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1. Diversity, Methane Oxidation Activity, and Metabolic Potential of Microbial Communities in Terrestrial Mud Volcanos of the Taman Peninsula.

2. Community Structure and Microbial Associations in Sediment-Free Methanotrophic Enrichment Cultures from a Marine Methane Seep

3. Diversity, Methane Oxidation Activity, and Metabolic Potential of Microbial Communities in Terrestrial Mud Volcanos of the Taman Peninsula

4. Acetate and Acetyl-CoA Metabolism of ANME-2 Anaerobic Archaeal Methanotrophs.

5. Microbial methane cycling in sediments of Arctic thermokarst lagoons.

7. Composition and Metabolic Potential of Fe(III)-Reducing Enrichment Cultures of Methanotrophic ANME-2a Archaea and Associated Bacteria.

8. Anaerobic Methane Oxidation in High-Arctic Alaskan Peatlands as a Significant Control on Net CH4 Fluxes

9. Detection of methanotrophic microorganisms in sludge and sediment samples from sewage treatment systems

10. Meta-omics approaches reveal unique small RNAs exhibited by the uncultured microorganisms dwelling deep-sea hydrothermal sediment in Guaymas Basin.

12. Community Structure and Microbial Associations in Sediment-Free Methanotrophic Enrichment Cultures from a Marine Methane Seep.

13. Composition and Metabolic Potential of Fe(III)-Reducing Enrichment Cultures of Methanotrophic ANME-2a Archaea and Associated Bacteria

14. Overview of Diverse Methyl/Alkyl-Coenzyme M Reductases and Considerations for Their Potential Heterologous Expression.

15. Diversity of Anaerobic Methane Oxidizers in the Cold Seep Sediments of the Okinawa Trough.

16. Anaerobic oxidation of methane coupled with sulphate reduction: high concentration of methanotrophic archaea might be responsible for low stable isotope fractionation factors in methane.

17. Diversity of Anaerobic Methane Oxidizers in the Cold Seep Sediments of the Okinawa Trough

18. Overview of Diverse Methyl/Alkyl-Coenzyme M Reductases and Considerations for Their Potential Heterologous Expression

19. Enhancing methane oxidation in a bioelectrochemical membrane reactor using a soluble electron mediator

20. Characteristics of Microbial Community Structure at the Seafloor Surface of the Nankai Trough

21. Bacterial and Archaeal Taxonomic Diversity of Mud Volcanoes (Beciu, Romania) via Metagenomic Approach.

22. Efficient perchlorate reduction in microaerobic environment facilitated by partner methane oxidizers.

23. The Impact of Methane on Microbial Communities at Marine Arctic Gas Hydrate Bearing Sediment

24. Lateral Gene Transfer Drives Metabolic Flexibility in the Anaerobic Methane-Oxidizing Archaeal Family Methanoperedenaceae

25. The Impact of Methane on Microbial Communities at Marine Arctic Gas Hydrate Bearing Sediment.

26. Evolutionary diversification of methanotrophic ANME-1 archaea and their expansive virome

27. Osmoregulation in freshwater anaerobic methane-oxidizing archaea under salt stress.

28. Comparative Genomics and Proteomic Analysis of Assimilatory Sulfate Reduction Pathways in Anaerobic Methanotrophic Archaea

29. Recombinant Expression and Assembly of Methyl Coenzyme-M reductase

30. Microbial Community Composition and Functional Capacity in a Terrestrial Ferruginous, Sulfate-Depleted Mud Volcano

31. Subgroup Characteristics of Marine Methane-Oxidizing ANME-2 Archaea and Their Syntrophic Partners as Revealed by Integrated Multimodal Analytical Microscopy.

32. The vertical distribution of prokaryotes in the surface sediment of Jiaolong cold seep at the northern South China Sea.

34. Methane-Fueled Syntrophy through Extracellular Electron Transfer: Uncovering the Genomic Traits Conserved within Diverse Bacterial Partners of Anaerobic Methanotrophic Archaea

35. Anaerobic Methane-Oxidizing Microbial Community in a Coastal Marine Sediment: Anaerobic Methanotrophy Dominated by ANME-3.

36. Methane-metabolizing microbial communities in sediments of the Haima cold seep area, northwest slope of the South China Sea.

37. Evaluation and optimization of PCR primers for selective and quantitative detection of marine ANME subclusters involved in sulfate-dependent anaerobic methane oxidation.

38. Microbial and Isotopic Evidence for Methane Cycling in Hydrocarbon-Containing Groundwater from the Pennsylvania Region.

39. Geochemical and microbial context of the gassy sediments in the Ría de Vigo (NW of Spain).

40. McrA primers for the detection and quantification of the anaerobic archaeal methanotroph ' Candidatus Methanoperedens nitroreducens'.

41. Microbial methane cycling in sediments of Arctic thermokarst lagoons.

42. Methane seep in shallow-water permeable sediment harbors high diversity of anaerobic methanotrophic communities, Elba, Italy

43. Microbial communities in methane- and short chain alkane-rich hydrothermal sediments of Guaymas Basin

44. A metagenomics-based metabolic model of nitrate-dependent anaerobic oxidation of methane by Methanoperedens-like archaea

45. Diversity and Metabolic Potential of the Terrestrial Mud Volcano Microbial Community with a High Abundance of Archaea Mediating the Anaerobic Oxidation of Methane

47. Growth and activity of ANME clades with different sulfate and sulfide concentrations in presence of methane

48. Microbial communities associated with benthic faunal assemblages at cold seep sediments of the Sonora Margin, Guaymas Basin

49. Distinct microbial populations are tightly linked to the profile of dissolved iron in the methanic sediments of the Helgoland mud area, North Sea

50. Discovery of a chemosynthesis-based community in the western South Atlantic Ocean.

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