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1. Autotrophic biofilms sustained by deeply sourced groundwater host diverse bacteria implicated in sulfur and hydrogen metabolism

5. Inference and reconstruction of the heimdallarchaeial ancestry of eukaryotes

9. Brockarchaeota, a novel archaeal phylum with unique and versatile carbon cycling pathways.

10. Protein Family Content Uncovers Lineage Relationships and Bacterial Pathway Maintenance Mechanisms in DPANN Archaea

11. Roadmap for naming uncultivated Archaea and Bacteria

17. Corrigendum: Minimum information about a single amplified genome (MISAG) and a metagenome-assembled genome (MIMAG) of bacteria and archaea.

18. Metabolic versatility of small archaea Micrarchaeota and Parvarchaeota

19. Correction: Corrigendum: Minimum information about a single amplified genome (MISAG) and a metagenome-assembled genome (MIMAG) of bacteria and archaea

22. Minimum information about a single amplified genome (MISAG) and a metagenome-assembled genome (MIMAG) of bacteria and archaea

23. Asgard archaea illuminate the origin of eukaryotic cellular complexity

24. Beyond methane, new frontiers in anaerobic microbial hydrocarbon utilizing pathways.

26. A new view of the tree of life.

27. Genome-Resolved Metagenomic Analysis Reveals Roles for Candidate Phyla and Other Microbial Community Members in Biogeochemical Transformations in Oil Reservoirs

28. Asgard archaea modulate potential methanogenesis substrates in wetland soil

37. A novel three-unit tRNA splicing endonuclease found in ultrasmall Archaea possesses broad substrate specificity

38. EMIRGE: Reconstruction of full length ribosomal genes from microbial community short read sequencing data

40. Community-wide analysis of microbial genome sequence signatures

42. Metabolically active eukaryotic communities in extremely acidic mine drainage

43. New globally distributed bacterial phyla within the FCB superphylum

47. Inference and reconstruction of the heimdallarchaeial ancestry of eukaryotes

48. Inference and reconstruction of the heimdallarchaeial ancestry of eukaryotes

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