80
• Karsa, D. R., Bailey, R. M., Shelmerdine, B., McCann, S. A., & Karsa, D. R. (1999).
Overview: a decade of change in the surfactant industry. Special Publications of the Royal
Society of Chemistry, p.p. 230, 1-22.
• Klein, B., Bouriat, P., Goulas, P. and Grimaud, R. (2010). Behavior of Marinobacter
hydrocarbonoclasticus SP17 cells during initiation of biofilm formation at the alkane-water
interface. Biotechnol. Bioeng. 105, p.p. 461–468.
• Kostka, J. E., Prakash, O., Overholt, W. A., Green, S. J., Freyer, G., Canion, A., ... &
Huettel, M. (2011). Hydrocarbon-degrading bacteria and the bacterial community response in
Gulf of Mexico beach sands impacted by the Deepwater Horizon oil spill. Applied and
environmental microbiology, 77(22), p.p. 7962-7974.
• Krepsky, N., Da Silva, F. S., Fontana, L. F., & Crapez, M. A. C. (2007). Alternative
methodology for isolation of biosurfactant-producing bacteria. Brazilian Journal of Biology, 67,
p.p. 117-124.
• Kretschmer, A., Bock, H. & Wagner, E. (1982). Chemical and physical characterization of
interfacial-active lipids from Rhodooccus erythropolis grown on n-alkanes. Appl. Environ.
Microbiol., 44, p.p. 864-70.
• Lai, Q., Li, W., & Shao, Z. (2012). Complete genome sequence of Alcanivorax dieselolei type
strain B5.
• Lane, D. J. (1991). 16S/23S rRNA sequencing. Nucleic acid techniques in bacterial
systematics, p.p. 115-175.
• Lanfranconi, M. P., Alvarez, H. M., & Studdert, C. A. (2003). A strain isolated from gas oil
contaminated soil displays chemotaxis towards gas oil and hexadecane. Environmental
microbiology, 5(10), p.p. 1002-1008.
• Ławniczak, Ł., Kaczorek, E., & Olszanowski, A. (2011). The influence of cell
immobilization by biofilm forming on the biodegradation capabilities of bacterial consortia.
World Journal of Microbiology and Biotechnology, 27(5), p.p. 1183-1188.
• LE GOFF-BUCAS, G. (2002). Le comportement des polluants flottants en cas de déversement
accidentel en eau de mer. thèse de doctorat. Océanologie. Paris : Université de Paris 6. p. 262
• Liu, Y. C., Li, L. Z., Wu, Y., Tian, W., Zhang, L. P., Xu, L., ... & Shen, B. (2010). Isolation
of an alkane degrading Alcanivorax sp. strain 2B5 and cloning of the alkB gene. Bioresource
technology, 101(1), p.p. 310-316.
• Mahjoubi, M., Jaouani, A., Guesmi, A., Amor, S.B., Jouini, A., Cherif, H., Najjari, A.,
Boudabous, A., Koubaa, N. and Cherif, A. (2013). Hydrocarbonoclastic bacteria isolated
• Karsa, D. R., Bailey, R. M., Shelmerdine, B., McCann, S. A., & Karsa, D. R. (1999).
Overview: a decade of change in the surfactant industry. Special Publications of the Royal
Society of Chemistry, p.p. 230, 1-22.
• Klein, B., Bouriat, P., Goulas, P. and Grimaud, R. (2010). Behavior of Marinobacter
hydrocarbonoclasticus SP17 cells during initiation of biofilm formation at the alkane-water
interface. Biotechnol. Bioeng. 105, p.p. 461–468.
• Kostka, J. E., Prakash, O., Overholt, W. A., Green, S. J., Freyer, G., Canion, A., ... &
Huettel, M. (2011). Hydrocarbon-degrading bacteria and the bacterial community response in
Gulf of Mexico beach sands impacted by the Deepwater Horizon oil spill. Applied and
environmental microbiology, 77(22), p.p. 7962-7974.
• Krepsky, N., Da Silva, F. S., Fontana, L. F., & Crapez, M. A. C. (2007). Alternative
methodology for isolation of biosurfactant-producing bacteria. Brazilian Journal of Biology, 67,
p.p. 117-124.
• Kretschmer, A., Bock, H. & Wagner, E. (1982). Chemical and physical characterization of
interfacial-active lipids from Rhodooccus erythropolis grown on n-alkanes. Appl. Environ.
Microbiol., 44, p.p. 864-70.
• Lai, Q., Li, W., & Shao, Z. (2012). Complete genome sequence of Alcanivorax dieselolei type
strain B5.
• Lane, D. J. (1991). 16S/23S rRNA sequencing. Nucleic acid techniques in bacterial
systematics, p.p. 115-175.
• Lanfranconi, M. P., Alvarez, H. M., & Studdert, C. A. (2003). A strain isolated from gas oil
contaminated soil displays chemotaxis towards gas oil and hexadecane. Environmental
microbiology, 5(10), p.p. 1002-1008.
• Ławniczak, Ł., Kaczorek, E., & Olszanowski, A. (2011). The influence of cell
immobilization by biofilm forming on the biodegradation capabilities of bacterial consortia.
World Journal of Microbiology and Biotechnology, 27(5), p.p. 1183-1188.
• LE GOFF-BUCAS, G. (2002). Le comportement des polluants flottants en cas de déversement
accidentel en eau de mer. thèse de doctorat. Océanologie. Paris : Université de Paris 6. p. 262
• Liu, Y. C., Li, L. Z., Wu, Y., Tian, W., Zhang, L. P., Xu, L., ... & Shen, B. (2010). Isolation
of an alkane degrading Alcanivorax sp. strain 2B5 and cloning of the alkB gene. Bioresource
technology, 101(1), p.p. 310-316.
• Mahjoubi, M., Jaouani, A., Guesmi, A., Amor, S.B., Jouini, A., Cherif, H., Najjari, A.,
Boudabous, A., Koubaa, N. and Cherif, A. (2013). Hydrocarbonoclastic bacteria isolated
