Comparative characteristics of polymorphisms of melanocortin 4 and ryanodine 1 receptor genes of Myrhorod pigs before and after the African swine fever outbreak

Balatsky, V. N., Saienko, A. M., Pena, R. N., Buslyk, T. V., & Gibolenko, O. S. (2015). Genetic diversity of pig breeds on ten production quantitative traits loci. Cytology and Genetics, 49(5), 299–307.

Brockova, K., Rossokha, V., Chaban, V., Zos-Kior, M., Hnatenko, I., & Rubezhanska, V. (2021). Economic mechanism of optimizing the innovation investment program of the development of agro-industrial production. Management Theory and Studies for Rural Business and Infrastructure Development, 43(1), 129–135.

Bryan, B. A., Gao, L., Ye, Y., Sun, X., Connor, J. D., Crossman, N. D., Stafford-Smith, M., Wu, J., He, C., Yu, D., Liu, Z., Li, A., Huang, Q., Ren, H., Deng, X., Zheng, H., Niu, J., Han, G., & Hou, X. (2018). China’s response to a national land-system sustainability emergency. Nature, 559(7713), 193–204.

Brych, V. V., Bilak-Lukianchuk, V. Y., Slabkyi, H. O., Hutsol, I. Y., & Potokii, N. Y. (2020). Zdorove kharchuvannia: Zbirnyk materialiv dlia pratsivnykiv systemy okhorony zdorovia [Healthy nutrition: A collection of materials for health care workers]. Uzhgorod National University, Uzhgorod (in Ukrainian).

Calta, J., Zadinová, K., Čítek, J., Kluzáková, E., Okrouhlá, M., Stupka, R., Tichý, L., Machová, K., Stratil, A., & Vostrý, L. (2022). Possible effects of the MC4R Asp298Asn polymorphism on pig production traits under ad libitum versus restricted feeding. Journal of Animal Breeding and Genetics, 140(2), 207–215.

Cobanovic, N., Stajkovic, S., Grkovic, N., Suvajdzic, B., Vasilev, D., & Karabasil, N. (2019). Effects of RYR1 gene mutation on the health, welfare, carcass and meat quality in slaughter pigs. Earth and Environmental Science, 333(1), 012051.

Cone, R. D. (2005). Anatomy and regulation of the central melanocortin system. Nature Neuroscience, 8(5), 571–578.

Davoli, R., Braglia, S., Valastro, V., Annarratone, C., Comella, M., Zambonelli, P., Nisi, I., Gallo, M., Buttazzoni, L., & Russo, V. (2012). Analysis of MC4R polymorphism in Italian Large White and Italian Duroc pigs: Association with carcass traits. Meat Science, 90(4), 887–892.

Díaz, S., & Malhi, Y. (2022). Biodiversity: Concepts, patterns, trends, and perspectives. Annual Review of Environment and Resources, 47, 31–63.

Fàbrega, E., Tibau, J., Soler, J., Fernández, J., Font, J., Carrión, D., Diestre, A., & Manteca, X. (2003). Feeding patterns, growth performance and carcass traits in group-housed growing-finishing pigs: The effect of terminal sire line, halothane genotype and age. Animal Science, 77(1), 11–21.

Fan, B., Onteru, S. K., Plastow, G. S., & Rothschild, M. F. (2009). Detailed characterization of the porcine MC4R gene in relation to fatness and growth. Animal Genetics, 40(4), 401–409.

Fontanesi, L., Buttazzoni, L., Galimberti, G., Calo, D. G., Scotti, E., & Russo, V. (2013). Association between melanocortin 4 receptor (MC4R) gene haplotypes and carcass and production traits in Italian Large White pigs evaluated with a selective genotyping approach. Livestock Science, 157(1), 48–56.

Fujii, J., Otsu, K., Zorzato, F., de Leon, S., Khanna, V. K., Weiler, J. E., O'brien, P. J., & Maclennan, D. H. (1991). Identification of a mutation in porcine ryanodine receptor associated with malignant hyperthermia. Science, 53(5018), 448–451.

Gozalo-Marcilla, M., Buntjer, J., Johnsson, M., Batista, L., Diez, F., Werner, C. R., Chen, C., Gorjanc, G., Mellanby, R. J., Hicke, J. M., & Ros-Freixedes, R. (2021). Genetic architecture and major genes for backfat thickness in pig lines of diverse genetic backgrounds. Genetics Selection Evolution, 53(1), 76.

Hermoso, V., Carvalho, S. B., Giakoumi, S., Goldsborough, D., Katsanevakis, S., Leontiou, S., Markantonatou, V., Rumes, B., Vogiatzakis, I. N., & Yates, K. L. (2022). The EU biodiversity strategy for 2030: Opportunities and challenges on the path towards biodiversity recovery. Environmental Science and Policy, 127, 263–271.

Hlazko, V. Y., Shulha, E. V., Dyman, T. N., & Hlazko, H. V. (2001). DNK-tekhnolohii i bioinformatika v reshenii problem byotekhnologii mlekopitaiushchykh [DNA technologies and bioinformatics in solving the problems of mammalian biotechnologies]. Belotserkovskiy Agrarian University, Belaya Tserkov (in Russian).

Ivanov, V. O., & Guk, M. S. (2019). Stressity purebred and crossbred pigs. Naukovo-Tekhnichnyi Biuleten Instytutu Tvarynnytstva NAAN, 121, 121–127.

Khalak, V., & Gutyj, B. (2020). Polygenic hereditary traits of young pigs and their association with the melanocortin receptor gene – 4 (MC4R). Scientific Messenger of LNU of Veterinary Medicine and Biotechnologies, Series: Agricultural Sciences, 22(93), 84–89.

Khalak, V., Horchanok, A., Kuzmenko, O., Lytvyschenko, L., Karpenko, O., & Porotikova, I. (2021). Meat qualities of pigs of different genotypes by melanocortin receptor gene 4 (MC4R) and its cnnection with some biochemical indicators of blood serum. Scientific Papers. Series D. Animal Science, 64(2), 64–69.

Khramkova, O. N., & Povod, N. G. (2017). Feeding efficiency of the hybrid young pigs of national and foreign origin. Visnyk Sumskoho Natsionalnoho Ahrarnoho Universytetu, Seriia: Tvarynnytstvo, 7, 226–232.

Kim, K. S., Larsen, N., Short, T., Plastow, G., & Rothschild, M. F. (2000). A missense variant of the porcine melanocortin-4 receptor (MC4R) gene is associated with fatness, growth, and feed intake traits. Mammalian Genome, 11(2), 131–135.

Kim, K. S., Lee, J. J., Shin, H. Y., Choi, B. H., Lee, C. K., Kim, J. J., Cho, B. W., & Kim, T.-H. (2006). Association of melanocortin 4 receptor (MC4R) and high mobility group AT_hook 1 (HMGA1) polymorphisms with pig growth and fat deposition traits. Animal Genetics, 37(4), 419–421.

Korinnyi, S. M., Pocherniaiev, K. F., & Balatskyi, V. M. (2005). Sherst’ tvaryn, yak zruchnyj ob’ekt vydilennia DNK dlia analizu za dopomohoiu PLR [Animal hair as a convenient object of DNA extraction for PCR analysis]. Veterinary Biotechnology, 7, 80–83.

Liu, J., Li, S., Ouyang, Z., Tam, C., & Chen, X. (2008). Ecological and socioeconomic effects of China’s policies for ecosystem services. Proceedings of the National Academy of Sciences, 105(28), 9477–9482.

Llambí, S., Montenegro, M., Gagliardi, R., Burgos, C., Hidalgo, J., López-Buesa, P., & Arruga, M. V. (2020). Genetic structure and population dynamics of autochthonous and modern porcine breeds. Analysis of the IGF2 and MC4R genes that determine carcass characteristics. Austral Journal of Veterinary Sciences, 52(3), 87–94.

Manfredo, M. J., Teel, T. L., Berl, R. E., Bruskotter, J. T., & Kitayama, S. (2021). Social value shift in favour of biodiversity conservation in the United States. Nature Sustainability, 4(4), 323–330.

Megens, H. J., Crooijmans, R. P., Cristobal, M. S., Hui, X., Li, N., & Groenen, M. A. (2008). Biodiversity of pig breeds from China and Europe estimated from pooled DNA samples: Differences in microsatellite variation between two areas of domestication. Genetics Selection Evolution, 40, 1–26.

Mi, X., Feng, G., Hu, Y., Zhang, J., Chen, L., Corlett, R., Hughes, A. C., Pimm, S., Schmid, B., Shi, S., Svenning, J.-C., & Ma, K. (2021). The global significance of biodiversity science in China: An overview. National Science Review, 8(7), nwab032.

Ovilo, C., Fernández, A., Rodríguez, M. C., Nieto, M., & Silió, L. (2006). Association of MC4R gene variants with growth, fatness, carcass composition and meat and fat quality traits in heavy pigs. Meat Science, 73(1), 42–47.

Pilotto, F., Kühn, I., Adrian, R., Alber, R., Alignier, A., Andrews, C., Bäck, J., Barbaro, L., Beaumont, D., Beenaerts, N., Benham, S., Boukal, D. S., Bretagnolle, V., Camatti, E., Canullo, R., Cardoso, P. G., Ens, B. J., Everaert, G., Evtimova, V., Feuchtmayr, H., García-González, R., Gómez García, D., Grandin, U., Gutowski, J. M., Hadar, L., Halada, L., Halassy, M., Hummel, H., Huttunen, K., Jaroszewicz, B., Jensen, T. C., Kalivoda, H., Kappel Schmidt, I., Kröncke, I., Leinonen, R., Martinho, F., Meesenburg, H., Meyer, J., Minerbi, S., Monteith, D., Nikolov, B. P., Oro, D., Ozoliņš, D., Padedda, B., Pallett, D. M., Pansera, M., Ângelo Pardal, M., Petriccione, B., Pipan, T., Pöyry, J., Schäfer, S. M., Schaub, M., Schneider, S. C., Skuja, A., Soetaert, K., Spriņģe, G., Stanchev, R., Stockan, J. A., Stoll, S., Sundqvist, L., Thimonier, A., Van Hoey, G., Van Ryckegem, G., Visser, M. E., Vorhaus, S., & Haase, P. (2020). Meta-analysis of multidecadal biodiversity trends in Europe. Nature Communications, 11(1), 3486.

Poklukar, K., Čandek-Potokar, M., Batorek Lukač, N., Tomažin, U., & Škrlep, M. (2020). Lipid deposition and metabolism in local and modern pig breeds: A review. Animals, 10(3), 424.

Provatorov, H. V., Ladyka, V. I., & Bondarchuk, L. V. (2007). Normy hodivli, ratsiony i pozhyvnist’ kormiv dlia riznykh vydiv sil’s’kohospodars’kykh tvaryn [Feeding norms, rations and nutritional value of feed for different species of farm animals]. Universytetska Knyha, Sumy (in Ukrainian).

Salajpal, K., Dikic, M., Karolyi, D., Janjecic, Z., & Juric, I. (2009). The effect of MC4R polymorphism on carcass composition and meat quality traits in pigs slaughter at different live weights. Italian Journal of Animal Science, 8(sup3), 98–100.

SanCristobal, M., Chevalet, C., Haley, C. S., Joosten, R., Rattink, A. P., Harlizius, B., Groenen, M. A. M., Amigues, Y., Boscher, M., Russell, G., Law, A., Davoli, R., Russo, V., Désautés, C., Alderson, L., Fimland, E., Bagga, M., V. Delgado, J., Vega-Pla, J. L., Martinez, A. M., Ramos, M., Glodek, P., Meyer, J. N., Gandini, G. C., Matassino, D., Plastow, G. S., Siggens, K. W., Laval, G., Archibald, A. L., Milan, D., Hammon, K., & Cardellino, R. (2006). Genetic diversity within and between European pig breeds using microsatellite markers. Animal Genetics, 37(3), 189–198.

Sarantseva, N. K., Balatsky, V. M., Nor, V. Y., & Oliinychenko, Y. K. (2016). Genetics and population practicability of using SNP (c. 232 T>A) of LEPR gene as a marker for further selection for Large White and Myrgorod pig breeds. Animal Breeding and Genetics, 52, 176–180.

Shcherban, T., & Vovk, V. (2014). Yakist svynyny vid tvaryn, pomisnykh z henotypom myrhorodskoi porody [The quality of pork from animals inbred with the genotype of the Myrhorod breed]. Tvarynnytstvo Ukrainy, 8–9, 37–40 (in Ukrainian).

Silveira, A. C. P., Freitas, P. F. A., Cesar, A. S. M., Antunes, R. C., Guimarães, E. C., Batista, D. F. A., & Torido, L. C. (2011). Influence of the halothane gene (HAL) on pork quality in two commercial crossbreeds. Genetic and Molecular Research, 10(3), 1479–1489.

Tinh, N. H., Hop, N. V., Anh, N. T. L., & Bui, A. P. N. (2023). Polymorphisms of candidate genes associated with growth and carcass traits in Canadian Duroc pigs. Indian Journal of Animal Research, 57(7), 831–835.

Tor, M., Estany, J., Villalba, D., Cubilo, D., Tibau, J., Soler, J., Sanchez, A., & Noguera, J. L. (2001). A within‐breed comparison of RYR1 pig genotypes for performance, feeding behaviour, and carcass, meat and fat quality traits. Journal of Animal Breeding and Genetics, 118(6), 417–427.

Tsybenko, V. H., & Vashchenko, P. A. (2020). Genealogical analysis of the Mirgorod pig breed before and after outbreak of African swine fever. Veterinary Science, Technologies of Animal Husbandry and Nature Management, 5, 216–221.

Van den Maagdenberg, K., Stinckens, A., Claeys, E., Seynaeve, M., Clinquart, A., Georges, M., Buys, N., & De Smet, S. (2007). The Asp298Asn missense mutation in the porcine melanocortin-4 receptor (MC4R) gene can be used to affect growth and carcass traits without an effect on meat quality. Animal, 1(8), 1089–1098.

Vashchenko, P. A., Balatsky, V. M., Pocherniaev, K. F., Voloshchuk, V. M., Tsybenko, V. H., Saenko, A. M., Oliynychenko, Y. K., Buslyk, T. V., & Rudoman, H. S. (2019). Genetic characterization of the mirgorod pig breed, obtained by analysis of single nucleotide polymorphisms of genes. Agricultural Science and Practice, 6(2), 47–57.

Vashchenko, P. А., Zhukorskyi, О. М., Saenko, A. M., Khokhlov, A. M., Usenko, S. O., Kryhina, N. V., Sukhno, T. V., & Tsereniuk, О. М. (2023). The influence of feeding level on the growth of pigs depending on their genotype. Regulatory Mechanisms in Biosystems, 14(1), 112–117.

Vashchenko, P., Saienko, A., Sukhno, V., Tsereniuk, O., Babicz, M., Shkavro, N., Smołucha, G., & Łuszczewska-Sierakowska, I. (2022). Association of NRAMP1 gene polymorphism with the productive traits of the Ukrainian Large White pig. Medycyna Weterynaryjna, 78(11), 563–566.

Voitenko, S. L. (2018). Influence of inbreeding on living mass and own productivity of pigs of mirgorodic breed. Animal Breeding and Genetics, 55, 24–30.

Vyshnevsky, L. V., Porhun, M. G., Sydorenko, O. V., & Dzhus, P. Р. (2017). Bank of animal genetic resources of institute of animals breeding and genetics nd. a. M. V. Zubets of NAAS system of animal biodiversity conservation of Ukraine. Animal Breeding and Genetics, 53, 21–28.

Weiskopf, S. R., Rubenstein, M. A., Crozier, L. G., Gaichas, S., Griffis, R., Halofsky, J. E., Hyde, K. J. W., Morelli, T. L., Morisette, J. T., Muñoz, R. C., Pershing, A. J., Peterson, D. L., Poudel, R., Staudinger, M. D., Sutton-Grier, A. E., Thompson, L., Vose, J., Weltzin, J. F., & Whyte, K. P. (2020). Climate change effects on biodiversity, ecosystems, ecosystem services, and natural resource management in the United States. Science of the Total Environment, 733, 137782.

Wittmann, W., Götz, K.-U., Peschke, W., Lindner, J.-P., & Hause, M. (1999). Einfluß des MHS-Genotyps auf die Mast- und Schlachtleistung von Piétrainschweinen und PI x DL-Mastendprodukten in der Stationsprüfung, Archives Animal Breeding, 42, 139–148.

Zhang, J., Li, J., Wu, C., Hu, Z., An, L., Wan, Y., Fang, C., Zhang, X., Li, J., & Wang, Y. (2020). The Asp298Asn polymorphism of melanocortin‐4 receptor (MC4R) in pigs: Evidence for its potential effects on MC4R constitutive activity and cell surface expression. Animal Genetics, 51(5), 694–706.

Zhang, Z., Zhang, Z., Oyelami, F. O., Sun, H., Xu, Z., Ma, P., Wang, Q., & Pan, Y. (2021). Identification of genes related to intramuscular fat independent of backfat thickness in Duroc pigs using single‐step genome‐wide association. Animal Genetics, 52(1), 108–113.

Zos-Kior, M., Hnatenko, I., Isai, O., Shtuler, I., Samborskyi, O., & Rubezhanska, V. (2020). Management of efficiency of the energy and resource saving innovative projects at the processing enterprises. Management Theory and Studies for Rural Business and Infrastructure Development, 42(4), 504–515.

Zos-Kior, М., Shkurupii, O., Fedirets, O., Shulzhenko, I., & Rubezhanska, V. (2021). Modeling of the investment program formation process of ecological management of the agrarian cluster. European Journal of Sustainable Development, 10(1), 571–583.

留言 (0)

沒有登入
gif