REFERENCES BIBLIOGRAPHIQUES
51 
 
France : Université de Rennes1. Disponible sur le web
< https://tel.archives-ouvertes.fr/tel-01397499>
CASTEX M., LEMAIRE P., WABETE N. [et al.] (2009). Effect of dietary probiotic Pediococcus acidilactici
on antioxidant defences and oxidative stress status of shrimp Litopenaeus stylirostris. Aquaculture [En ligne]
[consulté le 05.05.2020] Volume 294, Issue 3-4, Pages 306–313. Disponible sur le web
< https://www.sciencedirect.com/science/article/abs/pii/S0044848609005328>
CASTILLO C.B. et BRUCKNER D.A. (1984) Comparative evaluation of the Eiken and API 20E systems and
conventional methods for identification of members of the family Enterobacteriaceae, American Society for
Microbiology Journals [en ligne] [consulté le 22.05.2020] Volume 32, Issue 3, Pages 20-23 Disponible sur le
web :
CHANDRAMOHAN S.D. et BHARATHI L.A. (1986). Differential sensitivity of pigmented and nonpigmented marine bacteria to metals and antibiotics, Water Research [en ligne] [Consulté le 15.09.2020],
Volume 26, Issue 4, Pages 20-23. Disponible sur le web :
https://www.sciencedirect.com/science/article/abs/pii/0043135492900423
COLLADO M. C. et SANZ Y. (2009). Probiotics: Benefits in Human Health and Bacterial Disease
Management. Germany: WILEY-VCH Verlag GMBH & Co. KGaA. Chapitre 117. New Strategies Combating
Bacterial Infection. Pages 275–295.
COSTERTON J.W., CHENG K.J, GEESEY G.G. [et al.] (1987). Bacterial Biofilm in Nature and Disease.
Annual Review of Microbiology [en ligne] [Consulté le 11.10.2020],Volume 41, Issue 10. Disponible sur le web :

COSTERTON J.W., STEWART P.S. et GREENBER E.P. (1999). Bacterial biofilms: a common cause of
persistent infections. Science [en ligne], [consulté le 18.09.2020], Volume 21, Issue 5, Pages 20-23. Disponible
sur le web :
DHARMARAN K. et SRIDEVI (2010). Bioactive potential of Streptomyces against fish and shellfish
pathogens. Irian Journal of Microbiology [En ligne] [consulté le 07.05.2020] Volume 2, Issue 3, Page 157-164.
Disponible sur le web
shellfish_pathogens>
DUGAS B., MERCENIER A., LENOIR-WIJNKOOP I., ARNAUD C., DUGAS N. et POSTAIRE E.
(1999). Immunity and probiotics. Immunology today [En ligne] [consulté le 30.03.2020], Volume 20, Issue 9,
Pages 387-390. Disponible sur le web

DUNNE C., O’MAHONY L., MURPHY I [et al.] (2001). In vitro selection criteria for probiotic bacteria of
human origin: correlation with in vivo findings. The American Journal of Clinical Nutrition [En ligne] [consulté
le 08.04.2020] Volume 77, Issue 2, Pages 386-392. Disponible sur le web
< https://academic.oup.com/ajcn/article/73/2/386s/4737567>
EISSA A., BADR A.M. et MAHANA A. (2014) Assessment of Heavy Metal Levels in Water and Their
Toxicity in Some Tissues of Nile Tilapia (Oreochromis niloticus) in River Nile Basin at Greater Cairo, Egypt,
Global Veterinaria [en ligne].[Consulté le 12.10.2020], Volume 13, Issue 3, Pages 5-10. Disponible sur le web :

EL-JENI R., EL BOUR M., CALO6MATA P. [et al.] (2015) In vitro probiotic profiling of novel
Enterococcus faecium and Leuconostoc mesenteroides from Tunisian freshwater fishes. Canadian Science
Publishing [en ligne],[Consulté le :22/06/2020],Volume 62, Issue 1, Pages 5-4. Disponible sur le web :

FARHANA HOQUE T,JAWAHAR ABRAHAM,AND P. JAISANKAR, Isolation and partial
characterisation of secondary metabolites from fish-borne bacterium, Pseudomonas aeruginosa, Indian J.Fish [en
ligne],[Consulté le 16.11.2020], Volume 66, Issue 1, Pages 81-96. Disponible su le web :
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