Références
bibliographiques
188
• Yang, B., Wang, Y. and Qian, P.Y., 2016. Sensitivity and correlation of hypervariable
regions in 16S rRNA genes in phylogenetic analysis. BMC bioinformatics, 17(1),
p.135.
• Youssef, N., Simpson, D.R., Duncan, K.E., McInerney, M.J., Folmsbee, M., Fincher,
T. and Knapp, R.M., 2007. In situ biosurfactant production by Bacillus strains injected
into a limestone petroleum reservoir. Applied and Environmental Microbiology, 73(4),
pp.1239-1247.
• Zanaroli, G., Di Toro, S., Todaro, D., Varese, G.C., Bertolotto, A. and Fava, F., 2010.
Characterization of two diesel fuel degrading microbial consortia enriched from a non
acclimated, complex source of microorganisms. Microbial cell factories,9(1), p.10.
• Zenati, B., Chebbi, A., Badis, A., Eddouaouda, K., Boutoumi, H., El Hattab, M.,
Hentati, D., Chelbi, M., Sayadi, S., Chamkha, M. and Franzetti, A., 2018. A non-toxic
microbial surfactant from Marinobacter hydrocarbonoclasticus SdK644 for crude oil
solubilization enhancement. Ecotoxicology and environmental safety, 154, pp.100107.
• Zenati, B., 2018. Etude de la biodégradation des hydrocarbures pétroliers par des
bactéries marines : application en traitement des eaux de mer contaminées par le
pétrole. Doctorat en Chimie industrielle de l’université Saad Dahleb, Blida, 187 p.
• Zeng, J., Zhu, Q., Li, Y., Dai, Y., Wu, Y., Sun, Y., Miu, L., Chen, H. and Lin, X.,
2019. Isolation of diverse pyrene-degrading bacteria via introducing readily utilized
phenanthrene.Chemosphere, 222, pp.534-540.
• Zengler, K., Richnow, H.H., Rosselló-Mora, R., Michaelis, W. and Widdel, F., 1999.
Methane
formation
from
long-chain
alkanes
by
anaerobic
microorganisms. Nature, 401(6750), p.266.
• Zhang, C. and Bennett, G.N., 2005. Biodegradation of xenobiotics by anaerobic
bacteria. Applied Microbiology and Biotechnology, 67(5), pp.600-618.
• Zhang, Z., Hou, Z., Yang, C., Ma, C., Tao, F. and Xu, P., 2011. Degradation of nalkanes and polycyclic aromatic hydrocarbons in petroleum by a newly isolated
Pseudomonas aeruginosa DQ8. Bioresource Technology, 102(5), pp.4111-4116.
• Zhao, Z., Selvam, A. and Wong, J.W.C., 2011. Synergistic effect of thermophilic
temperature and biosurfactant produced by Acinetobacter calcoaceticus BU03 on the
biodegradation of phenanthrene in bioslurry system. Journal of hazardous
materials, 190(1-3), pp.345-350
• Zhou, Y., Liu, R. and Tang, H., 2004. Sorption interaction of phenanthrene with soil
and sediment of different particle sizes and in various CaCl2 solutions. Journal of
colloid and interface science, 270(1), pp.37-46.
• Zinger, L., Amaral-Zettler, L.A., Fuhrman, J.A., Horner-Devine, M.C., Huse, S.M.,
Welch, D.B.M., Martiny, J.B., Sogin, M., Boetius, A. and Ramette, A., 2011. Global
bibliographiques
188
• Yang, B., Wang, Y. and Qian, P.Y., 2016. Sensitivity and correlation of hypervariable
regions in 16S rRNA genes in phylogenetic analysis. BMC bioinformatics, 17(1),
p.135.
• Youssef, N., Simpson, D.R., Duncan, K.E., McInerney, M.J., Folmsbee, M., Fincher,
T. and Knapp, R.M., 2007. In situ biosurfactant production by Bacillus strains injected
into a limestone petroleum reservoir. Applied and Environmental Microbiology, 73(4),
pp.1239-1247.
• Zanaroli, G., Di Toro, S., Todaro, D., Varese, G.C., Bertolotto, A. and Fava, F., 2010.
Characterization of two diesel fuel degrading microbial consortia enriched from a non
acclimated, complex source of microorganisms. Microbial cell factories,9(1), p.10.
• Zenati, B., Chebbi, A., Badis, A., Eddouaouda, K., Boutoumi, H., El Hattab, M.,
Hentati, D., Chelbi, M., Sayadi, S., Chamkha, M. and Franzetti, A., 2018. A non-toxic
microbial surfactant from Marinobacter hydrocarbonoclasticus SdK644 for crude oil
solubilization enhancement. Ecotoxicology and environmental safety, 154, pp.100107.
• Zenati, B., 2018. Etude de la biodégradation des hydrocarbures pétroliers par des
bactéries marines : application en traitement des eaux de mer contaminées par le
pétrole. Doctorat en Chimie industrielle de l’université Saad Dahleb, Blida, 187 p.
• Zeng, J., Zhu, Q., Li, Y., Dai, Y., Wu, Y., Sun, Y., Miu, L., Chen, H. and Lin, X.,
2019. Isolation of diverse pyrene-degrading bacteria via introducing readily utilized
phenanthrene.Chemosphere, 222, pp.534-540.
• Zengler, K., Richnow, H.H., Rosselló-Mora, R., Michaelis, W. and Widdel, F., 1999.
Methane
formation
from
long-chain
alkanes
by
anaerobic
microorganisms. Nature, 401(6750), p.266.
• Zhang, C. and Bennett, G.N., 2005. Biodegradation of xenobiotics by anaerobic
bacteria. Applied Microbiology and Biotechnology, 67(5), pp.600-618.
• Zhang, Z., Hou, Z., Yang, C., Ma, C., Tao, F. and Xu, P., 2011. Degradation of nalkanes and polycyclic aromatic hydrocarbons in petroleum by a newly isolated
Pseudomonas aeruginosa DQ8. Bioresource Technology, 102(5), pp.4111-4116.
• Zhao, Z., Selvam, A. and Wong, J.W.C., 2011. Synergistic effect of thermophilic
temperature and biosurfactant produced by Acinetobacter calcoaceticus BU03 on the
biodegradation of phenanthrene in bioslurry system. Journal of hazardous
materials, 190(1-3), pp.345-350
• Zhou, Y., Liu, R. and Tang, H., 2004. Sorption interaction of phenanthrene with soil
and sediment of different particle sizes and in various CaCl2 solutions. Journal of
colloid and interface science, 270(1), pp.37-46.
• Zinger, L., Amaral-Zettler, L.A., Fuhrman, J.A., Horner-Devine, M.C., Huse, S.M.,
Welch, D.B.M., Martiny, J.B., Sogin, M., Boetius, A. and Ramette, A., 2011. Global
