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1. Functional capacities of microbial communities to carry out large scale geochemical processes are maintained during ex situ anaerobic incubation

2. The IsoGenie database: An interdisciplinary data management solution for ecosystems biology and environmental research

3. Large carbon cycle sensitivities to climate across a permafrost thaw gradient in subarctic Sweden

4. Ecology and molecular targets of hypermutation in the global microbiome

5. Scientists’ warning to humanity: microorganisms and climate change

6. Scientists' warning to humanity: microorganisms and climate change

7. Metabolic interactions underpinning high methane fluxes across terrestrial freshwater wetlands.

8. A climatically significant abiotic mechanism driving carbon loss and nitrogen limitation in peat bogs.

9. Impact of storage and extraction methods on peat soil microbiomes.

10. Microbiome-metabolite linkages drive greenhouse gas dynamics over a permafrost thaw gradient.

11. Scientists' call to action: Microbes, planetary health, and the Sustainable Development Goals.

12. Virus ecology and 7-year temporal dynamics across a permafrost thaw gradient.

13. Microbial polyphenol metabolism is part of the thawing permafrost carbon cycle.

14. Methylotrophy in the Mire: direct and indirect routes for methane production in thawing permafrost.

15. Microbiome assembly in thawing permafrost and its feedbacks to climate.

16. Plant organic matter inputs exert a strong control on soil organic matter decomposition in a thawing permafrost peatland.

17. Quantifying the inhibitory impact of soluble phenolics on anaerobic carbon mineralization in a thawing permafrost peatland.

18. Coupling plant litter quantity to a novel metric for litter quality explains C storage changes in a thawing permafrost peatland.

19. Diverse sediment microbiota shape methane emission temperature sensitivity in Arctic lakes.

20. Glacier ice archives nearly 15,000-year-old microbes and phages.

21. Ecology and molecular targets of hypermutation in the global microbiome.

22. Evidence for non-methanogenic metabolisms in globally distributed archaeal clades basal to the Methanomassiliicoccales.

23. Scientists' warning to humanity: microorganisms and climate change.

24. Towards optimized viral metagenomes for double-stranded and single-stranded DNA viruses from challenging soils.

25. Climate change microbiology - problems and perspectives.

26. Optimizing de novo genome assembly from PCR-amplified metagenomes.

27. Discovery and ecogenomic context of a global Caldiserica-related phylum active in thawing permafrost, Candidatus Cryosericota phylum nov., Ca. Cryosericia class nov., Ca. Cryosericales ord. nov., Ca. Cryosericaceae fam. nov., comprising the four species Cryosericum septentrionale gen. nov. sp. nov., Ca. C. hinesii sp. nov., Ca. C. odellii sp. nov., Ca. C. terrychapinii sp. nov.

28. Soil Viruses Are Underexplored Players in Ecosystem Carbon Processing.

29. Methanotrophy across a natural permafrost thaw environment.

30. Tropical peatland carbon storage linked to global latitudinal trends in peat recalcitrance.

31. Genome-centric view of carbon processing in thawing permafrost.

32. Host-linked soil viral ecology along a permafrost thaw gradient.

33. Clean Low-Biomass Procedures and Their Application to Ancient Ice Core Microorganisms.

34. Microbial network, phylogenetic diversity and community membership in the active layer across a permafrost thaw gradient.

35. Optimization of viral resuspension methods for carbon-rich soils along a permafrost thaw gradient.

36. Illuminating structural proteins in viral "dark matter" with metaproteomics.

37. Methane dynamics regulated by microbial community response to permafrost thaw.

38. Changes in peat chemistry associated with permafrost thaw increase greenhouse gas production.

39. Discovery of a novel methanogen prevalent in thawing permafrost.

40. Time-series analyses of Monterey Bay coastal microbial picoplankton using a 'genome proxy' microarray.

41. Design and testing of 'genome-proxy' microarrays to profile marine microbial communities.

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