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Investigation of Biofilm Formation and Phylogenetic Typing of Escherichia Coli Strains Isolated from Milk of Cows with Mastitis / Ispitivanje Formiranja Biofilma I Filogenetska Tipizacija Sojeva Escherichia Coli Izolovanih Iz Mleka Krava Sa Mastitisom

References 1. Kaper JB, Nataro JP, Mobley HL: Pathogenic Escherichia coli. Nat Rev Microbiol 2004, 2: 123-140. 2. Kaipainen T, Pohjanvirta T, Shpigel NY, Shwimmer A, Pyörälä S, Pelkonen S: Virulence factors of Escherichia coli isolated from bovine clinical mastitis. Veterinary Microbiology 2002, 85: 37-46. 3. Cengiz S, Dinc G, Söğüt MÜ: Detection of several virulence properties, antibiotic resistance and phylogenetic relationship in E. coli isolates originated from cow mastitis. Acta Veterinaria-Beograd 2014, 64

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Detection of Listeria Spp. During Production and Ripening of Petrovská Klobása/Detekcija Listeria Spp. U Toku Proizvodnje I Zrenja Petrovačke Kobasice

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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Safety Evaluation Of Sjenica Cheese With Regard To Coagulase-Positive Staphylococci And Antibiotic Resistance Of Lactic Acid Bacteria And Staphylococci

: Incidence of enterotoxigenic staphylococci and their toxins in foods. J Food Prot 2002, 65:857-860. 10. Perreten V, Schwarz F, Cresta L, Boeglin M, Dasen G, Teuber M: Antibiotic resistance spread in food. Nature (London) 1997, 389:801-802. 11. Wang HH, Manuzon M, Lehmanetal M: Food commensal microbes as a potentially important avenue in transmitting antibiotic resistance genes. FEMSMicrobiologyLetters 2006, 254(2): 226–231. 12. Flórez AB, Alegría A, Rossi F, Delgado S, Felis GE, Torriani S, Mayo B: Molecular identification and quantification of

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Inhibition Of In Vitro Growth Of Porcine Enterotoxigenic And Shiga Toxin-Producing Escherichia Coli By Lactobacillus Plantarum Strains

/86, which cause edema disease in pigs, and nucleotides sequence of the F107 major fimbrial subunit gene, fedA . Infect Immun 1992, 60: 1963-1971. 4. MacLeod DL, Gyles CL, Wilcock BP: Reproduction of edema disease of swine with purified Shiga-like toxin-II variant. Vet Pathol 1991, 28: 66-73. 5. Kwon D, Choi C, Jung T, Chung H-K, Kim J-P, Bae S-S, Cho W-S, Kim J, Chae C: Genotypic prevalence of the fimbrial adhesions (F4, F5, F6, F41 and F18) and toxins (LT, STa, STb and Stx2e) in Escherichia coli isolated from postweaning pigs with diarrhoea or oedema

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Mechanisms of Resistance to Quinolones and Epidemiological Significance of Salmonella spp.

, Lawler AJ, Thompson LJ, Piddock LJV: Expression of homologous RND effl ux pump genes is dependent upon AcrB expression: implications for efflux and virulence inhibitor design. J Antimicrob Chemoth 2015, 70:424-431. 27. Abouzeed YM, Baucheron S, Cloeckaert A: ramR mutations involved in efflux-mediated multidrug resistance in Salmonella enterica serovar Typhimurium. Antimicrob Agents Ch 2008, 52:2428-2434. 28. Zheng J, Cui S, Meng J: Effect of transcriptional activators RamA and SoxS on expression of multidrug efflux pumps AcrAB and AcrEF

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Development of PCR-based identification of Salmonella enterica serovars

Report of EFSA: Analysis of the baseline survey on the prevalence of Campylobacter in broiler batches and of Campylobacter and Salmonella on broiler carcasses, in the EU, 2008. Part B: Analysis of factors associated with Salmonella contamination of broiler carcasses, EFSA Journal 2011, 9 (2):2017. 8. Andino A, Hanning I: Salmonella enterica : survival, colonization, and virulence differences among serovars. Sci World J 2015, DOI 10.1155/2015/520179. 9. Carlton LG, Prescott JF, Songer G, Thoen CO: Pathogenesis of bacterial infection. Hoboken, NY, USA: Wiley

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Molecular Characterization of ESBL-Producing Escherichia Coli Isolated from Healthy Cattle and Sheep

’s Color Atlas and Textbook of Diagnostic Microbiology. Sixth Edition, Lippincott Williams and Wilkins, Philadelphia, USA; 2006, 211-302. 18. Wang G, Clark CG, Rodgers FG: Detection in Escherichia coli of the genes encoding the major virulence factors, the genes defining the O157:H7 serotype, and components of the type 2 shiga toxin family by multiplex PCR. J Clin Microbiol 2002, 40:3613-3619. 19. CLSI (Clinical and Laboratory Standards Institute): Performance standards for antimicrobial susceptibility testing, 26th edition, CLSI document

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Investigation On The Etiology Of Subclinical Mastitis In Jersey And Hybrid Jersey Dairy Cows

, Bhandari BB, Jhala MK: Antibiotic resistance and virulence genes in Streptococcus agalactiae isolated from cases of bovine subclinical mastitis. Vet Arhiv, 82, 423-432, 2012. 35. Pyorala S: Treatment of mastitis during lactation. Ir Vet J, 62(4): 40, 2009. 36. Du Preez JH: Bovine mastitis therapy and why it fails. JSAVA, 71, 201-208, 2000. 37. Bakir M, Sabrina R, Toufik M: Antibacterial susceptibility profiles of subclinical mastitis pathogens isolated in Batna and Setif governorates (east of Algeria), Vet World, 4, 537-541, 2011. 38. Bulla TR

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Comparative Pathomorphological, Mycological and Molecular Examination of Turkey Poults with Different Immunological Status Experimentally Infected with Aspergillus fumigatus

, Ludwig A, Vivanco AB, Bikandi J, Pontón J, Garaizar J: Genes and molecules involved in Aspergillus fumigatus virulence. Rev Iberoam Micol 2005, 22 (1): 1-23. 31. Matsuse H, Fukushima C, Fukahori S, Tsuchida T, Kawano T, Nishino T, Kohno S: Differential effects of Dexamethasone and Itraconazole on Aspergillus fumigatus – exacerbated allergic airway inflammation in a murine model of mite - sensitized asthma. Basic Sci Invest 2013, 85:429-435. 32. Shi Bao Z, You G, Li Wen-Bin, Jiang T: A single Aspergillus fumigatus intracranial abscess in an

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Molecular Detection of Pseudorabies Virus (PrV), Porcine Parvovirus (PPV) and Porcine Circovirus 2 (PCV2) in Swine in Republic of Montenegro

duplex reverse transcription real-time PCR for the surveillance of porcine reproductive and respiratory syndrome virus and porcine circovirus type 2. Journal of Virological Methods 2014, 201:13-19. 16. Krakowka S, Allan G, Ellis J, Hambergd A, Charreyre C, Kaufmann E, Brooks C, Meehan B: A nine-base nucleotide sequence in the porcine circovirus type 2 (PCV2) nucleocapsid gene determines viral replication and virulence. Virus Research 2012, 164:90-99. 17. Wei C, Zhang M, Chen Y, Xie J, Huang Z, Zhu W, Xu T, Cao Z, Zhou P, Su S, Zhang G: Genetic evolution and

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