Molecular characterization and association of lactoferrin gene to subclinical mastitis in goats (Capra hircus)

  • Yancy Ogdamin Waminal Tarlac Agricultural University / Central Luzon State University
  • Gabriel Alexis San Pedro Tubalinal Central Luzon State University / Philippine Carabao Center
  • Claro Niegos Mingala Central Luzon State University / Philippine Carabao Center
Palavras-chave: Anglo-Nubian; Lf gene; Philippine native goat; Saanen.

Resumo

The study characterized the lactoferrin (Lf) mRNA gene in different goat breeds in the Philippines and determined its association with subclinical mastitis (SCM). The study involved collection of milk at second week of lactation (n=75) and blood samples (n=5) to obtain extracted RNA and using cDNA to amplify Lf gene through polymerase chain reaction. The nucleotide and amino acid sequences were determined and used as reference in the evaluation of phylogenetic relationship. Amplified products were utilized for RFLP analysis before determining the association of the gene with SCM. Results of the study demonstrated that Lf gene in goats registered a molecular weight of 2135. Nucleotide and amino acid sequence of Lf gene revealed high similarity (99%) in Saanen, Anglo-Nubian and Philippine native goats with that of Capra hircus (U53857) Lf gene submitted to GenBank. Phylogenetic studies showed that Lf gene of Anglo-Nubian, Saanen and Native goats clade together with Lf gene of C. hircus (U53857). Three genotypes in goats were documented using the restriction enzymes AluI and HaeIII. Based on the Statistical analysis, association (comp 5.65, p = 0.0308) has been established between the Lf genes of goats with genotype BB to SCM using HaeIII restriction enzyme.

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Referências

Chang-hong, Z., Gaoming, H. E., Yanliang, W., & Zhaoxia, Z. (2008). Polymorphism analysis of the promoter of cow lactoferrin gene with PCR-RFLP and its correlation with subclinical mastitis. Acta Agriculturae Slovenica, 92(2), 185-187.

Collins, J. F., Flores, S. R., Wang, X., & Anderson, G. J. (2018). Mechanisms and Regulation of Intestinal Iron Transport. In H. M. Said, F. K. Ghishan, J. D. Kaunitz, & J. L. Merchant, Physiology of the Gastrointestinal tract (p. 1451-1483). London, UK: Elsevier.

Daly, M., Ross, P., Giblin, L., & Buckley, F. (2006). Polymorphisms within the LF gene promoter in various cattle breeds. Animal Biotechnology, 17(1), 33-42. DOI: https://doi.org/10.1080/10495390500460965

Gholizadeh, G., Mianji, G. R., & Zadeh, H. S. (2008). Potential use of molecular markers in the genetic improvement of livestock. Asian Journal of Animal and Veterinary Advances, 3(3), 120-128. DOI: https://doi.org/10.3923/ajava.2008.120.128

Hogeveen, H., & Van der Voort, M. (2017). Évaluation de l’impact économique d’une maladie endémique : le cas de la mammite. Reveu Scientifique et technique, 36(1), 217-226. DOI: https://doi.org/10.20506/rst.36.1.2623

Kaminski, S., Malewski, T., Ahman, A., Wojcik E., Rusc, A., Olenski, K., ... Sazanov, A. A. (2008). Towards an integrated approach to study SNPs and expression of candidate genes associated with milk protein biosynthesis. Russian Journal of Genetics, 44(4), 459-465

Kaminski, S., Oleński, K., Brym, P., Malewski, T., & Sazanov, A. A. (2006). Single nucleotide polymorphism in the promoter region of the lactoferrin gene and its associations with milk performance traits in Polish Holstein-Friesian cows. Genetika, 42(8), 1117-1120.

Lee, T. H., Shimazaki, K., Yu, S. L., Nam, M. S., Kim, S. J., Lee, K. K., & Yu, D. Y. (1997). Polymorphic sequence of Korean native goat lactoferrin exhibiting greater antibacterial activity. Animal Genetics, 28(5), 367-369. DOI: https://doi.org/10.1111/j.1365-2052.1997.00154.x

Legrand, D., Pierce, A., Elass, E., Carpentier, M., Mariller C., & Mazurier, J. (2008). Lactoferrin sturucture and functions. Advances in Experimental Medicine and Biology, 606(1), 163-194. DOI: https://doi.org/10.1007/978-0-387-74087-4_6

Li, S. H., & Chen, Y. H. (1999). Various forms of mouse lactoferrins: purification and characterization. Journal of Chromatography B: Biomedical Sciences and Applications, 726(1-2), 45-52. DOI: https://doi.org/10.1016/s0378-4347(99)00046-8

Lonnerdal, B., & Iyer, S. (1995). LF: molecular structure and biological function. Annual Review of Nutrition, 15(1), 93-110. DOI: 10.1146/annurev.nu.15.070195.000521

Marchweka, D., Roterman, I., Strus, M., Spiewak, K., & Majka, G. (2012). Structural analysis of the lactoferrin iron binding pockets. Bio-Algorithms and Med-Systems, 8(4), 351-359. DOI: https://doi.org/10.1515/bams-2012-0024

Martin-Burriel, I., Osta, R., Baredse, W., & Zaragoza, P. (1997). New polymorphism and linkage mapping of the bovine lactotransferrin gene. Mammalian Genome, 8(9), 704-705. DOI: https://doi.org/10.1007/s003359900641

McEwen, A. D., & Cooper, M. B. (1947). Bovine mastitis. Veterinary Record, 59(48), 655-664.

Niaz, B., Saeed, F., Ahmed, A., Imran, M., Maan, A. A., Khan, M. K. Q., … Suleria, H. A. R. (2019). Lactoferrin (LF): a natural antimicrobial protein. International Journal of Food Properties, 22(1), 1626-1641. DOI: https://doi.org/10.1080/10942912.2019.1666137

Pawlik, A., Sender, G., & Korwin-Kossakowska, A. (2009). Bovine LF gene polymorphism and expression in relation to mastitis resistance – a review. Animal Science Papers and Reports, 27(4), 263-271.

Persson, Y., & Olofsson, I. (2011). Direct and indirect measurement of somatic cell count as indicator of intramammary infection in dairy goats. Acta Veterinaria Scandinavica, 53(1), 1-5. DOI: https://doi.org/10.1186/1751-0147-53-15

Petrie, A., & Watson, P. (2006). Statistics for veterinary and animal science. Oxford, UK: Blackwell Publishing.

Rupp, R., & Boichard, D. (2003). Genetics of resistance to mastitis in dairy cattle. Veterinary Research, 34(5), 671-688. DOI: https://doi.org/10.1051/vetres:2003020

Sharma, R., Chakraborty, D., & Gupta, P. (2015). Bovine lactoferrin and its functions in animals – a review. Agricultural Reviews, 36(4), 321-326. DOI: https://doi.org/10.18805/ag.v36i4.6669

Shimazaki, K. I., & Kawai, K. (2017). Advances in lactoferrin research concerning bovine mastitis. Biochemistry and Cell Biology, 95(1), 69-75. DOI: https://doi.org/10.1130/cbc-2016-0044

Siqueiros-Cendon, T., Arevalo-Gallegos, S., Iglesias-Figueroa, B. F., Gracia-Montoya, I. A., Salazar-Martinez, J., & Rascon-Cruz, Q. (2014). Immunomodulatory effects of lactoferrin. Acta Pharmacologica Sinica, 35(5), 557-566. DOI: https://doi.org/10.1038/aps.2013.200

Stothard, P. (2000). The sequence manipulation suite: JavaScript programs for analyzing and formatting protein and DNA sequences. Biotechniques, 28(6), 1102-1104. DOI: https://doi.org/10.2144/00286ir01

Tamura, K., Peterson, D., Peterson, N., Stecher, G., Nei, M., & Kumar, S. (2011). MEGA5: Molecular evolutionary genetics analysis using maximum likelihood, evolutionary distance, and maximum parsimony methods. Molecular Biology and Evolution, 28(10), 2731-2739. DOI: https://doi.org/10.1093/molbev/msr121

Tsuda, H., Sekine, K., Ushida, Y., Kuhara, T., Takasuka, N., Iigo, M., … Moore, M. A. (2000). Milk and dairy products in cancer prevention: focus on bovine lactoferrin. Mutation Research, 462(2-3), 227-233. DOI: https://doi.org/10.1016/s1383-5742(00)00040-5

Valenti, A., & Antonini, G. (2005). Lactoferrin: an important host defense against microbial and viral attack. Cellular and Molecular Life Sciences, 62(22), 2576-2587. DOI: https://doi.org/10.1007/s00018-005-5372-0

Van der Strate, B. W. A., Belijaars, L., & Molema, G. (2001). Antiviral activities of lactoferrin. Antiviral Research, 52(3), 225-239. DOI: https://doi.org/10.1016/s0166-3542(01)00195-4

Walker, A. (2010). Breast milk as the gold standard for protective nutrients. Journal of Pediatrics, 156(Suppl 2), S3-S7. DOI: https://doi.org/10.1016/j.jpeds.2009.11.021

Waminal, Y. O., Tubalinal, G. A. S. P., & Mingala, C. N. (2019). Molecular characterization of lactoferrin gene as genetic marker to subclinical mastitis in water buffaloes (Bubalus bubalis). Asian Journal of Agriculture and Biology, 7(4), 564-572.

Publicado
2022-07-01
Como Citar
Waminal, Y. O., Tubalinal, G. A. S. P., & Mingala, C. N. (2022). Molecular characterization and association of lactoferrin gene to subclinical mastitis in goats (Capra hircus). Acta Scientiarum. Animal Sciences, 44(1), e56368. https://doi.org/10.4025/actascianimsci.v44i1.56368
Seção
Produção Animal

0.9
2019CiteScore
 
 
29th percentile
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