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1. Hydrogen is a major lifeline for aerobic bacteria.

2. Phylogenetically and functionally diverse microorganisms reside under the Ross Ice Shelf.

3. Multiple energy sources and metabolic strategies sustain microbial diversity in Antarctic desert soils.

4. Chemosynthetic and photosynthetic bacteria contribute differentially to primary production across a steep desert aridity gradient.

5. Metabolic flexibility allows bacterial habitat generalists to become dominant in a frequently disturbed ecosystem.

6. Trace gas oxidizers are widespread and active members of soil microbial communities.

7. Hydrogen-Oxidizing Bacteria Are Abundant in Desert Soils and Strongly Stimulated by Hydration.

8. Soil Bacterial Communities Exhibit Strong Biogeographic Patterns at Fine Taxonomic Resolution.

9. Energetic Basis of Microbial Growth and Persistence in Desert Ecosystems.

10. Two Chloroflexi classes independently evolved the ability to persist on atmospheric hydrogen and carbon monoxide.

11. Atmospheric trace gases support primary production in Antarctic desert surface soil.

12. Sex-specific genotype-by-environment interactions for cuticular hydrocarbon expression in decorated crickets, Gryllodes sigillatus: implications for the evolution of signal reliability.

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