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1. Project Assessment for Biological and Environmental Research: Report from the BER Advisory Committee

2. The path from root input to mineral-associated soil carbon is dictated by habitat-specific microbial traits and soil moisture

4. Shifts in soil ammonia‐oxidizing community maintain the nitrogen stimulation of nitrification across climatic conditions

6. Reply to: Beyond microbial carbon use efficiency

8. Resource partitioning and amino acid assimilation in a terrestrial geothermal spring

9. Microbial growth under drought is confined to distinct taxa and modified by potential future climate conditions

10. Plugging the leaks: antibiotic resistance at human–animal interfaces in low‐resource settings

11. Reply to: Contribution of carbon inputs to soil carbon accumulation cannot be neglected

12. The predictive power of phylogeny on growth rates in soil bacterial communities

13. Long‐term elevated precipitation induces grassland soil carbon loss via microbe‐plant–soil interplay

15. Microbial carbon use efficiency promotes global soil carbon storage

16. Hyperactive nanobacteria with host-dependent traits pervade Omnitrophota

20. Nutrients strengthen density dependence of per-capita growth and mortality rates in the soil bacterial community

21. Life history strategies among soil bacteria—dichotomy for few, continuum for many

22. TEMPORARY REMOVAL: Using source-associated mobile genetic elements to identify zoonotic extraintestinal E. coli infections

24. Active populations and growth of soil microorganisms are framed by mean annual precipitation in three California annual grasslands

25. Quantitative Stable-Isotope Probing (qSIP) with Metagenomics Links Microbial Physiology and Activity to Soil Moisture in Mediterranean-Climate Grassland Ecosystems

28. Divergent responses of carbon-degrading enzyme activities to litter alterations: Implications for soil respiration

29. Divergent microbial traits influence the transformation of living versus dead root inputs to soil carbon

30. Correction: Long-term nitrogen deposition enhances microbial capacities in soil carbon stabilization but reduces network complexity

31. Long-term nitrogen deposition enhances microbial capacities in soil carbon stabilization but reduces network complexity

32. Quantitative stable-isotope probing (qSIP) with metagenomics links microbial physiology and activity to soil moisture in Mediterranean-climate grassland ecosystems

33. Unexpected Parabolic Temperature Dependency of CH4 Emissions from Rice Paddies

35. Historical precipitation regimes structure the growth of soil microorganisms in three California annual grasslands

37. Omnitrophota encompasses diverse and hyperactive nanobacteria: Potential metabolisms and host-dependent lifestyles

40. Long-term nitrogen deposition enhances microbial capacities in soil carbon stabilization but reduces network complexity

43. Warming effects on grassland productivity depend on plant diversity

44. Soil minerals affect taxon-specific bacterial growth

45. Active populations and growth of soil microorganisms are framed by mean annual precipitation in three California annual grasslands

50. Decreased growth of wild soil microbes after 15 years of transplant‐induced warming in a montane meadow

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