Original Article
Biofilm Quantification in Listeria monocytogenes 4B Serotype isolated from Animals of Gujarat State, India
Year: 2021 | Month: February | Volume 11 | Issue 1
An, Y.H. and Friedman, R.J. 2000. Handbook of bacterial adhesion: principles, methods, and applications. Humana Press, Totowa, N.J.
View at Google ScholarAnnonymous, 1994. Bureau of Indian Standards. Microbiology – general guidance for the detection of Listeria monocytogenes. Committee Draft, CD, 11290.
View at Google ScholarBergholz, T.M., Bowen, B., Wiedmann, M. and Boor, K.J. 2012. Listeria monocytogenes shows temperature-dependent and -independent responses to salt stress, including responses that induce cross-protection against other stresses. Appl. Environ. Microbiol., 78: 2602–2612.
View at Google ScholarBridier, A., Briandet, R., Thomas, V. and Dubois-Brissonnet, F. 2011. Resistance of bacterial biofilms to disinfectants: a review. Biofouling, 27, 1017–1032.
View at Google ScholarChoudhary, P., Singh, S. and Agarwal, V. 2020. Microbial Biofilms. IntechOpen. A Book Chapter, http://dx.doi. org/10.5772/intechopen.90790, pp 1-14.
View at Google ScholarCoffey, A., Rombouts, F.M. and Abee, T. 1996. Influence of environmental parameters on phosphatidylcholine phospholipase C production in Listeria monocytogenes: a convenient method to differentiate L. monocytogenes from other Listeria species. Appl. Environ. Microbiol., 62: 1252– 1256.
View at Google ScholarDoijad, S.P., Barbuddhe, S.B., Garg, S., Poharkar, K.V., Kalorey, D.R., Kurkure, N.V., Rawool, D.B. and Chakraborty, T. 2015. Biofilm- forming abilities of Listeria monocytogenes serotypes isolated from different sources. PLoS One, 10: 1371-1374.
View at Google ScholarDonlan, R. M. 2002. Biofilms: microbial life on surfaces. Emerg. Infect. Dis., 8: 881–890.
View at Google ScholarDonlan, R.M. and Costerton, J.W. 2002. Biofilms: Survival Mechanisms of Clinically Relevant Microorganisms. Clin. Microbiol. Rev., 15: 167-193.
View at Google ScholarDoumith, M., Buchrieser, C., Glaser, P., Jacquet, C. and Martin P. 2004. Differentiation of the Major Listeria monocytogenes Serovars by Multiplex PCR. J. Clin. Microbiol., 42: 3819– 3822.
View at Google ScholarEsbelin, J., Santos, T. and Hébraud, M. 2018. Desiccation: an environmental and food industry stress that bacteria commonly face. Food Microbiol., 69: 82–88
View at Google ScholarFreeman, D.J., Falkner, F.R. and Keane, C.T. 1989.: New method for detecting slime production by coagulase negative Staphylococci. J. Clin. Pathol., 4: 872-874.
View at Google ScholarHarveya, J., Keenana, K.P. and Gilmour, A. 2007. Assessing biofilm formation by Listeria monocytogenes strains. Food Microbiol., 24: 380-392.
View at Google ScholarKalmokoff, M.L., Austin, J.W., Wan, X.D., Sanders, G., Banerjee, S. and Farber, G. 2001. Adsorption, attachment and biofilm formation among isolates of Listeria monocytogenes using model conditions. J. Appl. Microbiol., 91: 725–734.
View at Google ScholarKamelia, M.O., Ahmed, S., Usama, H.A., Essam, H.M., Ahmed, O. and Zolnikov, T. 2016. Determination of virulence and antibiotic resistance pattern of biofilm producing Listeria species isolated from retail raw milk. BMC Microbiol., 16: 263.
View at Google ScholarLatorre, A.A., Van Kessel, J.A.S., Karns, J.S., Zurakowski, M.J., Pradhan, A.K., Boor, K.J., Adolph, E., Sukhnanand, S. and Schukken, Y.H. 2011. Increased in vitro adherence and on-farm persistence of predominant and persistent Listeria monocytogenes strains in the milking system. Appl. Environ. Microbiol., 77:3 676–84.
View at Google ScholarLeclercq, A. 2004. Atypical colonial morphology and low recoveries of Listeria monocytogenes strains on Oxford, PALCAM, Rapid’L.mono and ALOA solid media. J. Microbiol. Methods., 57: 251– 258.
View at Google ScholarLee, B.H., Cole, S., Badel-Berchoux, S., Guillierm, L., Felix, B., Krezdorn, N., Hébraud, M., Bernardi, T., Sultan, I. and Piveteau, P. 2019. Biofilm Formation of Listeria monocytogenes Strains Under Food Processing Environments and Pan-Genome-Wide Association Study. Frontiers in Microbiol., 10: 2698-2715.
View at Google ScholarLuo, Q., Shang, J., Feng, X., Guo, X., Zhang, L. and Zhou, Q. 2013. PrfA Led to Reduced Biofilm Formation and Contributed to Altered Gene Expression Patterns in Biofilm- Forming Listeria monocytogenes. Curr. Microbiol., 67: 372– 378.
View at Google ScholarMatle, I., Mbatha, K.R. and Madoroba, E. 2020. A review of Listeria monocytogenes from meat and meat products: Epidemiology, virulence factors, antimicrobial resistance and diagnosis. Onderstepoort J. Vet. Res., 87(1): a1869.
View at Google ScholarMelchior MB, Fink-Gremmels J. and Gaastra W. 2006a. Comparative assessment of the antimicrobial susceptibility of Staphylococcus aureus isolates from bovine mastitis in biofilm versus planktonic culture. J. Vet. Med. B Infect. Dis. Vet. Pub. Health, 53: 326–332.
View at Google ScholarMelchior, M.B., Vaarkamp, H. and Fink-Gremmels, J. 2006b. Biofilms: a role in recurrent mastitis infections? Vet. J., 171: 398–407.
View at Google ScholarOsman, K.M., Samir, A., Abo-Shama, U.H., Mohamed, E.H., Orabi, A. and Zolnikov, T. 2016. Determination of virulence and antibiotic resistance pattern of biofilm producing Listeria species isolated from retail raw milk. BMC Microbiol., 16: 263-275
View at Google ScholarStepanovic, S., Cirkovic, I., Ranin, L. and Svabic-Vlahovic, M. 2004. Biofilm formation by Salmonella spp. and Listeria monocytogenes on plastic surface. Letters Appl. Microbiol., 38: 428–432.
View at Google ScholarThibeaux R., Kainiu M. and Goarant C. 2020. Biofilm Formation and Quantification Using the 96-Microtiter Plate. In: Koizumi N., Picardeau M. (eds) Leptospira spp.. Methods in Molecular Biology, vol 2134. Humana, New York.
View at Google ScholarVasudevan Nair, M.K.M., Annamalai, T. and Venkatanarayanan, K. S. 2003. Phenotypic and genotypic characterization of bovine mastitis isolates of Staphylococcus aureus in biofilm formation. Vet. Microbiol., 92: 179-185.
View at Google Scholar



