78
• Frank, J. A., Reich, C. I., Sharma, S., Weisbaum, J. S., Wilson, B. A., & Olsen, G. J.
(2008). Critical evaluation of two primers commonly used for amplification of bacterial 16S
rRNA genes. Applied and environmental microbiology, 74(8), p.p. 2461-2470.
• Franzetti, A., Gandolfi, I., Bestetti, G., Smyth, T. J., & Banat, I. M. (2010). Production and
applications of trehalose lipid biosurfactants. European Journal of Lipid Science and
Technology, 112(6), p.p. 617-627.
• Froehner, S., Machado, K. S., Dombroski, L. F., Nunes, A. C., Kishi, R. T., Bleninger, T.,
& Sanez, J. (2012). Natural biofilms in freshwater ecosystem: indicators of the presence of
polycyclic aromatic hydrocarbons. Water, Air, & Soil Pollution, 223(7), p.p. 3965-3973.
• Gao, X., Gao, W., Cui, Z., Han, B., Yang, P., Sun, C., & Zheng, L. (2015). Biodiversity and
degradation potential of oil-degrading bacteria isolated from deep-sea sediments of South MidAtlantic Ridge. Marine pollution bulletin, 97(1-2), p.p. 373-380
• Gerson, D. F., & Zajic, J. E. (1978). Effects of oxygenation and mixing on surfactant
production by Corynebacterium lepus. In Proc Can Fed Biol Soc (Vol. 21, p. 212).
• Ghribi, D., Abdelkefi-Mesrati, L., Mnif, I., Kammoun, R., Ayadi, I., Saadaoui, I., ... &
Chaabouni-Ellouze, S. (2012). Investigation of antimicrobial activity and statistical
optimization of Bacillus subtilis SPB1 biosurfactant production in solid-state fermentation.
Journal of Biomedicine and Biotechnology, 2012.
• Goldberg, J. (2002). Biofilms and antibiotic resistance: a genetic linkage. TRENDS in
Microbiology, 10(6), 264.
• Greer, C. W. (2010). Bacterial diversity in hydrocarbon-polluted rivers, estuaries and
sediments. In Handbook of hydrocarbon and lipid microbiology.
• Guiraud, J.P. (1998). Microbiologie Alimentaire. Paris : Dunod.
• Haras, D. (2005). Biofilms et altérations des matériaux: de l’analyse du phénomène aux
stratégies de prévention. Matériaux & Techniques, 93, s-27.
• Hassanshahian, M., Emtiazi, G. (2008). Investigation of alkane biodegradation using the
microtiter plate method and correlation between biofilm formation, biosurfactant production
and crude oil biodegradation. International Biodeterioration & Biodegradation, 62(2), pp.170178.
• Head, I. M., Jones, D. M., & Röling, W. F. (2006). Marine microorganisms make a meal of
oil. Nature Reviews Microbiology, 4(3), p.p. 173-182.
• Hentati, D. (2018). Isolement et caractérisation des bactéries marines hydrocarbonoclastes,
production des biosurfactants er étude de la diversité microbienne au sein de trois ports de Sfax,
• Frank, J. A., Reich, C. I., Sharma, S., Weisbaum, J. S., Wilson, B. A., & Olsen, G. J.
(2008). Critical evaluation of two primers commonly used for amplification of bacterial 16S
rRNA genes. Applied and environmental microbiology, 74(8), p.p. 2461-2470.
• Franzetti, A., Gandolfi, I., Bestetti, G., Smyth, T. J., & Banat, I. M. (2010). Production and
applications of trehalose lipid biosurfactants. European Journal of Lipid Science and
Technology, 112(6), p.p. 617-627.
• Froehner, S., Machado, K. S., Dombroski, L. F., Nunes, A. C., Kishi, R. T., Bleninger, T.,
& Sanez, J. (2012). Natural biofilms in freshwater ecosystem: indicators of the presence of
polycyclic aromatic hydrocarbons. Water, Air, & Soil Pollution, 223(7), p.p. 3965-3973.
• Gao, X., Gao, W., Cui, Z., Han, B., Yang, P., Sun, C., & Zheng, L. (2015). Biodiversity and
degradation potential of oil-degrading bacteria isolated from deep-sea sediments of South MidAtlantic Ridge. Marine pollution bulletin, 97(1-2), p.p. 373-380
• Gerson, D. F., & Zajic, J. E. (1978). Effects of oxygenation and mixing on surfactant
production by Corynebacterium lepus. In Proc Can Fed Biol Soc (Vol. 21, p. 212).
• Ghribi, D., Abdelkefi-Mesrati, L., Mnif, I., Kammoun, R., Ayadi, I., Saadaoui, I., ... &
Chaabouni-Ellouze, S. (2012). Investigation of antimicrobial activity and statistical
optimization of Bacillus subtilis SPB1 biosurfactant production in solid-state fermentation.
Journal of Biomedicine and Biotechnology, 2012.
• Goldberg, J. (2002). Biofilms and antibiotic resistance: a genetic linkage. TRENDS in
Microbiology, 10(6), 264.
• Greer, C. W. (2010). Bacterial diversity in hydrocarbon-polluted rivers, estuaries and
sediments. In Handbook of hydrocarbon and lipid microbiology.
• Guiraud, J.P. (1998). Microbiologie Alimentaire. Paris : Dunod.
• Haras, D. (2005). Biofilms et altérations des matériaux: de l’analyse du phénomène aux
stratégies de prévention. Matériaux & Techniques, 93, s-27.
• Hassanshahian, M., Emtiazi, G. (2008). Investigation of alkane biodegradation using the
microtiter plate method and correlation between biofilm formation, biosurfactant production
and crude oil biodegradation. International Biodeterioration & Biodegradation, 62(2), pp.170178.
• Head, I. M., Jones, D. M., & Röling, W. F. (2006). Marine microorganisms make a meal of
oil. Nature Reviews Microbiology, 4(3), p.p. 173-182.
• Hentati, D. (2018). Isolement et caractérisation des bactéries marines hydrocarbonoclastes,
production des biosurfactants er étude de la diversité microbienne au sein de trois ports de Sfax,
