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36 results on '"Syntrophus aciditrophicus"'

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1. The Acyl-Proteome of Syntrophus aciditrophicus Reveals Metabolic Relationships in Benzoate Degradation.

2. Crystal structure of a putative 3‐hydroxypimelyl‐CoA dehydrogenase, Hcd1, from Syntrophus aciditrophicus strain SB at 1.78 Å resolution.

3. Microbial analysis and enrichment of anaerobic phenol and p-cresol degrading consortia with addition of AQDS

4. Efficacy and Metagenomic Analysis of the Stabilized Anaerobic Lignocellulolytic Microbial Consortium from Bubalus bubalis Rumen with Rice Straw Enrichment for Methane Production

5. Fermentative Cyclohexane Carboxylate Formation in Syntrophus aciditrophicus.

6. Syntrophus conductive pili demonstrate that common hydrogen-donating syntrophs can have a direct electron transfer option

7. The Beta Subunit of Non-bifurcating NADH-Dependent [FeFe]-Hydrogenases Differs From Those of Multimeric Electron-Bifurcating [FeFe]-Hydrogenases

8. Anaerobic co-digestion of commercial laundry wastewater and domestic sewage in a pilot-scale EGSB reactor: The influence of surfactant concentration on microbial diversity

9. Syntrophus aciditrophicus uses the same enzymes in a reversible manner to degrade and synthesize aromatic and alicyclic acids

10. The genome ofSyntrophorhabdus aromaticivoransstrain UI provides new insights for syntrophic aromatic compound metabolism and electron flow

11. Metagenomic analysis of an anaerobic alkane-degrading microbial culture: potential hydrocarbon-activating pathways and inferred roles of community members

12. Cyclohexanecarboxyl-Coenzyme A (CoA) and Cyclohex-1-ene-1-Carboxyl-CoA Dehydrogenases, Two Enzymes Involved in the Fermentation of Benzoate and Crotonate in Syntrophus aciditrophicus

13. Identification and Characterization of Re -Citrate Synthase in Syntrophus aciditrophicus

14. Pyrophosphate-Dependent ATP Formation from Acetyl Coenzyme A in Syntrophus aciditrophicus, a New Twist on ATP Formation

15. Syntrophy in anaerobic global carbon cycles

16. 6-Oxocyclohex-1-ene-1-carbonyl-coenzyme A hydrolases from obligately anaerobic bacteria: characterization and identification of its gene as a functional marker for aromatic compounds degrading anaerobes

17. The genome of Syntrophus aciditrophicus : Life at the thermodynamic limit of microbial growth

18. Cyclohexa-1,5-Diene-1-Carbonyl-Coenzyme A (CoA) Hydratases of Geobacter metallireducens and Syntrophus aciditrophicus : Evidence for a Common Benzoyl-CoA Degradation Pathway in Facultative and Strict Anaerobes

19. Cyclohexane Carboxylate and Benzoate Formation from Crotonate in Syntrophus aciditrophicus

20. Two Pathways for Glutamate Biosynthesis in the Syntrophic Bacterium Syntrophus aciditrophicus

21. Anaerobic hydrocarbon and fatty acid metabolism by syntrophic bacteria and their impact on carbon steel corrosion

22. Syntrophus aciditrophicus sp. nov., a new anaerobic bacterium that degrades fatty acids and benzoate in syntrophic association with hydrogen-using microorganisms

23. The importance of hydrogen and formate transfer for syntrophic fatty, aromatic and alicyclic metabolism

24. Exploring the biosynthetic pathways of glutamate and benzoate in Syntrophus aciditrophicus

25. The genome of Syntrophomonas wolfei: new insights into syntrophic metabolism and biohydrogen production

26. Metabolism of Hydroxylated and Fluorinated Benzoates by Syntrophus aciditrophicus and Detection of a Fluorodiene Metabolite▿

27. Use of benzoate as an electron acceptor by Syntrophus aciditrophicus grown in pure culture with crotonate

28. Evolution of the syntrophic interaction between Desulfovibrio vulgaris and Methanosarcina barkeri: Involvement of an ancient horizontal gene transfer

29. Benzoate fermentation by the anaerobic bacterium Syntrophus aciditrophicus in the absence of hydrogen-using microorganisms

30. Metabolism of benzoate, cyclohex-1-ene carboxylate, and cyclohexane carboxylate by 'Syntrophus aciditrophicus' strain SB in syntrophic association with H(2)-using microorganisms

31. Application of a tetrazolium dye as an indicator of viability in anaerobic bacteria

32. Anaerobes Appear Key in Converting Poorly Accessible Oil to Gas

33. Anaerobic bacterium that degrades fatty acids in syntrophic association with methanogens

34. New approach to the cultivation of methanogenic bacteria: 2-mercaptoethanesulfonic acid (HS-CoM)-dependent growth of Methanobacterium ruminantium in a pressureized atmosphere

35. Energy conservation in chemotrophic anaerobic bacteria

36. [Untitled]

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