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10. Stress response of a marine ammonia-oxidizing archaeon informs physiological status of environmental populations

26. Stress response of a marine ammonia-oxidizing archaeon informs physiological status of environmental populations

29. Opitutae

30. Lentisphaerae

33. A systems level predictive model for global gene regulation of methanogenesis in a hydrogenotrophic methanogen

38. Phylum XXII. Lentisphaerae Cho, Vergin, Morris and Giovannoni 2004a, 1005VP (Effective publication: Cho, Vergin, Morris and Giovannoni 2004b, 617.).

39. VhuD Facilitates Electron Flow from H2 or Formate to Heterodisulfide Reductase in Methanococcus maripaludis.

40. Phenotypic evidence that the function of the [ Fe]-hydrogenase Hmd in Methanococcus maripaludis requires seven hcg ( hmd co-occurring genes) but not hmdII.

41. Effects of H2 and Formate on Growth Yield and Regulation of Methanogenesis in Methanococcus maripaludis.

42. Formate-Dependent Heterodisulfide Reduction in a Methanomicrobiales Archaeon.

43. Functionally redundant formate dehydrogenases enable formate-dependent growth in Methanococcus maripaludis.

44. H2-Independent Growth of the Hydrogenotrophic Methanogen Methanococcus maripaludis

45. A systems level predictive model for global gene regulation of methanogenesis in a hydrogenotrophic methanogen.

46. High-throughput genetics enables identification of nutrient utilization and accessory energy metabolism genes in a model methanogen.

47. VhuD facilitates electron flow from H2 or formate to heterodisulfide reductase in Methanococcus maripaludis.

48. Effects of H2 and formate on growth yield and regulation of methanogenesis in Methanococcus maripaludis.

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