Références
bibliographiques
182
• Schwarz, J.R., Walker, J.D. and Colwell, R.R., 1975. Deep-sea bacteria: growth and
utilization of n-hexadecane at in situ temperature and pressure. Canadian journal of
microbiology,21(5), pp.682-687.
• Sei, K., Sugimoto, Y., Mori, K., Maki, H. and Kohno, T., 2003. Monitoring of alkane‐
degrading bacteria in a sea‐water microcosm during crude oil degradation by
polymerase chain reaction based on alkane‐catabolic genes. Environmental
Microbiology, 5(6), pp.517-522.
• Shao, Z. and Wang, W., 2013. Enzymes and genes involved in aerobic alkane
degradation. Frontiers in microbiology, 4, p.116.
• Sieber, J.R., McInerney, M.J. and Gunsalus, R.P., 2012. Genomic insights into
syntrophy: the paradigm for anaerobic metabolic cooperation. Annual review of
microbiology, 66, pp.429-452.
• Sievers, F., Wilm, A., Dineen, D., Gibson, T.J., Karplus, K., Li, W., Lopez, R.,
McWilliam, H., Remmert, M., Söding, J. and Thompson, J.D., 2011. Fast, scalable
generation of high‐quality protein multiple sequence alignments using Clustal
Omega. Molecular systems biology, 7(1), p.539.
• Sihag, S., Pathak, H. and Jaroli, D.P., 2014. Factors affecting the rate of
biodegradation of polyaromatic hydrocarbons.International Journal of Pure &
Applied Bioscience, 2, pp.185-202.
• Sikkema, J., de Bont, J.A. and Poolman, B., 1995. Mechanisms of membrane toxicity
of hydrocarbons.Microbiological reviews, 59(2), pp.201-222.
• Singer, M.E., 1984. Microbial metabolism of straight-chain and branched
alkanes. Petroleum microbiology, pp.1-59.
• Singleton P. et Sainsbury D., 1984. Bactériologies. Ed. MASSON, 158 p.
• Singleton, P. 1999. Bactériologie. Dunod, Paris.p.356.
• Sneath, P.H. and Sokal, R.R., 1973. Numerical taxonomy. The principles and practice
of numerical classification.
• So, C.M. and Young, L.Y., 1999. Initial reactions in anaerobic alkane degradation by
a sulfate reducer, strain AK-01. Applied and Environmental Microbiology, 65(12),
pp.5532-5540.
• Soclo, H.H., Garrigues, P.H. and Ewald, M., 2000. Origin of polycyclic aromatic
hydrocarbons (PAHs) in coastal marine sediments: case studies in Cotonou (Benin)
and Aquitaine (France) areas. Marine pollution bulletin, 40(5), pp.387-396
• Soltani, M., 2004. Distribution lipidique et voies métaboliques chez quatre bactéries
Gram-négatives hydrocarbonoclastes. Variation en fonction de la source de carbone.
Doctorat en Chimie Analytique de l’université Paris 6, 284 p.
bibliographiques
182
• Schwarz, J.R., Walker, J.D. and Colwell, R.R., 1975. Deep-sea bacteria: growth and
utilization of n-hexadecane at in situ temperature and pressure. Canadian journal of
microbiology,21(5), pp.682-687.
• Sei, K., Sugimoto, Y., Mori, K., Maki, H. and Kohno, T., 2003. Monitoring of alkane‐
degrading bacteria in a sea‐water microcosm during crude oil degradation by
polymerase chain reaction based on alkane‐catabolic genes. Environmental
Microbiology, 5(6), pp.517-522.
• Shao, Z. and Wang, W., 2013. Enzymes and genes involved in aerobic alkane
degradation. Frontiers in microbiology, 4, p.116.
• Sieber, J.R., McInerney, M.J. and Gunsalus, R.P., 2012. Genomic insights into
syntrophy: the paradigm for anaerobic metabolic cooperation. Annual review of
microbiology, 66, pp.429-452.
• Sievers, F., Wilm, A., Dineen, D., Gibson, T.J., Karplus, K., Li, W., Lopez, R.,
McWilliam, H., Remmert, M., Söding, J. and Thompson, J.D., 2011. Fast, scalable
generation of high‐quality protein multiple sequence alignments using Clustal
Omega. Molecular systems biology, 7(1), p.539.
• Sihag, S., Pathak, H. and Jaroli, D.P., 2014. Factors affecting the rate of
biodegradation of polyaromatic hydrocarbons.International Journal of Pure &
Applied Bioscience, 2, pp.185-202.
• Sikkema, J., de Bont, J.A. and Poolman, B., 1995. Mechanisms of membrane toxicity
of hydrocarbons.Microbiological reviews, 59(2), pp.201-222.
• Singer, M.E., 1984. Microbial metabolism of straight-chain and branched
alkanes. Petroleum microbiology, pp.1-59.
• Singleton P. et Sainsbury D., 1984. Bactériologies. Ed. MASSON, 158 p.
• Singleton, P. 1999. Bactériologie. Dunod, Paris.p.356.
• Sneath, P.H. and Sokal, R.R., 1973. Numerical taxonomy. The principles and practice
of numerical classification.
• So, C.M. and Young, L.Y., 1999. Initial reactions in anaerobic alkane degradation by
a sulfate reducer, strain AK-01. Applied and Environmental Microbiology, 65(12),
pp.5532-5540.
• Soclo, H.H., Garrigues, P.H. and Ewald, M., 2000. Origin of polycyclic aromatic
hydrocarbons (PAHs) in coastal marine sediments: case studies in Cotonou (Benin)
and Aquitaine (France) areas. Marine pollution bulletin, 40(5), pp.387-396
• Soltani, M., 2004. Distribution lipidique et voies métaboliques chez quatre bactéries
Gram-négatives hydrocarbonoclastes. Variation en fonction de la source de carbone.
Doctorat en Chimie Analytique de l’université Paris 6, 284 p.
