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Hauser, L. J.; Land, M. L.; Brown, S. D.; Larimer, F; Keller, K. L.; Rapp-Giles, B. J.; Price, M. N.; Lin, M; Bruce, D. C.; Detter, J. C.; Tapia, R; Han, C. S.; Goodwin, L. A.; Cheng, J. F.; Pitluck, S; Copeland, A; Lucas, S; Nolan, M; Lapidus, A. L.; Palumbo, A. V.; Wall, J. D. (2011).
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strain G20 is an anaerobe with an optimal temperature range of 25°C-40°C. It is a gram negative microbe which is rod shaped, does not produce endospores, and is arranged in single cells. This strain is not known to cause any disease.
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Bélaich, Jean-Pierre, Mireille
Bruschi, and Jean-Louis Garcia, eds. Microbiology and biochemistry of strict Anaerobes Involved in interspecies hydrogen transfer. No. 54. Springer, 1990.
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has the ability to reduce radionuclides and heavy metals such as uranium and chromium to soluble and less toxic forms. The
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Feio MJ, Zinkevich V, Beech IB, et al. (September 2004).
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Oleidesulfovibrio alaskensis DSM 16109 in the GOLD database
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List of
Prokaryotic names with Standing in Nomenclature
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Oleidesulfovibrio alaskensis G20 in the GOLD database
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387:"Oleidesulfovibrio alaskensis"
209:have been sequenced: G20 (DOE
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405:Oleidesulfovibrio alaskensis
168:Oleidesulfovibrio alaskensis
145:Oleidesulfovibrio alaskensis
25:Oleidesulfovibrio alaskensis
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620:Bacteria described in 2004
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179:sulfate-reducing bacteria
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294:Journal of Bacteriology
64:Thermodesulfobacteriota
569:-related article is a
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392:Encyclopedia of Life
16:Species of bacterium
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205:Several strains of
100:Desulfovibrionaceae
127:O. alaskensis
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171:(formerly
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201:Genomics
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159:2020
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