Références
  bibliographiques
 

 

 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
  170
 
• Hara, A., Syutsubo, K. and Harayama, S., 2003. Alcanivorax which prevails in oil‐
contaminated seawater exhibits broad substrate specificity for alkane
degradation. Environmental Microbiology, 5(9), pp.746-753.
• Hara, A., Baik, S.H., Syutsubo, K., Misawa, N., Smits, T.H., Van Beilen, J.B. and
Harayama, S., 2004. Cloning and functional analysis of alkB genes in Alcanivorax
borkumensis SK2. Environmental Microbiology, 6(3), pp.191-197.
• Harayama, S., Kishira, H., Kasai, Y. and Shutsubo, K., 1999. Petroleum
biodegradation in marine environments. Journal of molecular microbiology and
biotechnology, 1(1), pp.63-70.
• Harayama, S., Kasai, Y. and Hara, A., 2004. Microbial communities in oilcontaminated seawater. Current opinion in biotechnology, 15(3), pp.205-214.
• Harms, G., Rabus, R. and Widdel, F., 1999. Anaerobic oxidation of the aromatic plant
hydrocarbon p-cymene by newly isolated denitrifying bacteria. Archives of
microbiology,172(5), pp.303-312.
• 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.170-178.
• Hassanshahian, M., Emtiazi, G. and Cappello, S., 2012. Isolation and characterization
of crude-oil-degrading bacteria from the Persian Gulf and the Caspian Sea. Marine
pollution bulletin, 64(1), pp.7-12
• Hassanshahian, M., Emtiazi, G., Caruso, G. and Cappello, S., 2014. Bioremediation
(bioaugmentation/biostimulation) trials of oil polluted seawater: a mesocosm
simulation study. Marine environmental research, 95, pp.28-38.
• Head, I.M., Jones, D.M. and Röling, W.F., 2006. Marine microorganisms make a meal
of oil. Nature Reviews Microbiology, 4(3), p.173
• Hedlund, B.P., Geiselbrecht, A.D., Bair, T.J. and Staley, J.T., 1999. Polycyclic
aromatic hydrocarbon degradation by a new marine bacterium, Neptunomonas
naphthovorans gen. nov., sp. nov. Applied and Environmental Microbiology, 65(1),
pp.251-259.
• Heider, J., Spormann, A.M., Beller, H.R. and Widdel, F., 1998. Anaerobic bacterial
metabolism of hydrocarbons. FEMS Microbiology Reviews, 22(5), pp.459-473.
• Hendrickx, B., Junca, H., Vosahlova, J., Lindner, A., Rüegg, I., Bucheli-Witschel, M.,
Faber, F., Egli, T., Mau, M., Schlömann, M. and Brennerova, M., 2006. Alternative
primer sets for PCR detection of genotypes involved in bacterial aerobic BTEX
degradation: distribution of the genes in BTEX degrading isolates and in subsurface
soils of a BTEX contaminated industrial site. Journal of Microbiological
Methods, 64(2), pp.250-265.
Précédent

Isolement et caractérisation des bactéries marines dégradant les différentes fractions du pétrole : cas d’étude : port de Sidi Fredj - 188/241

Suivant