Molecular genetic characterization of the beta-lactoglobulin gene of Bushuev dairy cattle, a local breed in Uzbekistan

Bangar, Y. C., Patil, C. S., Magotra, A., & Yadav, A. S. (2021). Meta-analysis of gene polymorphism of beta-lactoglobulin gene in Indian dairy cows. Biochemical Genetics, 60(3), 1039–1048.

Ben Jemaa, S., Boussaha, M., Ben Mehdi, M., Lee, J. H., & Lee, S.-H. (2015). Genome-wide insights into population structure and genetic history of tunisian local cattle using the illumina bovinesnp50 beadchip. BMC Genomics, 16(1), 677.

Boettcher, P. J., Tixier-Boichard, M., Toro, M. A., Simianer, H., Eding, H., Gandini, G., Joost, S., Garcia, D., Colli, L., & Ajmone-Marsan, P. (2010). Objectives, criteria and methods for using molecular genetic data in priority setting for conservation of animal genetic resources. Animal Genetics, 41(s1), 64–77.

Caroli, A. M., Chessa, S., & Erhardt, G. J. (2009). Invited review: Milk protein polymorphisms in cattle: Effect on animal breeding and human nutrition. Journal of Dairy Science, 92(11), 5335–5352.

Cendron, F., Franzoi, M., Penasa, M., De Marchi, M., & Cassandro, M. (2021). Effects of β- and κ-casein, and β-lactoglobulin single and composite genotypes on milk composition and milk coagulation properties of Italian Holsteins assessed by FT-MIR. Italian Journal of Animal Science, 20(1), 2243–2253.

Chen, S., Lin, B.-Z., Baig, M., Mitra, B., Lopes, R. J., Santos, A. M., Magee, D. A., Azevedo, M., Tarroso, P., Sasazaki, S., Ostrowski, S., Mahgoub, O., Chaudhuri, T. K., Zhang, Y.-P., Costa, V., Royo, L. J., Goyache, F., Luikart, G., Boivin, N., … Beja-Pereira, A. (2009). Zebu cattle are an exclusive legacy of the South Asia neolithic. Molecular Biology and Evolution, 27(1), 1–6.

Ciampolini, R., Casu, S., Mastrangelo, S., Flori, L., Moazami, G. K., Sechi, T. (2015). Genetic diversity of Mediterranean cattle breeds related to geography and climate. In: Proceedings of the 21st animal science and production association congress, 14, 65–66.

de Wit, J. N. (1998). Nutritional and functional characteristics of whey proteins in food products. Journal of Dairy Science, 81(3), 597–608.

Farrell, H. M., Jimenez-Flores, R., Bleck, G. T., Brown, E. M., Butler, J. E., Creamer, L. K., Hicks, C. L., Hollar, C. M., Ng-Kwai-Hang, K. F., & Swaisgood, H. E. (2004). Nomenclature of the proteins of cows’ milk – sixth revision. Journal of Dairy Science, 87(6), 1641–1674.

Ilie, D. E., Gavojdian, D., Kusza, S., Neamț, R. I., Mizeranschi, A. E., Mihali, C. V., & Cziszter, L. T. (2023). Kompetitive allele specific PCR genotyping of 89 SNPs in Romanian Spotted and Romanian Brown cattle breeds and their association with clinical mastitis. Animals, 13(9), 1484.

Lundén, A., Nilsson, M., & Janson, L. (1997). Marked effect of β-lactoglobulin polymorphism on the ratio of casein to total protein in milk. Journal of Dairy Science, 80(11), 2996–3005.

Martorell-Aragonés, A., Echeverría-Zudaire, L., Alonso-Lebrero, E., Boné-Calvo, J., Martín-Muñoz, M. F., Nevot-Falcó, S., Piquer-Gibert, M., & Valdesoiro-Navarrete, L. (2015). Position document: IgE-mediated cow’s milk allergy. Allergologia et Immunopathologia, 43(5), 507–526.

Meza-Nieto, M. A., González-Córdova, A. F., Piloni-Martini, J., & Vallejo-Cordoba, B. (2013). Effect of β-lactoglobulin A and B whey protein variants on cheese yield potential of a model milk system. Journal of Dairy Science, 96(11), 6777–6781.

Ogata, S., Tanaka, H., Omura, K., Honda, C., & Hayakawa, K. (2016). Association between intake of dairy products and short-term memory with and without adjustment for genetic and family environmental factors: A twin study. Clinical Nutrition, 35(2), 507–513.

Pariset, L., Mariotti, M., Nardone, A., Soysal, M. I., Ozkan, E., Williams, J. L., Dunner, S., Leveziel, H., Maróti-Agóts, A., Bodò, I., & Valentini, A. (2010). Relationships between Podolic cattle breeds assessed by single nucleotide polymorphisms (SNPs) genotyping. Journal of Animal Breeding and Genetics, 127(6), 481–488.

Pérez-Pardal, L., Sánchez-Gracia, A., Álvarez, I., Traoré, A., Ferraz, J. B. S., Fernández, I., Costa, V., Chen, S., Tapio, M., Cantet, R. J. C., Patel, A., Meadow, R. H., Marshall, F. B., Beja-Pereira, A., & Goyache, F. (2018). Legacies of domestication, trade and herder mobility shape extant male zebu cattle diversity in South Asia and Africa. Scientific Reports, 8(1), 18027.

Pervaiz, S., & Brew, K. (1985). Homology of β-lactoglobulin, serum retinol-binding protein, and protein HC. Science, 228(4697), 335–337.

Semenenko, A. A. (2019). The spread of zebu cattle from South Asia to the East Mediterranean region as a marker of Indo-European population dispersal. Bulletin Social-Economic and Humanitarian Research, 2(4), 3–27.

Sharma, A., Shandilya, U. K., Sodhi, M., Mohanty, A. K., Jain, P., & Mukesh, M. (2019). Evaluation of milk colostrum derived lactoferrin of Sahiwal (Bos indicus) and Karan Fries (cross-bred) cows for its anti-cancerous potential. International Journal of Molecular Sciences, 20(24), 6318.

Sherimbetov A. G. Namazov, S. E., Adilov, B. S., Ruzmetov, D. R., Sadiqov, K. R., Matyoqubov, S. K., & Karimov, E. Y. (2020a). Investigation and identification of phytopathogenic and saprophytic Fusarium species in the agricultural fields soil layers of the Republic of Uzbekistan. Plant Cell Biotechnology and Molecular Biology, 21, 101–108.

Sherimbetov, A. G., Adilov, B. S., Kadirova, Z. N., Makhmudov, T. X., Mambetnazarov, A. B., Ruzmetov, D. R., Yuldashov, U. X., & Karimov, E. Y. (2020b). Molecular verification of species identity of some isolates of the genus Fusarium deposited in the phytopathogen collection in Uzbekistan. Plant Cell Biotechnology and Molecular Biology, 21, 94–98.

Sherimbetov, A. G., Zaynitdinova, L. I., Adilov, B. S., & Ruzmetov, D. R. (2024). Trichoderma afroharzianum species associated with the anthropogenically polluted soils in Uzbekistan. SABRAO Journal of Breeding and Genetics, 56(5), 1946–1957.

Sherimbetov, A., Sherimbetov, S., Adilov, A., Ruzmetov, D., & Shavkiev, J. (2024) Rapid detection of Alternaria spp. by PCR in the newly created forest plantations on the drained bottom of the Aral Sea. Regulatory Mechanisms in Biosystems, 15(2), 361–366.

Siddiqui, S. A., Schulte, H., Golik, A. B., Pandiselvam, R., Venkidasamy, B., Homayouni, A., & Maqsood, S. (2024). Traditional and commercial dairy products from yak, camel, zebu-brahma, mithun, reindeer and sow: A review on current research status. International Dairy Journal, 152, 105879.

Untergasser, A., Nijveen, H., Rao, X., Bisseling, T., Geurts, R., & Leunissen, J. A. (2007). Primer3Plus, an enhanced web interface to Primer3. Nucleic acids research, 35, W71–W74.

Williams, J. L., Hall, S. J., Del Corvo, M., Ballingall, K. T., Colli, L., Ajmone Marsan, P., & Biscarini, F. (2016). Inbreeding and purging at the genomic level: the Chillingham cattle reveal extensive, non-random SNP heterozygosity. Animal genetics, 47(1), 19–27.

Wodas, L., Mackowski, M., Borowska, A., Puppel, K., Kuczynska, B., & Cieslak, J. (2020). Genes encoding equine β-lactoglobulin (LGB1 and LGB2): Polymorphism, expression, and impact on milk composition. PloS One, 15(4), e0232066.

Xie, X., Shi, L., Zhong, Z., Wang, Z., Pan, D., Hou, G., & Xiao, Q. (2024). Danzhou chicken: A unique genetic resource revealed by genome-wide resequencing data. Poultry Science, 103(8), 103960.

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