Références bibliographiques
80
-Shanker A K, Djanaguiraman M, Sudhagar R, Chandrashekar C N et Pathmanabhan
G(.2004). Differential antioxidative response of ascorbate glutathione pathway enzymes
andmetabolites to chromium speciation stress in green gram (Vigna radiate (L) R Wilcz.ekcv CO
4)roots. Plant Science.
-Srinath T, KhareS etRamteke P W. (2001). Isolation of hexavalent chromium-reducing Crtolerant
facultative anaerobes from tannery effluent.The Journal of General and AppliedMicrobiology.p.p 6266
-Srinath (2001) Chromium (VI) biosorption and bioaccumulation by chromate resistant bacteria:
Chemosphere 24P
-Suthanthararajan R (2003). Membrane application for recovery and reuse of water from treated
tannery wastewater. Desalination, 65 P
-Sethuraman et Balasubramanian, (2010) Removal of Cr (VI) from aqueous solution using Bacillus
subtilis, Pseudomonas aeruginosa and Enterobacter cloacae. International Journal of Engineering
Science and Technology, p.p 66-67 .
-Soha et Sahar (2010) Identification of bacterial strains from tannery effluent and reduction of
hexavalent chromium. Journal of Environmental Biology. 66 P.
-Shakoori (2000) Hexavalent chromium reduction by a dichromate-resistant gram-positive bacterium
isolated from effluents of tanneries. Applied Microbiology and Biotechnology 67 P.
-Singh (2013). Detoxification of hexavalent cbromium by an indigenous facuftatlve anaerobfo
Baciiius cereus strain lso1ated from tannery effluent Afrfoan Journal or Biotechnology. 67 P.
T
-Thatoi H, Das S, Mishra J, Rath B Pet Das N.( 2014). Bacterial chromate reductase, a
potentialenzyme for bioremediation of hexavalent chromium: A review. Journal of
EnvironmentalManagement. 24 P
-Thacker U, Parikh R, Shouche Y et Madamwar D. (2006). Hexavalent chromium reduction
byProvidencia sp. Process Biochemistry. 24 P
-Thacker U, Parikh R, Shouche Y, Madamwar D. 2007. Reduction of chromate by cell-freeextract
of Bruce/la sp isolated from Cr (VI) contaminated sites. Bioresource Technology. 24P
-Touahir (2023)Assessment and characterization of heavy metals resistance bacteria isolated in
Southwestern Mediterranean coastal waters (Bou-Ismail Bay): Impacts of anthropogenic
activitiesLaboratory Conservation and Valorization of Marine Resources (CVRM), National Higher
School of Marine Sciences and Coastal Management (ENSSMAL), Algiers, Algeria p.p.p 39-44-45
-Touahir, (2017) évaluation et caractérisation de la résistance aux antibiotiques chez des bactéries a
gram négatif isolées a partir de milieux et d’animaux aquatiques
p.p 39-68
-Ture (2021)Effects of cage farming on antimicrobial and heavy metal resistance of Escherichia coli,
Enterococcus faecium, and Iranian Journal of Fisheries Sciences 22(3) 2023 614 Lactococcus garvieae.
Microbial Drug Resistance 46 p
V
80
-Shanker A K, Djanaguiraman M, Sudhagar R, Chandrashekar C N et Pathmanabhan
G(.2004). Differential antioxidative response of ascorbate glutathione pathway enzymes
andmetabolites to chromium speciation stress in green gram (Vigna radiate (L) R Wilcz.ekcv CO
4)roots. Plant Science.
-Srinath T, KhareS etRamteke P W. (2001). Isolation of hexavalent chromium-reducing Crtolerant
facultative anaerobes from tannery effluent.The Journal of General and AppliedMicrobiology.p.p 6266
-Srinath (2001) Chromium (VI) biosorption and bioaccumulation by chromate resistant bacteria:
Chemosphere 24P
-Suthanthararajan R (2003). Membrane application for recovery and reuse of water from treated
tannery wastewater. Desalination, 65 P
-Sethuraman et Balasubramanian, (2010) Removal of Cr (VI) from aqueous solution using Bacillus
subtilis, Pseudomonas aeruginosa and Enterobacter cloacae. International Journal of Engineering
Science and Technology, p.p 66-67 .
-Soha et Sahar (2010) Identification of bacterial strains from tannery effluent and reduction of
hexavalent chromium. Journal of Environmental Biology. 66 P.
-Shakoori (2000) Hexavalent chromium reduction by a dichromate-resistant gram-positive bacterium
isolated from effluents of tanneries. Applied Microbiology and Biotechnology 67 P.
-Singh (2013). Detoxification of hexavalent cbromium by an indigenous facuftatlve anaerobfo
Baciiius cereus strain lso1ated from tannery effluent Afrfoan Journal or Biotechnology. 67 P.
T
-Thatoi H, Das S, Mishra J, Rath B Pet Das N.( 2014). Bacterial chromate reductase, a
potentialenzyme for bioremediation of hexavalent chromium: A review. Journal of
EnvironmentalManagement. 24 P
-Thacker U, Parikh R, Shouche Y et Madamwar D. (2006). Hexavalent chromium reduction
byProvidencia sp. Process Biochemistry. 24 P
-Thacker U, Parikh R, Shouche Y, Madamwar D. 2007. Reduction of chromate by cell-freeextract
of Bruce/la sp isolated from Cr (VI) contaminated sites. Bioresource Technology. 24P
-Touahir (2023)Assessment and characterization of heavy metals resistance bacteria isolated in
Southwestern Mediterranean coastal waters (Bou-Ismail Bay): Impacts of anthropogenic
activitiesLaboratory Conservation and Valorization of Marine Resources (CVRM), National Higher
School of Marine Sciences and Coastal Management (ENSSMAL), Algiers, Algeria p.p.p 39-44-45
-Touahir, (2017) évaluation et caractérisation de la résistance aux antibiotiques chez des bactéries a
gram négatif isolées a partir de milieux et d’animaux aquatiques
p.p 39-68
-Ture (2021)Effects of cage farming on antimicrobial and heavy metal resistance of Escherichia coli,
Enterococcus faecium, and Iranian Journal of Fisheries Sciences 22(3) 2023 614 Lactococcus garvieae.
Microbial Drug Resistance 46 p
V
