生物種
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リソース名
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RRC ID
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タイトル
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ジャーナル
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公開日
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外部リンク
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一般微生物
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JCM33645
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71128
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Parasulfuritortus cantonensis gen. nov., sp. nov., a microaerophilic sulfur-oxidizing bacterium isolated from freshwater sediment.
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Int J Syst Evol Microbiol |
2021-2-1 |
Pubmed
Full text
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一般微生物
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JCM32929
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66614
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Isachenkonia alkalipeptolytica gen. nov. sp. nov., a new anaerobic, alkaliphilic proteolytic bacterium capable of reducing Fe(III) and sulfur.
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Int J Syst Evol Microbiol |
2020-8-1 |
Pubmed
Full text
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一般微生物
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JCM 30680
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48290
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Desulfurella amilsii sp. nov., a novel acidotolerant sulfur-respiring bacterium isolated from acidic river sediments.
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Int J Syst Evol Microbiol |
2016-3-1 |
Pubmed
Full text
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一般微生物
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JCM 19912
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41156
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Fusibacter fontis sp. nov., a sulfur-reducing, anaerobic bacterium isolated from a mesothermic Tunisian spring.
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Int J Syst Evol Microbiol |
2015-10-1 |
Pubmed
Full text
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一般微生物
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JCM 19471
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40750
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Desulfosporosinus acididurans sp. nov.: an acidophilic sulfate-reducing bacterium isolated from acidic sediments.
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Extremophiles |
2015-1-1 |
Pubmed
Full text
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一般微生物
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JCM 19179
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34337
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Reclassification of Desulfobacterium anilini as Desulfatiglans anilini comb. nov. within Desulfatiglans gen. nov., and description of a 4-chlorophenol-degrading sulfate-reducing bacterium, Desulfatiglans parachlorophenolica sp. nov.
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Int J Syst Evol Microbiol |
2014-9-1 |
Pubmed
Full text
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一般微生物
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JCM 19826
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34310
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Desulfocarbo indianensis gen. nov., sp. nov., a benzoate-oxidizing, sulfate-reducing bacterium isolated from water extracted from a coal bed.
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Int J Syst Evol Microbiol |
2014-8-1 |
Pubmed
Full text
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一般微生物
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JCM 18546
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29375
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Isolation and characterization of Desulfocurvus thunnarius sp. nov., a sulfate-reducing bacterium isolated from an anaerobic sequencing batch reactor treating cooking wastewater.
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Int J Syst Evol Microbiol |
2013-11-1 |
Pubmed
Full text
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一般微生物
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JCM 16085
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27695
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Desulfoconvexum algidum gen. nov., sp. nov., a psychrophilic sulfate-reducing bacterium isolated from a permanently cold marine sediment.
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Int J Syst Evol Microbiol |
2013-3-1 |
Pubmed
Full text
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一般微生物
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JCM 17380
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27673
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Desulfosporosinus burensis sp. nov., a spore-forming, mesophilic, sulfate-reducing bacterium isolated from a deep clay environment.
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Int J Syst Evol Microbiol |
2013-2-1 |
Pubmed
Full text
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一般微生物
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JCM15390
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5440
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Nautilia abyssi sp. nov., a thermophilic, chemolithoautotrophic, sulfur-reducing bacterium isolated from an East Pacific Rise hydrothermal vent.
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Int J Syst Evol Microbiol |
2009-6-1 |
Pubmed
Full text
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一般微生物
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JCM15076
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5426
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Desulfovibrio tunisiensis sp. nov., a novel weakly halotolerant, sulfate-reducing bacterium isolated from exhaust water of a Tunisian oil refinery.
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Int J Syst Evol Microbiol |
2009-5-1 |
Pubmed
Full text
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一般微生物
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JCM13301
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5293
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Thermosulfidibacter takaii gen. nov., sp. nov., a thermophilic, hydrogen-oxidizing, sulfur-reducing chemolithoautotroph isolated from a deep-sea hydrothermal field in the Southern Okinawa Trough.
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Int J Syst Evol Microbiol |
2008-3-1 |
Pubmed
Full text
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一般微生物
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JCM13213
,
JCM13214
,
JCM13215
,
JCM13216
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5249
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Thermodesulfovibrio aggregans sp. nov. and Thermodesulfovibrio thiophilus sp. nov., anaerobic, thermophilic, sulfate-reducing bacteria isolated from thermophilic methanogenic sludge, and emended description of the genus Thermodesulfovibrio.
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Int J Syst Evol Microbiol |
2008-11-1 |
Pubmed
Full text
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一般微生物
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JCM13992
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5248
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Desulfotomaculum hydrothermale sp. nov., a thermophilic sulfate-reducing bacterium isolated from a terrestrial Tunisian hot spring.
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Int J Syst Evol Microbiol |
2008-11-1 |
Pubmed
Full text
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一般微生物
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JCM14042
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5143
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Desulfopila aestuarii gen. nov., sp. nov., a Gram-negative, rod-like, sulfate-reducing bacterium isolated from an estuarine sediment in Japan.
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Int J Syst Evol Microbiol |
2007-3-1 |
Pubmed
Full text
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一般微生物
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JCM13303
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5142
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Marinitoga okinawensis sp. nov., a novel thermophilic and anaerobic heterotroph isolated from a deep-sea hydrothermal field, Southern Okinawa Trough.
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Int J Syst Evol Microbiol |
2007-3-1 |
Pubmed
Full text
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一般微生物
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JCM14469
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5124
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Desulfatiferula olefinivorans gen. nov., sp. nov., a long-chain n-alkene-degrading, sulfate-reducing bacterium.
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Int J Syst Evol Microbiol |
2007-11-1 |
Pubmed
Full text
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