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Petr Martinek, Ilona Svobodová and Lubomír Věchet

References Arraiano , L.S. - Worland , A.J. - Eller - brook , C. - Brown , J.K.M. 2001. Chromosomal location of a gene for resistance to septoria tritici blotch ( Mycosphaerella graminicola ) in the hexaploid wheat ‘Synthetic 6×’. In Theoretical and Applied Genetics , vol. 103 , no. 5, pp. 758-764. DOI: 10.1007/s001220100668. Berzonsky , W.A. - Hartel , K.D. - Kianian , S.F. - Leach , G.D. 2004. Registration of four synthetic hexaploid wheat germplasm lines with resistance to fusarium head blight. In Crop Science

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Mongkol Pongsuchart, Amornpun Sereemaspun and Kiat Ruxrungtham

detection of infectious spleen and kidney necrosis virus by loop-mediated isothermal amplification combined with a lateral flow dipstick. Archives of Virology. 2010; 155:385-9. 7. Odenthal KJ, Gooding JJ. An introduction to electrochemical DNAbiosensors. Analyst. 2007; 132: 603-10. 8. Noguera P, Posthuma-Trumpie G, van Tuil M, van der Wal F, de Boer A, Moers A, et al. Carbon nanoparticles in lateral flow methods to detect genes encoding virulence factors of Shiga toxin-producing Escherichia coli. Analytical and Bioanalytical Chemistry. 2011

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Agnieszka Kędrak-Jabłońska, Sylwia Budniak, Anna Szczawińska, Monika Reksa, Marek Krupa and Krzysztof Szulowski

References 1. Adone R., Pasquali P., La Rosa G., Marianelli C., Muscillo M., Fasanella A., Francia M., Ciuchini F.: Sequence analysis of the genes encoding for the major virulence factors of Bacillus anthracis vaccine strain Carbosap. J Appl Microbiol 2002, 93, 117–121. 2. Bentahir M., Ambroise J., Delcorps C., Pilo P., Gala J.L.: Sensitive and specific recombinase polymerase amplification for fast screening, detection, and identification of Bacillus anthracis in a field setting. Appl Environ Microbiol 2018, 84, 1–13. 3. Beyer W., Turnbull P

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Lina Merkeviciene, Neda Ruzauskaite, Irena Klimiene, Rita Siugzdiniene, Jurgita Dailidaviciene, Marius Virgailis, Raimundas Mockeliunas and Modestas Ruzauskas

. Seputiene V., Bogdaite A., Ruzauskas M., Suziedeliene E.: Antibiotic resistance genes and virulence factors in Enterococcus faecium and Enterococcus faecalis from diseased farm animals: pigs, cattle and poultry. Pol J Vet Sci 2012, 15, 431–438, doi: 10.2478/v10181-012-0067-6. 19. Seputiene V., Povilonis J., Ruzauskas M., Virgailis M., Zlabys P., Suziedeliene E.: Quinolone resistance among Salmonella enterica and Escherichia coli in Lithuania. Biologija, 2006, 3, 74–78. 20. Shobrak M.Y., Abo-Amer A.E.: Role of wild birds as carriers of multi

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Andika C. Putra, Keiji Tanimoto, Elisna Syahruddin, Sita Andarini, Yoshio Hosoi and Keiko Hiyama

. Novel CFTR mutations in a Korean infant with cystic fibrosis and pancreatic insufficiency. J Korean Med Sci. 2010; 25:163-5. 6. Collins F. Genetics terminology for respiratory physicians. Paediatr Respir Rev. 2009; 10:124-33. 7. Fu J, Festen EA, Wijmenga C. Multi-ethnic studies in complex traits. Hum Mol Genet. 2011; 20:R206-13. 8. Ober C, Hoffjan S. Asthma genetics 2006: the long and winding road to gene discovery. Genes Immun. 2006; 7:95-100. 9. Moffatt MF, Kabesch M, Liang L, Dixon AL, Strachan D

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Linda Bāra, Jeļena Eglīte, Pēteris Ošs, Vinita Cauce, Vilnis Lietuvietis, Ludmila Vīksna, Elvīra Hagina and Angelika Krūmiņa

., Hopper, J. L. (2005). Key concepts in genetic epidemiology. Lancet, 366 , 941–951. Cajander, S., Tina, E., Bäckman, A., Magnuson, A., Strålin, K., Söderquist, B., Källman, J. (2016). Quantitative real-time polymerase chain reaction measurement of HLA-DRA gene expression in whole blood is highly reproducible and shows changes that reflect dynamic shifts in monocyte surface HLA-DR expression during the course of sepsis. PLoS One , 11 (5), e0154690. Cajander, S., Bäckman, A., Tina, E., Stralin, K., Bo Soderquist, Kallman, J. (2013). Preliminary

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Helena Bujdáková, Naďa Kulková and Lucia Černáková

;26: e1000828. 15. Uppuluri P, Pierce CG, Thomas DP, Bubeck SS, Saville SP, Lopez-Ribot JL. The transcriptional regulator Nrg1p controls Candida albicans biofilm formation and dispersion. Eukaryot Cell 2010;9:1531-7. 16. Nailis H, Kucharikova S, Řičicova M, Van Dijck P, Deforce D, Nelis H, Coenye T. Real-time PCR expression profiling of genes encoding potential virulence factors in Candida albicans biofilms: identification of model-dependent and - independent gene expression. BMC Microbiol 2010;16:114. 17. Nett JE

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Miroslav Pohanka, Oto Pavlis, Hana Svobodova and Jiri Pikula

and microtine species to infection by a wild strain of Francisella tularensis subsp. holarctica. Vet Med (Czech)   54 : 64-74. Bell BL, Mohapatra NP and Gunn JS. (2010). Regulation of virulence gene transcripts by the Francisella novicida orphan response regulator PmrA: role of phosphorylation and evidence of MGlA/SspA interaction. Infect Immun   78 : 2189-2198. Bergsbaken T and Cookson BT. (2009). Innate immune response during Yersinia infection: critical modulation of cell death mechanisms through phagocyte

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Lakićević Brankica, Bunčić Olivera, Katić Vera, Lepšanović Zorica, Petrović Ljiljana, Janković Vesna and Ikonić Predrag

References 1. Liu D: Identifi cation, subtyping and virulence determination of Listeria monocytogenes, an important foodborne pathogen J Med Microbiol 2006, 55: 645 - 659. 2. Aznar R., Alarcon B.: PCR detection of Listeria monocytogenes: a study of multiple factors affecting sensitivity. J Appl Microbiol 2003, 95: 958 - 966. 3. Dimitrijević M., Teodorović V., Karabasil N., Teodorović R., Bunčić O.: Can electrophoretic types of Listerya monocytogenes induce different sensitivity to lactic acid bacteria

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Hanna Różańska, Aleksandra Lewtak-Piłat, Maria Kubajka and Marcin Weiner

Portugal. RCPV 2014, 109, 79–88. 30. Rüegsegger F., Ruf J., Tschour A., Sigrist Y., Rooskopf M., Hässig M.: Antimicrobial susceptibility of mastitis pathogens of dairy cows in Switzerland. Schw Arch Tier 2014, 156, 483–488. 31. Xiaohu W.U., Zhang Q., Ma Y., Zhang Y., Kan W., Zhao X.: Prevalence of virulence genes and resistance to antibiotics in pathogenic enterococci isolated from mastitic cows. J Vet Med. Sci 2016, 78, 1663–1683. 32. Zdolec N., Dobranić V., Butković I., Koturić A., Filipović I., Medvid V.: Antimicrobial susceptibility of milk bacteria