04.07.2013 Views

(Thèse partie 1)

(Thèse partie 1)

(Thèse partie 1)

SHOW MORE
SHOW LESS

You also want an ePaper? Increase the reach of your titles

YUMPU automatically turns print PDFs into web optimized ePapers that Google loves.

192<br />

Références bibliographiques<br />

Wainø, M., Tindall, B. J. & Ingvorsen, K. (2000). Halorhabdus utahensis gen. nov., an<br />

aerobic extremely halophilic member of the Arcahea from Great Salt Lake, Utah. Int J Syst<br />

Evol Microbiol 50, 183-190.<br />

Walsby, A. E. (1980). A square bacterium. Nature 283, 69-71.<br />

Wanner, C. & Soppa, J. ( 1999). Genetic identification of three ABC transporters as<br />

essential elements for nitrate respiration in Haloferax volcanii. Genetics 152, 1417-1428.<br />

Ward, D. M. Brock, T. D. (1978). Hydrocarbon biodegradation in hypersaline environments.<br />

Appl Environ Microbiol 35, 353-359.<br />

Welsh, D., Lindsay, Y., Caumette, P., Herbert, R. & Hannan, J. (1996). Identification of<br />

trehalose and glycine betaine as compatible solutes in the moderately halophilic sulphate<br />

reducing bacterium, Desulfovibrio halophilus. FEMS Microbiol Lett 140, 203-207.<br />

Welsh, D. T. (2000). Ecological significance of compatible solute accumulation by microorganisms<br />

from single cells to global climate. FEMS Microbiol Rev 24, 263-290.<br />

Werber, M. M. (1980). Halophilisme. Biochimie 62, 411-422.<br />

Wieland, F. Paul, G. & Sumper, M. (1985). Halobacterial flagellins are sulphated<br />

glycoproteins. J Biol Chem 260, 15180-15185.<br />

Wieland, F. (1988). The cell surfaces of halobacteria. In Halophilic Bacteria, Ed. F.<br />

Rodriguez-Valera. pp. 55-65. CRC Press, Boca Raton, Florida.<br />

Winkler, S. & Woese, C. R. (1991). A definition of the domains Archaea, Bacteria, and<br />

Eucarya in terms of small subunit ribosomal RNA characteristics. Syst Appl Microbiol 14,<br />

305-310.<br />

Whitman, W. B., Boone, D. R., Koga, Y. & Keswani, J. (2001). Taxonomy of<br />

methanogenic archaea. In Bergey’s Manual of Systematic Bacteriology. Eds. D. R. Boone, R.<br />

W. Castenholz & G. M; Garitty. Volume 1. pp. 211-213. New York: Springer.<br />

Woese, C. R. & Fox, G. E. (1977). The concept of Cellular Evolution. J Mol Evol 10, 1-6.<br />

Woese, C. R. (1987). Bacterial evolution. Microbial Rev 51, 221-271.<br />

Woese, C. R., Kandler, O. & Wheelis, M. L. (1990). Towards a natural system of<br />

organisms: Proposal for the domains Archaea, Bacteria and Eucarya. Proc Natl Acad Sci USA<br />

87, 4576-4579.<br />

Wright, A.-D. (2006). Phylogenetic relationships within the order Halobacteriales inferred<br />

from 16S rRNA gene sequences. Int J Syst Evol Microbiol 56, 1223-1227.<br />

Wu, L. C., Chow, K. C. & Mark, K. K. (1983). The role of pigments in Halobacterium<br />

cutirubrum against UV radiation. Microbios Letters 24, 85-90.<br />

Xin, H., Itoh, T., Zhou, P., Suzuki, K.-I., Kamekura, M. & Nakase, T. (2000). Natrinema<br />

versiforme sp. nov., an extremely halophilic archaeon from Aibi salt lake, Xinjiang, China. Int<br />

J Syst Evol Microbiol 50, 1297-1303.<br />

Xu, Y., Zhou, P. & Tian, X. (1999). Characterization of two novel haloalkaliphilic archaea<br />

Natronobacterium bangense gen. nov., sp. nov. and Natronobacterium tibetense gen. nov., sp.<br />

nov. Int J Syst Bacteriol 49, 261-266.<br />

Xu, Y., Wang, Z., Xue, Y., Zhou, P., Ma, Y., Ventosa, A. & Grant, W. D. (2001).<br />

Natrialba hulunbeirensis sp. nov. and Natrialba chahannaoensis sp. nov., novel<br />

haloalkaliphilic archeae from soda lakes in Inner Mongolia Autonomous Region, China. Int J<br />

Syst Evol Microbiol 51, 1693-1698.<br />

Xu, Y., Ren, P.-G., Liu, S.-J., Wu, M. & Zhou, P.-J. (2004). Natrinema altunense sp. nov.,<br />

an extremely halophilic archaeon isolated from a salt lake in Aitun Mountain of Xinjiang,<br />

China. Int J Syst Evol Microbiol (sous presse).

Hooray! Your file is uploaded and ready to be published.

Saved successfully!

Ooh no, something went wrong!