Surviving through a dry spell: microbial responses to drying and rewetting. [PDF]
Cowan DA.
europepmc +1 more source
Brackish Water Rewetting Enables Resilient Methane Suppression across Coastal Peatland Land Uses. [PDF]
Guo H, Cui S, Pugliese L, Wu S.
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Reduced legacy precipitation decreases microbial community growth efficiency and alters soil organic carbon in a California grassland. [PDF]
Hernandez LK +12 more
europepmc +1 more source
DNA-Based Bacterial Community Profiles in Air-Dried Historical Soil Archives Are More Representative than Those from Rewetted Soils. [PDF]
Lu P, Ji B, Yan Y, Zhang S, Yang X.
europepmc +1 more source
Cross-stressor resilience of soil microbial growth and carbon metabolism under climate change. [PDF]
LĂ JT, Hicks LC, BrangarĂ AC, Rousk J.
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Root Traits Predict the Soil Functional Responses of Subtropical Plant Species to Experimental Drought. [PDF]
Wang L +8 more
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Harnessing peatland rewetting for effective biochar-based carbon dioxide removal. [PDF]
Rhymes JM +4 more
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Diverse drought responses and evidence for stress priming in glacier-fed stream bacteria. [PDF]
Touchette D +4 more
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Functional redundancy enhances microbial resilience in streams: mitigating flow perturbations. [PDF]
Lin Q +7 more
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Greenhouse gas balance of solar parks built on peatlands in Germany. [PDF]
Schwill F +4 more
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