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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JCM16142
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71296
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High cellulolytic potential of the Ktedonobacteria lineage revealed by genome-wide analysis of CAZymes.
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J Biosci Bioeng |
2021-6-1 |
Pubmed
Full text
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一般微生物
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JCM31827
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66378
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Phenotypic characterization and comparative genome analysis of two strains of thermophilic, anaerobic, cellulolytic-xylanolytic bacterium Herbivorax saccincola.
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Enzyme Microb Technol |
2020-5-1 |
Pubmed
Full text
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一般微生物
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JCM32765
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66315
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Flavobacterium nackdongense sp. nov., a cellulose-degrading bacterium isolated from sediment.
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Arch Microbiol |
2020-4-1 |
Pubmed
Full text
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一般微生物
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JCM12802
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60634
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Characterization of two thermophilic cellulases from Talaromyces leycettanus JCM12802 and their synergistic action on cellulose hydrolysis.
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PLoS One |
2019-1-1 |
Pubmed
Full text
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一般微生物
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JCM15120
,
JCM7457
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60405
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Pedobacter chinensis sp. nov., a cellulose-decomposing bacterium from Arctic tundra soil.
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Int J Syst Evol Microbiol |
2019-7-1 |
Pubmed
Full text
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一般微生物
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JCM 16332
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57510
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Xylose triggers reversible phosphorylation of XlnR, the fungal transcriptional activator of xylanolytic and cellulolytic genes in Aspergillus oryzae.
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Biosci Biotechnol Biochem |
2011-1-1 |
Pubmed
Full text
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一般微生物
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JCM 31827
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55524
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Characterization and high-quality draft genome sequence of Herbivorax saccincola A7, an anaerobic, alkaliphilic, thermophilic, cellulolytic, and xylanolytic bacterium.
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Syst Appl Microbiol |
2018-7-1 |
Pubmed
Full text
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一般微生物
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JCM 9730
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50867
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Enhancement of crystallinity of cellulose produced by Escherichia coli through heterologous expression of bcsD gene from Gluconacetobacter xylinus.
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Biotechnol Lett |
2017-9-1 |
Pubmed
Full text
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一般微生物
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JCM 19534
,
JCM 20932
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40826
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Oricola cellulosilytica gen. nov., sp. nov., a cellulose-degrading bacterium of the family Phyllobacteriaceae isolated from surface seashore water, and emended descriptions of Mesorhizobium loti and Phyllobacterium myrsinacearum.
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Antonie Van Leeuwenhoek |
2015-3-1 |
Pubmed
Full text
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酵母
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35137
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Enhanced bio-ethanol production from cellulosic materials by semi-simultaneous saccharification and fermentation using high temperature resistant Saccharomyces cerevisiae TJ14.
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J Biosci Bioeng |
2013-1-1 |
Pubmed
Full text
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一般微生物
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JCM 19132
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29434
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Kallotenue papyrolyticum gen. nov., sp. nov., a cellulolytic and filamentous thermophile that represents a novel lineage (Kallotenuales ord. nov., Kallotenuaceae fam. nov.) within the class Chloroflexia.
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Int J Syst Evol Microbiol |
2013-12-1 |
Pubmed
Full text
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一般微生物
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JCM 10044
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27504
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Increased growth of a hydrogenotrophic methanogen in co-culture with a cellulolytic bacterium under cathodic electrochemical regulation.
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Biosci Biotechnol Biochem |
2013-1-1 |
Pubmed
Full text
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酵母
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22734
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Improvement of tolerance of Saccharomyces cerevisiae to hot-compressed water-treated cellulose by expression of ADH1.
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Appl Microbiol Biotechnol |
2012-4-1 |
Pubmed
Full text
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一般微生物
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JCM 17042
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19018
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Ruminococcus champanellensis sp. nov., a cellulose-degrading bacterium from human gut microbiota.
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Int J Syst Evol Microbiol |
2012-1-1 |
Pubmed
Full text
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一般微生物
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JCM 15089
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15873
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Rhizomicrobium electricum sp. nov., a facultatively anaerobic, fermentative, prosthecate bacterium isolated from a cellulose-fed microbial fuel cell.
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Int J Syst Evol Microbiol |
2011-8-1 |
Pubmed
Full text
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一般微生物
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JCM 15765
,
JCM 15764
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7116
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Desulfitobacterium aromaticivorans sp. nov. and Geobacter toluenoxydans sp. nov., iron-reducing bacteria capable of anaerobic degradation of monoaromatic hydrocarbons.
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Int J Syst Evol Microbiol |
2010-3-1 |
Pubmed
Full text
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一般微生物
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JCM 16418
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5928
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Paenibacillus pini sp. nov., a cellulolytic bacterium isolated from the rhizosphere of pine tree.
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J Microbiol |
2009-12-1 |
Pubmed
Full text
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一般微生物
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JCM21531
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5472
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Clostridium clariflavum sp. nov. and Clostridium caenicola sp. nov., moderately thermophilic, cellulose-/cellobiose-digesting bacteria isolated from methanogenic sludge.
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Int J Syst Evol Microbiol |
2009-7-1 |
Pubmed
Full text
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病原微生物
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JCM 11936?
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2595
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Balneomonas flocculans gen. nov., sp. nov., a new cellulose-producing member of the alpha-2 subclass of Proteobacteria.
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Syst Appl Microbiol |
2004-3-1 |
Pubmed
Full text
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