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1.
A soxA gene, encoding a diheme cytochrome c, and a sox locus, essential for sulfur oxidation in a new sulfur lithodtrophic bacterium // J. Bacteriol., 2000. Vol. 182, N 15.-С.4278-4287

2.
Chung Aeration effects of Beggiatoa in a laboratory fixed-film growth system // J. Environ. Sci. and Health. A, 1997. Vol. 32, N 3.-С.763-784

3.
Chung Aeration effects of Beggiatoa in a laboratory fixed-film growth system // J. Environ. Sci. and Health. A, 1997. Vol. 32, N 3.-С.763-784

4.
Kamp Anaerobic sulfide oxidation with nitrate by a freshwater Beggiatoa enrichment culture // Appl. and Environ. Microbiol., 2006. Vol. 72, N 7.-С.4755-4760

5.
Kamp Anaerobic sulfide oxidation with nitrate by a freshwater Beggiatoa enrichment culture // Appl. and Environ. Microbiol., 2006. Vol. 72, N 7.-С.4755-4760

6.
Jannasch Holger W. Biogeochemistry of deep-sea hydrothermal vents: an update // 11 Int. Symp. Environ. Biogeochem., Salamanca, Sept. 27 - Oct. 1, 1993. -Salamanca, 1993.-С.0

7.
Figueras J.B. Biological versus chemical oxidation of sulphide in a sulphur spring // 11 Int. Symp. Environ. Biogeochem., Salamanca, Sept. 27 - Oct. 1, 1993. -Salamanca, 1993.-С.3

8.
Laurie L.Richardson Black band disease of corals: А horisontally migrating cyanobacterial mat // 8th Int. Symp. Phototrophic Prokaryotes, Urbino, Sept. 10-15, 1994. -S. l., 1994.-С.13

9.
Lindblad-Passe Clogging problems in groundwater heat pump systems in Sweden // Water Sci. and Technol., 1988. Vol. 20, N 3.-С.133-140

10.
Community structure of filamentous, sheath-building sulfur bacteria, Thioploca spp., of the coast of Chile // Appl. and Environ. Microbiol., 1996. Vol. 62, N 6.-С.1855-1862

11.
Erbacher Comparison of benthic foraminifera inside and outside a sulphur-oxidizing bacterial mat from the present oxygen-minimum zone off Pakistan (NE Arabian Sea) // Deep-Sea Res. Pt 1, 2006. Vol. 53, N 5.-С.751-775

12.
Erbacher Comparison of benthic foraminifera inside and outside a sulphur-oxidizing bacterial mat from the present oxygen-minimum zone off Pakistan (NE Arabian Sea) // Deep-Sea Res. Pt 1, 2006. Vol. 53, N 5.-С.751-775

13.
Erbacher Comparison of benthic foraminifera inside and outside a sulphur-oxidizing bacterial mat from the present oxygen-minimum zone off Pakistan (NE Arabian Sea) // Deep-Sea Res. Pt 1, 2006. Vol. 53, N 5.-С.751-775

14.
Ahmad Cultivated Beggiatoa spp. define the phylogenetic root of morphologically diverse, noncultured, vacuolate sulfur bacteria // Can. J. Microbiol., 2006. Vol. 52, N 6.-С.591-602

15.
Denitrification by sulphur oxidizing Beggiatoa spp. mats on freshwater sediments // Nature., 1990. Vol. 344, N 6268.-С.762-763

16.
Figueras I.B. Description of microbial communities of Font Pudosa (Banyoles, Spain), a sulfur water spring // 6th Int. Symp. Microb. Ecol. (ISME-6), Barcelona, 6-11 Sept., 1992. -Barcelona, 1992.-С.240

17.
Jorgensen B.B. Ecology of the sulphur cycle: oxidative pathways in sediments // Nitrogen and Sulphur Cycles.. -Cambridge, 1988.-С.31-63

18.
Larkin John M. Filamentous silfide-oxidizing bacteria at hydrocarbon seeps of the gulf of Mexico // Microsc. Res. and Techn., 1996. Vol. 33, N 1.-С.23-31

19.
Geomicrobiology of sediments and bottom waters of the Hakon Mosby Mud Volcano // Ber. Polar- und Meeresforsch., 2004, N 488.-С.190-199

20.
Geomicrobiology of sediments and bottom waters of the Hakon Mosby Mud Volcano // Ber. Polar- und Meeresforsch., 2004, N 488.-С.190-199

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