Vinogradov, V.K., Polyculture in commercial fish farming: an overview, Tr. Tsentr. Nauchno-Issled. Inst. Inf. Tekhn.-Ekon. Issled. Rybn. Khoz., 1985, pp. 1–36.
Rybovodno-biologicheskie normy dlya ekspluatatsii prudovykh khozyaistv (vvedeny v deistvie prikazom Minrybkhoza SSSR ot 26.04.1985 N 254) (Fish-Breeding and Biological Standards for the operation of Pond Farms (put into effect by Order of the USSR Ministry of Fisheries April 26, 1985, no. 254)), Moscow, 1985, 2nd ed.
L’vov, Yu.B., Stocking density of different fish species in polyculture, Vestn. Astrakh. Gos. Tekhn. Univ., Ser. Rybn. Khoz., 2017, no. 3, pp. 74–79. https://doi.org/10.24143/2073-5529-2017-3-74-79
Bagrov, A.M., Biologicheskie osnovy akklimatizatsii i tekhnologii razvedeniya i vyrashchivaniya dal’nevostochnykh rastitel’noyadnykh ryb (Biological Principles of Acclimatization and Technologies of Breeding and Rearing of Far Eastern Herbivorous Fishes), Moscow: Tipografiya Rossel’khozakademii, 2005.
Bagrov, A.M., Far Eastern herbivorous fishes: acclimatization history and their value (towards 50th anniversary of industrial use), Sostoyanie i perspektivy razvitiya presnovodnoi akvakul’tury (The State and Prospects of Freshwater Aquaculture Progress) (Proc. Int. Theor.-Pract. Conf.), Moscow, 2013, pp. 114–120.
Tikhomirov, O.V., The main stages of the ichthyocena formation in the cooling ponds of the Kalinin Nuclear Power Plant, Vestn. Tver. Gos. Univ., Ser. Geogr. Geoekol., 2022, vol. 2, no. 38, pp. 13–24.
Wohlfarth, G.W., Heterosis for growth rate in common carp, Aquaculture, 1993, vol. 113, pp. 31–46.
Morgulev, S.K., Pronina, G.I., and Alimkina, O.V., Comparative evaluation of carp crosses based on biochemical parameters, Vestn. Astrakh. Gos. Tekhn. Univ., Ser. Rybn. Khoz., 2024, no. 4, pp. 107–113. https://doi.org/10.24143/2073-5529-2024-4-107-113
Khotyleva, L.V., Kilchevsky, A.V., and Shapturenko, M.N., Theoretical aspects of heterosis, Vavilovskii Zh. Genet. Sel., 2016, vol. 20, no. 4, pp. 482–492. https://doi.org/10.18699/VJ16.174
Paril, J., Reif, J., Fournier-Level, A., and Pourkheirandish, M., Heterosis in crop improvement, Plant J., 2024, vol. 117, pp. 23–32. https://doi.org/10.1111/tpj.16488
Article CAS PubMed Google Scholar
Zhang, H., Li, R., Zeng, Yu., et al., Novel screening of molecular markers reveals genetic basis for heterosis in hybrids from red crucian carp and white crucian carp, Aquaculture, 2025, vol. 599, p. 742098. https://doi.org/10.1016/j.aquaculture.2024.742098
Sbornik normativno-tekhnologicheskoi dokumentatsii po tovarnomu rybovodstvu (Collection of Regulatory and Technological Documentation on Commercial Fish Farming), Makarova, S.B., Ed., Moscow: Agropromizdat, 1986.
Ganchenko, M.V., Mindra, A.V., Reshetnikov, S.I., and Tyurin, V.V., Prospects for two-line breeding of silver carp in the Krasnodar Kray, Rybovodstvo, 2019, vols. 3—4, pp. 40—42.
Veprintsev, B.M. and Rott, N.N., Problemy sokhraneniya genofonda: konservatsiya geneticheskikh resursov (Challenges in Preserving the Gene Pool: Conservation of Genetic Resources), Pushchino: Pushchinskiy Nauchnyi Tsentr Akademii Nauk SSSR, 1984.
Vlasov, V.A., Maslova, N.I., and Pavlov, A.D., Conservation and restoration of the gene pool of aquaculture fish in Russia, Izv. Timiryazev. S.-kh. Akad., 2012, vol. 2, pp. 83—92.
Stolpovskii, Yu.A. and Zakharov-Gezekhus, I.A., The problem of conservation of gene pools of domesticated animals, Vavilovskii Zh. Genet. Sel., 2017, vol. 21, no. 4, pp. 477—486. https://doi.org/10.18699/VJ17.266
Tyurin, V.V., Analysis of variability of quantitative trait complexes as a methodology for ecological and genetic study of natural fish populations and populations under selection, Extended Abstract of Doctoral Dissertation, Kuban. Gos. Univ., Krasodar, 2010.
Tyurin, V.V. and Shcheglov, S.N., Diskriminantnyi analiz v biologii: monografiya (Discriminant Analysis in Biology: A Monograph), Krasodar: Kuban. Gos. Univ., 2015.
Demkina, N.V., Biochemical markers in breeding and rearing of carp and sturgeon fish: Extended Abstract of Doctoral Dissertation, Rybnoe: Vseross. Nauchno-Issled. Inst. Presnovod. Rybn. Khoz., 2005.
Christopher, G., Genetic variation and differentiation in African catfish, Clarias gariepinus, assessed by heterologous microsatellite DNA, Ind. J. Biotechnol., 2015, vol. 14, no. 3, pp. 388—393. https://doi.org/10.1002/ece3.2715
Deniskova, T.E., Sermyagin, A.A., Bagirov, V.A., et al., Comparative analysis of the effectiveness of STR and SNP markers for intraspecific and interspecific differentiation of the genus Ovis, Russ. J. Genet., 2016, vol. 52, no. 1, pp. 79—84. https://doi.org/10.1134/S1022795416010026
Li, Y., Ludwig, A., and Peng, Z., Geographical differentiation of the Euchiloglanis fish complex (Teleostei: Siluriformes) in the Hengduan Mountain Region, China: phylogeographic evidence of altered drainage patterns, Ecol. Evol., 2017, vol. 7, no. 3, pp. 928—940. https://doi.org/10.1002/ece3.2715
Article PubMed PubMed Central Google Scholar
Conyers, C.M., Allnutt, T.R., Hird, H.J., et al., Development of a microsatellite-based method for the differentiation of European wild boar (Sus scrofa scrofa) from domestic pig breeds (Sus scrofa domestica) in food, J. Agric. Food Chem., 2012, vol. 60, no. 13, pp. 3341—3347. https://doi.org/10.1021/jf205109b
Article CAS PubMed Google Scholar
Mia, M.Y., Taggart, J.B., Gilmour, A.E., et al., Detection of hybridization between Chinese carp species (Hypophthalmichthys molitrix and Aristichthys nobilis) in hatchery broodstock in Bangladesh, using DNA microsatellite loci, Aquaculture, 2005, vol. 247, nos. 1—4, pp. 267—273. https://doi.org/10.1016/j.aquaculture.2005.02.018
Pravdin, I.F., Rukovodstvo po izucheniyu ryb (A Guide to Studying Fish), Moscow: Pishchevaya Promyshlennost’, 1966.
Gheyas, A.A., Cairney, M., Gilmour, A.E., and Sattar, M.A., Characterization of microsatellite loci in silver carp (Hypophthalmichthys molitrix), and cross-amplification in other cyprinid species, Mol. Ecol. Not., 2006, vol. 6, no. 3, pp. 656—659. https://doi.org/10.1111/j.1471-8286.2006.01288.x
Nosova, A.Y., Kipen, V.N., Tsar, A.I., and Lemesh, V.A., Estimating genetic diversity of silver (Hypophthalmichthys molitrix Val.) and bighead (Hypophthalmichthys nobilis Rich.) carps grown in aquaculture in the Republic of Belarus based on polymorphism of microsatellite loci, Cytol. Genet., 2019, vol. 53, no. 6, pp. 473—480. https://doi.org/10.3103/S0095452719060094
Nosova, A.Y., Kipen, V.N., Tsar, A.I., and Lemesh, V.A., Differentiation of hybrid progeny of silver carp (Hypophthalmichthys molitrix Val.) and bighead carp (H. nobilis Rich.) based on microsatellite polymorphism, Russ. J. Genet., 2020, vol. 56, no. 3, pp. 313—320. https://doi.org/10.1134/S1022795420030126
Peakall, R. and Smouse, P.E., GenAlEx 6: genetic analysis in Excel. Population genetic software for teaching and research, Mol. Ecol. Notes, 2006, vol. 6, pp. 288—295. https://doi.org/10.1111/j.1471-8286.2005.01155.x
Pritchard, J.K., Stephens, M., and Donnelly, P., Inference of population structure using multilocus genotype data, Genetics, 2000, vol. 155, pp. 945—959. https://doi.org/10.1093/genetics/155.2.945
Article CAS PubMed PubMed Central Google Scholar
Vasil’ev, A.G., Vasil’eva, I.A., and Shkurikhin, A.O., Geometricheskaya morfometriya: ot teorii k praktike (Geometric Morphometrics: from Theory to Practice), Moscow: KMK, 2018.
González-Martinez, A., De-Pablos-Heredero, C., González, M., et al., Usefulness of discriminant analysis in the morphometric differentiation of six native freshwater species from Ecuador, Animals, 2021, vol. 11, no. 1, p. 111. https://doi.org/10.3390/ani11010111
Article PubMed PubMed Central Google Scholar
Caez, J., González, A., González, M.A., et al., Application of multifactorial discriminant analysis in the morphostructural differentiation of wild and cultured populations of Vieja Azul (Andinoacara rivulatus), Turk. J. Zool., 2019, vol. 43, no. 5, pp. 516—530. https://doi.org/10.3906/zoo-1903-31
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