Works matching IS 13541013 AND DT 2024 AND VI 30 AND IP 5
Results: 41
Climate warming accelerates carbon release from foliar litter—A global synthesis.
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- Global Change Biology, 2024, v. 30, n. 5, p. 1, doi. 10.1111/gcb.17350
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Beyond the visible: Accounting for ultraviolet and far‐red radiation in vegetation productivity and surface energy budgets.
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- Global Change Biology, 2024, v. 30, n. 5, p. 1, doi. 10.1111/gcb.17346
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Rising plant demand strengthens nitrogen limitation in tidal marsh.
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- Global Change Biology, 2024, v. 30, n. 5, p. 1, doi. 10.1111/gcb.17342
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Vrba was right: Historical climate fragmentation, and not current climate, explains mammal biogeography.
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- Global Change Biology, 2024, v. 30, n. 5, p. 1, doi. 10.1111/gcb.17339
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Impact of persistently high sea surface temperatures on the rhizobiomes of Zostera marina in a Baltic Sea benthocosms.
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- Global Change Biology, 2024, v. 30, n. 5, p. 1, doi. 10.1111/gcb.17337
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Individual and combined impacts of carbon dioxide enrichment, heatwaves, flow velocity variability, and fine sediment deposition on stream invertebrate communities.
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- Global Change Biology, 2024, v. 30, n. 5, p. 1, doi. 10.1111/gcb.17336
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Why do avian responses to change in Arctic green‐up vary?
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- Global Change Biology, 2024, v. 30, n. 5, p. 1, doi. 10.1111/gcb.17335
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Comparing environmental impacts of deep‐seabed and land‐based mining: A defensible framework.
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- Global Change Biology, 2024, v. 30, n. 5, p. 1, doi. 10.1111/gcb.17334
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Biological mitigation of soil nitrous oxide emissions by plant metabolites.
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- Global Change Biology, 2024, v. 30, n. 5, p. 1, doi. 10.1111/gcb.17333
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Controls and relationships of soil organic carbon abundance and persistence vary across pedo‐climatic regions.
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- Global Change Biology, 2024, v. 30, n. 5, p. 1, doi. 10.1111/gcb.17320
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Shifting the paradigm: The role of introduced plants in the resiliency of terrestrial ecosystems to climate change.
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- Global Change Biology, 2024, v. 30, n. 5, p. 1, doi. 10.1111/gcb.17319
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Acclimation capacity to global warming of amphibians and freshwater fishes: Drivers, patterns, and data limitations.
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- Global Change Biology, 2024, v. 30, n. 5, p. 1, doi. 10.1111/gcb.17318
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Damage to tropical forests caused by cyclones is driven by wind speed but mediated by topographical exposure and tree characteristics.
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- Global Change Biology, 2024, v. 30, n. 5, p. 1, doi. 10.1111/gcb.17317
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Distinct responses to warming within picoplankton communities across an environmental gradient.
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- Global Change Biology, 2024, v. 30, n. 5, p. 1, doi. 10.1111/gcb.17316
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Large‐scale remote sensing analysis reveals an increasing coupling of grassland vitality to atmospheric water demand.
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- Global Change Biology, 2024, v. 30, n. 5, p. 1, doi. 10.1111/gcb.17315
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Unveiling the landscape predictors of resilient vegetation in coastal wetlands to inform conservation in the face of climate extremes.
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- Global Change Biology, 2024, v. 30, n. 5, p. 1, doi. 10.1111/gcb.17314
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Biological invasions are a population‐level rather than a species‐level phenomenon.
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- Global Change Biology, 2024, v. 30, n. 5, p. 1, doi. 10.1111/gcb.17312
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Microbial life‐history strategies mediate microbial carbon pump efficacy in response to N management depending on stoichiometry of microbial demand.
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- Global Change Biology, 2024, v. 30, n. 5, p. 1, doi. 10.1111/gcb.17311
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Enhanced rock weathering increased soil phosphorus availability and altered root phosphorus‐acquisition strategies.
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- Global Change Biology, 2024, v. 30, n. 5, p. 1, doi. 10.1111/gcb.17310
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Global evidence for joint effects of multiple natural and anthropogenic drivers on soil nitrogen cycling.
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- Global Change Biology, 2024, v. 30, n. 5, p. 1, doi. 10.1111/gcb.17309
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Land use change and coastal water darkening drive synchronous dynamics in phytoplankton and fish phenology on centennial timescales.
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- Global Change Biology, 2024, v. 30, n. 5, p. 1, doi. 10.1111/gcb.17308
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Widespread breakdown in masting in European beech due to rising summer temperatures.
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- Global Change Biology, 2024, v. 30, n. 5, p. 1, doi. 10.1111/gcb.17307
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Tree contributions to climate change adaptation through reduced cattle heat stress and benefits to milk and beef production.
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- Global Change Biology, 2024, v. 30, n. 5, p. 1, doi. 10.1111/gcb.17306
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Meta‐analysis reveals that the effects of precipitation change on soil and litter fauna in forests depend on body size.
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- Global Change Biology, 2024, v. 30, n. 5, p. 1, doi. 10.1111/gcb.17305
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Drought shortens subtropical understory growing season by advancing leaf senescence.
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- Global Change Biology, 2024, v. 30, n. 5, p. 1, doi. 10.1111/gcb.17304
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Global nitrous oxide emissions from livestock manure during 1890–2020: An IPCC tier 2 inventory.
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- Global Change Biology, 2024, v. 30, n. 5, p. 1, doi. 10.1111/gcb.17303
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Global synthesis on the response of soil microbial necromass carbon to climate‐smart agriculture.
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- Global Change Biology, 2024, v. 30, n. 5, p. 1, doi. 10.1111/gcb.17302
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Multiple stressors alter greenhouse gas concentrations in streams through local and distal processes.
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- Global Change Biology, 2024, v. 30, n. 5, p. 1, doi. 10.1111/gcb.17301
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In situ decrease in rhodolith growth associated with Arctic climate change.
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- Global Change Biology, 2024, v. 30, n. 5, p. 1, doi. 10.1111/gcb.17300
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Dispersal and connectivity in increasingly extreme climatic conditions.
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- Global Change Biology, 2024, v. 30, n. 5, p. 1, doi. 10.1111/gcb.17299
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Crop rotational diversity can mitigate climate‐induced grain yield losses.
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- Global Change Biology, 2024, v. 30, n. 5, p. 1, doi. 10.1111/gcb.17298
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Convergence in simulating global soil organic carbon by structurally different models after data assimilation.
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- Global Change Biology, 2024, v. 30, n. 5, p. 1, doi. 10.1111/gcb.17297
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Assessing the effectiveness of marine nature‐based solutions with climate risk assessments.
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- Global Change Biology, 2024, v. 30, n. 5, p. 1, doi. 10.1111/gcb.17296
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Unearthing the soil‐borne microbiome of land plants.
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- Global Change Biology, 2024, v. 30, n. 5, p. 1, doi. 10.1111/gcb.17295
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Buffering and phenological mismatch: A change of perspective.
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- Global Change Biology, 2024, v. 30, n. 5, p. 1, doi. 10.1111/gcb.17294
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Arctic plasmidome analysis reveals distinct relationships among associated antimicrobial resistance genes and virulence genes along anthropogenic gradients.
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- Global Change Biology, 2024, v. 30, n. 5, p. 1, doi. 10.1111/gcb.17293
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Inferred drought‐induced plant allocation shifts and their impact on drought legacy at a tropical forest site.
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- Global Change Biology, 2024, v. 30, n. 5, p. 1, doi. 10.1111/gcb.17287
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The biological controls of soil carbon accumulation following wildfire and harvest in boreal forests: A review.
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- Global Change Biology, 2024, v. 30, n. 5, p. 1, doi. 10.1111/gcb.17276
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Rapid climate change increases diversity and homogenizes composition of coastal fish at high latitudes.
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- Global Change Biology, 2024, v. 30, n. 5, p. 1, doi. 10.1111/gcb.17273
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It's time to broaden what we consider a 'blue carbon ecosystem'.
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- Global Change Biology, 2024, v. 30, n. 5, p. 1, doi. 10.1111/gcb.17261
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Issue Information.
- Published in:
- Global Change Biology, 2024, v. 30, n. 5, p. 1, doi. 10.1111/gcb.16777
- Publication type:
- Article