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1. Recoding of stop codons expands the metabolic potential of two novel Asgardarchaeota lineages.

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

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

10. Addendum: Comparative Genomic Analysis of the Class Epsilonproteobacteria and Proposed Reclassification to Epsilonbacteraeota (phyl. nov.)

11. Erratum: Addendum: Comparative Genomic Analysis of the Class Epsilonproteobacteria and Proposed Reclassification to Epsilonbacteraeota (phyl. nov.).

12. Diverse Marinimicrobia bacteria may mediate coupled biogeochemical cycles along eco-thermodynamic gradients.

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

15. Comparative Genomic Analysis of the Class Epsilonproteobacteria and Proposed Reclassification to Epsilonbacteraeota (phyl. nov.)

16. Genomic Analysis of Caldithrix abyssi, the Thermophilic Anaerobic Bacterium of the Novel Bacterial Phylum Calditrichaeota

17. Rendering the metabolic wiring powering wetland soil methane production

18. Gene inversion led to the emergence of brackish archaeal heterotrophs in the aftermath of the Cryogenian Snowball Earth

19. acdc - Automated Contamination Detection and Confidence estimation for single-cell genome data.

20. Phylogeny and physiology of candidate phylum ‘Atribacteria’ (OP9/JS1) inferred from cultivation-independent genomics

21. ProDeGe: a computational protocol for fully automated decontamination of genomes

22. Description of Asgardarchaeum abyssi gen. nov. spec. nov., a novel species within the class Asgardarchaeia and phylum Asgardarchaeota in accordance with the SeqCode

24. Microbial dark matter ecogenomics reveals complex synergistic networks in a methanogenic bioreactor

25. Insights into the metabolism, lifestyle and putative evolutionary history of the novel archaeal phylum ‘Diapherotrites’

27. In Silico Analysis of the Metabolic Potential and Niche Specialization of Candidate Phylum "Latescibacteria" (WS3)

28. Reconstructing each cell's genome within complex microbial communities—dream or reality?

29. Stop Codon Reassignment in the Wild

31. The Candidate Phylum Poribacteria by Single-Cell Genomics: New Insights into Phylogeny, Cell-Compartmentation, Eukaryote-Like Repeat Proteins, and Other Genomic Features

32. Insights into the phylogeny and coding potential of microbial dark matter

35. Expansion of the Genomic Encyclopedia of Bacteria and Archaea

46. Stop codon reassignments in the wild

47. CorA gene rearrangement triggered the salinity-driven speciation of Poseidoniales

50. An environmental bacterial taxon with a large and distinct metabolic repertoire

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