan province, West of Iran. Journal of Chemical and Pharmaceutical Sciences, 9(1), 1–5.; El-Kadi, S.M., El-Fadaly H.A., El-Gayar, E.M. (2018). Examination of Pathogenic Bacteria in Some Cake Samples. International Journal of Microbiology and Application, 5(3), 56–63.; Mat Nawawi, N.S., Abdullah, N., Noor, Z.M., Bujang, A. (2016). Microbiological Quality of Chocolate Cake at Retail Outlet Storage in the Perspective of Halalan-Toyyiban. Journal of Applied Environmental and Biological Sciences, 6(9S), 59–63.; Зайко, Е.В., Юшина, Ю.К., Груздев, Е.В., Белецкий, А.В., Марданов, А.В., Батаева, Д.С., Семенова, А.А. (2021). Изучение микробной популяции фаршей сырокопчёных колбас с помощью высокопроизводительного секвенирования. Все о мясе, 2, 64–67. https://doi.org/10.21323/2071–2499–2021–2–64–67; Панчишина, Е.М., Корниенко, Н.Л., Шадрина, Е.В. (2020). Изучение культуральных особенностей дрожжей RHODOTORULA BENTHICA, выделенных из пробиотической кормовой добавки. Научные труды Дальрыбвтуза, 52(2), 5–11.; Bagy, M., Abd-Alla, M., Nafady, N., Morsy, F., Mahmoud, G. (2016). Bioconversion of plant wastes to β-carotene by Rhodotorula glutinis KU550702. European Journal of Biological Research, 6(4), 226–241.; Mussagy, C. U., Guimarães, A. A. C., Rocha, L. V. F., Winterburn, J., SantosEbinuma, V. D. C., Pereira, J. F. B. (2021). Improvement of carotenoids production from rhodotorula glutinis CCT 2186. Biochemical Engineering Journal, 165, Article 107827 https://doi.org/10.1016/j.bej.2020.107827; Tkáčová, J., Čaplová, J., Klempová, T., Čertík, M. (2017). Correlation between lipid and carotenoid synthesis in torularhodin-producing rhodotorula glutinis. Annals of Microbiology, 67(8), 541–551. https://doi.org/10.1007/s13213–017–1284–0; González, J., Romero-Aguilar, L., Matus-Ortega, G., Pablo Pardo, J., Alejandro Flores-Alanis, Segal-Kischinevzky, C. (2020). Yeasts adapted to the cold: the biotechnological treasure of Antarctica. TIP Revista Especializada en Ciencias Químico-Biológicas, 23, 1–14. https://doi.org/10.22201/fesz.23958723e.2020.0.267 (In Spanish); Wirth, F., Goldani, L. Z. (2012). Epidemiology of rhodotorula: An emerging pathogen. Interdisciplinary Perspectives on Infectious Diseases, 2012, Article 465717 https://doi.org/10.1155/2012/465717; Yurkov, A. M., Kachalkin, A. V., Daniel, H. M., Groenewald, M., Libkind, D., de Garcia, V. et al. (2015). Two yeast species cystobasidium psychroaquaticum f. a. sp. nov. and cystobasidium rietchieii f. a. sp. nov. isolated from natural environments, and the transfer of rhodotorula minuta clade members to the genus cystobasidium. Antonie Van Leeuwenhoek, International Journal of General and Molecular Microbiology, 107(1), 173–185. https://doi.org/10.1007/s10482–014–0315–0; Liu, Q., Wang, X. (2020). Characterization and phylogeneticanalysis of the complete mitochondrial genome of a basidiomycetous yeast Cystobasidium sp. (Cystobasidiales: Cystobasidiaceae). Mitochondrial DNA Part B, 5(3), 2449–2450. https://doi.org/10.1080/23802359.2020.1777910; Градова, Н.Б., Бабусенко Е. С., Горнова Н. Б. (2004). Лабораторный практикум по общей микробиологии. М.: ДеЛи принт, 2004.; https://www.fsjour.com/jour/article/view/111

  10. 10
  11. 11
  12. 12
  13. 13
    Academic Journal

    Source: Theory and Practice of Forensic Science; Том 15, № 1 (2020); 84-93 ; Теория и практика судебной экспертизы; Том 15, № 1 (2020); 84-93 ; 2587-7275 ; 1819-2785

    File Description: application/pdf

    Relation: https://www.tipse.ru/jour/article/view/581/509; Неретина Н.С. Закономерности возникновения и развития новых родов и видов судебной экспертизы // Теория и практика судебной экспертизы. 2015. № 2 (38). С. 194–198.; Бекжанов Ж.Л., Гулевская В.В., Омельянюк Г.Г., Хазиев Ш.Н. Международный опыт и перспективы развития на евразийском пространстве судебно-экспертных сетей, связанных с расследованием преступлений против дикой флоры и фауны // Теория и практика судебной экспертизы. 2014. № 1 (33). С. 102–107.; Омельянюк Г.Г. Судебная экспертиза объектов дикой флоры и фауны. Учебное пособие. М.: Спутник+, 2017. 103 с.; Brooks J.W. (ed). Veterinary Forensic Pathology. Vol. 1. Cham: Springer, 2018. 155 p. https://doi.org/10.1007/978-3-319-67172-7; Brooks J.W. (ed). Veterinary Forensic Pathology. Vol. 2. Cham: Springer, 2018. 169 p. https://doi.org/10.1007/978-3-319-67175-8; Stroud K. Wildlife Forensics and the Veterinary Practitioner // Seminars in Avian and Exotic Pet Medicine. 1998. Vol. 7. No. 4. P. 182–192.; Омельянюк Г.Г., Хазиев Ш.Н., Гулевская В.В. Судебно-экспертное обеспечение расследования преступных посягательств на тигров // Теория и практика судебной экспертизы. 2017. Т. 12. № 2. С. 18–26. https://doi.org/10.30764/1819-2785-2017-12-2-18-26; Viner T.C., Kagan R.A. Chapter 2. Forensic Wildlife Pathology. In: Terio K.A., McAloose D., Leger J.St. (eds). Pathology of Wildlife and Zoo Animals. Academic Press, 2018. P. 21–40. https://doi.org/10.1016/B978-0-12-8053065.00002-X; Арамилев С.В., Киселева Е.С., Фоменко П.В. Проведение судебных экспертиз в отношении амурского тигра и других животных: проблемы и пути их решения // Теория и практика судебной экспертизы. 2017. Т. 12. № 3. С. 105–109. https://doi.org/10.30764/1819-2785-2017-12-3-105-109; Омельянюк Г.Г., Градусова О.Б., Никулина М.В. Международная научно-практическая конференция «Восток-Запад: партнерство в судебной экспертизе. Совершенствование судебно-экспертной деятельности как фактор обеспечения экологической безопасности и сохранения биоразнообразия» // Теория и практика судебной экспертизы. 2017. Т. 12. № 2. С. 119–126. https://doi.org/10.30764/1819-2785-2017-12-2-119-126; Чернова О.Ф., Перфилова Т.В. Сканирующая электронная микроскопия как эффективный метод судебно-биологической экспертизы (на примере волос вымерших и рецентных видов млекопитающих) // Теория и практика судебной экспертизы. 2018. Т. 13. № 1. С. 88– 94. https://doi.org/10.30764/1819-2785-2018-13-1-88-94; Arati I. Forensic DNA Analysis for Animal Protection and Biodiversity Conservation: A Review // Journal for Nature Conservation. 2014. Vol. 22. No. 3. P. 195–205. https://doi.org/10.1016/j.jnc.2013.12.001; McCord B.R., Gauthier Q., Cho S., Roig M.N., Gibson-Daw G.C., Young B., Taglia F., Zapi¬co S.C., Mariot R.F., Lee S.B., Dunca G. Forensic DNA Analysis // Anal. Chem. 2019. Vol. 91. No. 1. P. 673–688. https://doi.org/10.1021/acs.analchem.8b05318; Vipin, Sharma V., Sharma Ch.P., Kumar V.P., Goyal S.P. Pioneer Identification of Fake Tiger Claws Using Morphometric and DNA-Based Analysis in Wildlife Forensics in India // Forensic Science International. 2016. Vol. 266. P. 226– 233. https://doi.org/10.1016/j.forsciint.2016.05.024; Masters A., Ogden R., Wetton J.H., Dawnay N. Defining end User Requirements for a FieldBased Molecular Detection System for Wildlife Forensic Investigations // Forensic Science International. 2019. Vol. 301. P. 231–239. https://doi.org/10.1016/j.forsciint.2019.05.041; Ewart K.M., Lightson A.L., Sitam F.T., RovieRyan J.J., Mather N, McEwing R. Expediting the Sampling, Decalcification, and Forensic DNA Analysis of Large Elephant Ivory Seizures to Aid Investigations and Prosecutions // Forensic Science International: Genetics. 2020. Vol. 44. No. 102187. https://doi.org/10.1016/j.fsigen.2019.102187; Yan D., Luo J.Y., Han Y.M., Peng C., Dong X.P., Chen S.L., Sun L.G., Xiao X.H. Forensic DNA Barcoding and Bio-Response Studies of Animal Horn Products Used in Traditional Medicine // PLoS One. 2013. 8(2):e55854. https://doi.org/10.1371/journal.pone.0055854; Ahlers N., Creecy J., Frankham G., Johnson R.N., Kotze A., et al. ‘ForCyt’ DNA Database of Wildlife Species // Forensic Science International: Genetics Supplement Series 6. 2017. e466–e468. https://doi.org/10.1016/j.fsigss.2017.09.195; Lorenzini R., Cabras P., Fanelli R., Carboni G.L. Wildlife Molecular Forensics: Identification of the Sardinian Mouflon Using STR Profiling and the Bayesian Assignment Test // Forensic Science International: Genetics. 2011. Vol. 5. Issue 4. P. 345–349. https://doi.org/10.1016/j.fsigen.2011.01.012; Ghosh A., Basu Sh., Jabin G., Khatri H., Singh S.K., et al. Wildlife Forensics in Voiding False Offences: A Case Study to Deal with Unidentified Cooked Meat // Forensic Science International: Reports. 2019. Vol. 1.1000011. https://doi.org/10.1016/j.fsir.2019.100011; Coghlan M.L., Haile J., Houston J., Murray D.C., White N.E., Moolhuijzen P., Bellgard M.I., Bunce M. Deep Sequencing of Plant and Animal DNA Contained within Traditional Chinese Medicines Reveals Legality Issues and Health Safety Concerns // PLoS Genet. 2012. 8(4):e1002657. https://doi.org/10.1371/journal.pgen.1002657; https://www.tipse.ru/jour/article/view/581

  14. 14
  15. 15
  16. 16
    Book

    File Description: application/pdf

  17. 17
  18. 18
  19. 19
  20. 20
    Academic Journal

    Source: Vavilov Journal of Genetics and Breeding; Том 21, № 4 (2017); 477-486 ; Вавиловский журнал генетики и селекции; Том 21, № 4 (2017); 477-486 ; 2500-3259

    File Description: application/pdf

    Relation: https://vavilov.elpub.ru/jour/article/view/1029/944; Aleksanyan S.M. Agrobioraznoobrazie i geopolitika [Agrobiodiversity and geopolitics]. St. Petersburg: GNTc RF VIR Publ., 2002. (in Russian); Altukhov Yu.P., Korochkin L.I., Rychkov Yu.G. Hereditary biochemical diversity in the processes of evolution and individual development. Genetika = Genetics (Moscow). 1996;32(6):1450-1473. (in Russian); Altukhov Yu.P., Rychkov Yu.G. Population systems and their structural components. Genetic stability and variability. Zhurnal obshchey biologii = Journal of General Biology. 1970;31(5):507-526. (in Russian); Altukhov Yu.P., Salmenkova E.A., Kurbatova O.L., Pobedonostseva E.Yu., Politov D.V., Evsyukov A.N., Zhukova O.V., Zakharov I.A., Moiseeva I.G., Stolpovsky Yu.A., Pukhal’skiy V.A., Pomortsev A.A., Upel’niek V.P., Kalabushkin B.A. Dinamika populyatsionnykh genofondov zhivotnykh [Dynamics of populational animal gene pools]. Dinamika populyatsionnykh genofondov pri antropogennykh vozdeystviyakh. Pod red. Yu.P. Altukhova [Yu.P. Altukhov (Ed.) The Dynamics of Populational Gene Pools under Human Actions]. Moscow: Nauka Publ., 2004;110-294. (in Russian); Belyayev D.K. Problems and prospects for research on animal genetics and breeding. Genetika = Genetics (Moscow). 1987;23(6):937-946. (in Russian); Bodo I. Methods and experiences with in situ preservation of farm animals. Department of Animal Husbandry Univ. of Veterinary Sci. Budapest, 1989.; Brem G., Graf F., Krausslich H. Genetic and economic differences among methods of gene conservation in farm animals. Livestock Production Sci. 1984;11(l):65-68.; Diamond J. Evolution, consequences and future of plant and animal domestication. Nature. 2002;418:700-707.; Dragunesku C. Ratiunsi procedure penru conservarea materialului de genetic la animalele domestic. Rev. Cresteria Anim. 1975;3:25-30.; Drucker A.G., Anderson S. Economic analysis of animal genetic resources and the use of rural appraisal methods: Lesson from South-East Mexico. Int. J. Agricult. Sustainability. 2004;2:77-97.; EAAP/FAO. Survey of Livestock populations global animal genetic data bank EAAP. Hanover: EAAP/FAO, 1991.; Ernst L.K., Dmitriev N.G., Paronyan I.A. Geneticheskie resursy selskokhozyaystvennykh zhivotnykh v Rossii i sopredelnykh stranakh [Farm Animal Genetic Resources in Russia and Neighboring Countries]. St. Petersburg: All-Russian Research Institute of Genetics and Breeding Farm Animals Publ., 1994. (in Russian); Ernst L.K., Zinovieva N.A. Biologicheskie problemy zhivotnovodstva v XXI veke [Biological issues of breeding in the 21th century]. Moscow: Russian Academy of Agricultural Sciences Publ., 2008. (in Russian); Erokhin A.L., Erokhin S.A. Ovtsevodstvo [Sheep Breeding]. Moscow: Moscow State University Publ., 2004. (in Russian); Evanno G., Regnaut S., Goud J. Detecting the number of clusters of individuals using the software STRUCTURE: a simulation study. Mol. Ecology. 2005;14:2611-2620.; FAO. Primary guidelines for development of national farm animal genetic resources management plans. Rome, 1998.; FAO. The state of Food Security in the World. Rome: FAO, 2000.; FAO. Marker assisted selection current status and future perspectives in crops, livestock, forestry and fish. Ed. El. Guimaraes, J. Ruane, A. Sonnino, B. Scherf, J.D. Dargie. Rome, 2007.; FAO. Polozhenie del v oblasti prodovolstviya i selskogo khozyaystva. Zhivotnovodstvo: v poiskakh balansa [Situation in the field of food and agriculture. Breeding: in search of the balance]. Rome: FAO, 2009. (in Russian); FAO. Vtoroy doklad o sostoyanii mirovykh geneticheskikh resursov zhivotnykh dlya proizvodstva prodovolstviya i vedeniya selskogo khozyaystva. Kratkoe izlozhenie [The second report on the state of the world’s animal genetic resources for food and agriculture. Summary]. Rome: FAO, 2015. (in Russian); FAO. Development of integrated multipurpose animal recording systems. Rome, 2016.; Franklin J.R. Evolutionary changes in small populations. Soulé M.E., Wilcox B.A. (Eds) Conservation Biology. Sunderland: Sinauer Associates Inc. Publishers, 1980;135-149 (Russ. ed.: M. Suley, B. Uilkoks (Eds). Biologiya okhrany prirody. Perevod S.A. Ostroumova; Pod red. A.V. Yablokova. Moscow: Mir Publ., 1983;160- 176). (in Russian); Gandini G.C., Villa E. Analysis of the cultural value of local livestock breeds: a methodology. J. Anim. Breed. Genet. 2003;120(1):1-11.; Glazko V.I., Stolpovsky Yu.A., Tarasyuk S.I., Bukarov N.G., Popov N.A. Genetic structure of Pinzgau breed in the Carpathian region. Genetika = Genetics (Moscow). 1996;32(5):676-684. (in Russian); Glembotsky Y.L., Kopylovskaya G.Ya. The problems of saving farm animals gene pools. Zhivotnovodstvo = Farm Аnimals. 1972;6:59-61. (in Russian); Ivanov M.F. Porody selskokhozyaystvennoy ptitsy [Fowl breeds]. Moscow: Ekon. zhizn Publ., 1924. (in Russian); Krasota V.F., Lobanov V.T., Dzhaparidze T.G. Razvedenie selskokhozyaystvennykh zhivotnykh [Breeding of Farm Animals]. Moscow: Kolos Publ., 1983. (in Russian); Lobashev M.E. Ocherki po istorii russkogo zhivotnovodstva. Otv. red. I.F. Shulzhenko [I.F. Shulzhenko (Exec. ed.) Essays on the history of Russian animal breeding]. Moscow; Leningrad, 1954. (in Russian); Maijala K. Need and methods of gene conservation in animal breeding. Ann. Genet. Sel. Anim. 1970;2:403-415.; Marzanov N.S. Genetic resources of animals are a national concern. Izvestiya Timiryazevskoy selskokhozyaystvennoy akademii = Proceedings of the Timiryazev Agricultural Academy. 2007;5:135-141. (in Russian); Meuwissen T., Hayes B., Goddard M. Genomic selection: A paradigm shift in animal breeding. Anim. Front. 2016;6(1):6-14.; Meuwissen T.H.E., Hayes B.J., Goddard M.E. Prediction of total genetic value using genome- wide dense marker maps. Genetics. 2001; 157:1819-1829.; Moiseeva I.G. Otechestvennye porody kur [Russian breeds of chickens]. Moiseeva I.G., Zakharov I.A., Mitichashvili R.S., Tikhonov V.N. Geneticheskie resursy selskokhozyaystvennykh zhivotnykh: redkie i ischezayushchie otechestvennye porody. Otv. red. I.A. Zakharov [I.A. Zakharov (Ed.) Farm Animal Genetic Resources: Rare and Endangered Russian Breeds]. Moscow: Nauka Publ., 1992;11-112. (in Russian); Moiseeva I.G., Ukhanov S.V., Stolpovsky Yu.A., Sulimova G.E., Kashtanov S.N. Genofondy selskokhozyaystvennykh zhivotnykh: geneticheskie resursy zhivotnovodstva Rossii. Otv. red. I.A. Zakharov [I.A. Zakharov (Ed.) Gene Pools of Farm Animals: Genetic Resources for Russian Animal Breeding]. Moscow: Nauka Publ., 2006;467. (in Russian); Negrini R., Nijman I.J., Milanesi E., Moazami-Goudarzi K., Williams J.L., Erhardt G., Dunner S., Rodellar C., Valentini A., Bradley D.G., Olsaker I., Kantanen J., Ajmone-Marsan P., Lenstra J.A. Differentiation of European cattle by AFLP fingerprinting. Anim. Genet. 2007;38:60-66.; Nesteruk L.V., Makarova N.N., Evsyukov A.N., Svisheva G.R., Lhasaranov B.B., Stolpovsky Yu.A. Comparative evaluation of sheep breeds gene pool based on ISSR analysis. Genetika = Genetics (Moscow). 2016;3:1-11. (in Russian); Oldenbroek J.K. Genebanks and the Conservation of Farm Animal Genetic Resources. Lelystad, the Netherlands: DLO Institute for Anim. Science and Health, 1999.; Paronyan I.A. Geneticheskie resursy selskokhozyaystvennykh zhivotnykh [Genetic Pool of Russian Domesticated Animals]. St. Petersburg: Prospekt Nauki Publ., 2016. (in Russian); Paronyan I.A., Prokhorenko P.N. Genofond domashnikh zhivotnykh Rossii [Genetic Pool of Russian Domesticated Animals]. St. Petersburg– Moscow–Krasnodar: Lan Publ., 2008. (in Russian); Potokina E.K., Aleksandrova T.G. Coefficients of genetic originality of Vicia sativa L. species collection on the results of molecular marking. Genetika = Genetics (Moscow). 2008;44(11):1508-1516. (in Russian); Raoul J., Danchin-Burge C., de Rochambeau H., Verrier E. Salvage a software to manage a population with few pedigrees. Book of Abstracts of the 55th Annual Meeting of the European Association for Animal Production, Bled, Slovenia, 5–9 Sept. 2004. Ed. Y. van der Honing. Wageningen, the Netherlands: Wageningen Acad. Publ., 2004.; Rychkov Yu.G. The system of ancient human isolates of North Asia in the highlight of population stability and evolution. Voprosy antropologii = Problems of Anthropology. 1973;44:3-22 (in Russian); Sambraus H.H. Warum sollten alte und gefahrdete nutztierrassen er halten warden. Bongo. 1990;16:17-32.; Senner J. Inbreeding depression and the survival of zoo populations. Conservation Biology. Ed. V. Soule, B. Wilcox. Massachusetts, 1980;151-169.; Serebrovsky A.S. Genogeografiya i genofond selskokhozyaystvennykh zhivotnykh [Farm animals genogeography and gene pools]. Nauchnoe slovo = Scientific Word (Moscow). 1928;9:3-22. (in Russian); Simon D.L. Conservation of animal genetic recourses – A review. Livestock Product. Sci. 1984;11(1):23-36.; Smaragdov M.G. Genomic selection of milk cattle: the practical application over five years. Genetika = Genetics (Moscow). 2013;49(11): 1251-1260. (in Russian); Stolpovsky Yu.A., Evsyukov A.N., Sulimova G.E. Cattle breeds genomic diversity on intermicrosatellite polymorphism markers. Genetika = Genetics (Moscow). 2013;49(5):641- 648. (in Russian); Stolpovsky Yu.A., Kol N.V., Evsyukov A.N., Ruzina M.N., Shimiyit L.V., Sulimova G.E. Analysis of the genetic structure of Tuvinian short-fattailed sheep populations with the use of the ISSR- PCR method. Genetika = Genetics (Moscow). 2010a;46(12):1660-1670. (in Russian); Stolpovsky Yu.A., Lazebny O.E., Stolpovsky K.Yu., Sulimova G.E. The use of the ISSR-PCR method for identifying domesticated animal breeds and species, inferring their population structures, and assessing gene pool similarity. Genetika = Genetics (Moscow). 2010b; 46(6):1-9. (in Russian); Soulé M.E. Thresholds for survival: maintaining fitness and evolutionary potential. Soulé M.E., Wilcox B.A. (Eds) Conservation Biology. Sunderland: Sinauer Associates Inc. Publishers, 1980;151-159; (Russ. ed.: M. Suley, B. Uilkoks (Eds). Biologiya okhrany prirody. Perevod S.A. Ostroumova; Pod red. A.V. Yablokova. Moscow: Mir Publ., 1983;177-197).; Sulimova G.E. DNA markers in genetic studies: types of markers, their properties and applications. Uspekhi sovremennoy biologii = Advances in Current Biology. 2004;124(3):260-271. (in Russian); Tisdell C. Socioeconomic causes of loss of animal genetic diversity: analysis and assessment. Ecol. Economics. 2003;45(3):365-376.; Veprintsev B.N., Rott N.N. Strategiya sokhraneniya zhivotnogo i rastitelnogo mira Zemli [Strategy for the preservation of the flora and fauna of the Earth]. Konservatsiya geneticheskikh resursov [Conservation of Genetic Resources]. Pushchino, 1991;5-18. (in Russian); Yudin N.S., Lukyanov K.I., Voevoda M.I., Kolchanov N.A. Application of reproductive technologies to the improvement of dairy cattle genomic selection. Vavilovskii Zhurnal Genetiki i Selektsii = Vavilov Journal of Genetics and Breeding. 2015;19(3):277-285. (in Russian); https://vavilov.elpub.ru/jour/article/view/1029