66
MCGENITY, M., TERRY, J. et al. (2012). Marine crude-oil biodegradation: a
central role for interspecies interactions.School of biological sciences. Aquatic
biosystems. Vol. 8, n°1, pp. 10.
PARALES, R., HARWOOD, D. (2000).Toluene-degrading bacteria are
chemotactic towards the environmental polluants benzene, toluene and
trichlorethyle. Applied and environmental microbiology. Vol.66, n°9, pp.
4098_4104
PHILIPPS, C. (1985). Photochemistry of petroleum in water: Photooxidation
causes changes in oil and enhances dissolution of its oxidized products.
Environmental science and technology. Vol.19, n°5, pp. 569-579.
RATLEDGE, C. (1978). Degradation of aliphatic hydrocarbons. In: Watkinson,
R.J.(Ed.), Development in biodegradation of hydrocarbons. Applied sciences
publishers. Vol.1, n°3, pp. 1-46.
ROCHA, M. et al. (2007). Production of biosurfactant by Pseudomonas aeruginosa
grown on cashew apple juice. Applied biochemistry and biotechnology. Vol.20, n°3,
pp. 136-140.
RODRIGO, J. et al. (2005). Anthracene biodegradation by Pseudomonas sp.From
a petrochemical Sludge landfarming site. International biodeterioration and
biodegradation. Vol.56, n°2, pp. 143-150.
SANDVIK, S., LODE, A., PEDERSON, T. (1986). Biodegradation of oily sludge
in Norwegian soils. Applied microbiolgy biotechnology. Vol.23, n°5, pp. 297-301.
SAURET, C. (2011). Ecologies des communautés bactériennes marines soumises à
une pollution pétrolière Influence des facteurs environnementaux, de la prédation et
de la récurrence des pollutions. Thèse de doctorat. Microbiologie environnementale.
France : Université de pierre et marie curie, pp. 126-130.
SCRIBAN, R. (1999). Biotechnologie : restauration par voie biologique des sols
contaminés par les polluants organiques. France : Lavoisier. pp. 45-50.
SIKKEMA, J., DE BONT, A ., POOLMAN, B. (1994). Interactions of cyclic
hydrocarbons with biological membranes. Journal of bacteriology. Vol. 269, n°11,
pp. 8022-8028.
MCGENITY, M., TERRY, J. et al. (2012). Marine crude-oil biodegradation: a
central role for interspecies interactions.School of biological sciences. Aquatic
biosystems. Vol. 8, n°1, pp. 10.
PARALES, R., HARWOOD, D. (2000).Toluene-degrading bacteria are
chemotactic towards the environmental polluants benzene, toluene and
trichlorethyle. Applied and environmental microbiology. Vol.66, n°9, pp.
4098_4104
PHILIPPS, C. (1985). Photochemistry of petroleum in water: Photooxidation
causes changes in oil and enhances dissolution of its oxidized products.
Environmental science and technology. Vol.19, n°5, pp. 569-579.
RATLEDGE, C. (1978). Degradation of aliphatic hydrocarbons. In: Watkinson,
R.J.(Ed.), Development in biodegradation of hydrocarbons. Applied sciences
publishers. Vol.1, n°3, pp. 1-46.
ROCHA, M. et al. (2007). Production of biosurfactant by Pseudomonas aeruginosa
grown on cashew apple juice. Applied biochemistry and biotechnology. Vol.20, n°3,
pp. 136-140.
RODRIGO, J. et al. (2005). Anthracene biodegradation by Pseudomonas sp.From
a petrochemical Sludge landfarming site. International biodeterioration and
biodegradation. Vol.56, n°2, pp. 143-150.
SANDVIK, S., LODE, A., PEDERSON, T. (1986). Biodegradation of oily sludge
in Norwegian soils. Applied microbiolgy biotechnology. Vol.23, n°5, pp. 297-301.
SAURET, C. (2011). Ecologies des communautés bactériennes marines soumises à
une pollution pétrolière Influence des facteurs environnementaux, de la prédation et
de la récurrence des pollutions. Thèse de doctorat. Microbiologie environnementale.
France : Université de pierre et marie curie, pp. 126-130.
SCRIBAN, R. (1999). Biotechnologie : restauration par voie biologique des sols
contaminés par les polluants organiques. France : Lavoisier. pp. 45-50.
SIKKEMA, J., DE BONT, A ., POOLMAN, B. (1994). Interactions of cyclic
hydrocarbons with biological membranes. Journal of bacteriology. Vol. 269, n°11,
pp. 8022-8028.
