Microcosm experiments can inform global ecological problems.
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Trophic level stability-inducing effects of predaceous early juvenile fish in an estuarine mesocosm studyInteractive effects of global climate change and pollution on marine microbes: the way aheadMarine biodiversity-ecosystem functions under uncertain environmental futuresMicrobial Communities Are Well Adapted to Disturbances in Energy InputDynamic species classification of microorganisms across time, abiotic and biotic environments-A sliding window approach.Turning on the heat: ecological response to simulated warming in the seaDevelopment and validation of an experimental life support system for assessing the effects of global climate change and environmental contamination on estuarine and coastal marine benthic communities.Community composition has greater impact on the functioning of marine phytoplankton communities than ocean acidification.Leaf area index drives soil water availability and extreme drought-related mortality under elevated CO2 in a temperate grassland model system.Effects of elevated temperature and CO2 on intertidal microphytobenthos.Eutrophication effects on greenhouse gas fluxes from shallow-lake mesocosms override those of climate warming.A novel marine mesocosm facility to study global warming, water quality, and ocean acidificationMesocosms Reveal Ecological Surprises from Climate Change.An open source simulation model for soil and sediment bioturbation.Multitaxon activity profiling reveals differential microbial response to reduced seawater pH and oil pollution.Warming alters the metabolic balance of ecosystems.Quantification of carbon and phosphorus co-limitation in bacterioplankton: new insights on an old topic.Impact of biodiversity-climate futures on primary production and metabolism in a model benthic estuarine system.Food web complexity and allometric scaling relationships in stream mesocosms: implications for experimentation.Testing effects of consumer richness, evenness and body size on ecosystem functioning.Re-structuring of marine communities exposed to environmental change: a global study on the interactive effects of species and functional richness.Mixed competition-predation: potential vs. realized interactions.Experimental climate change weakens the insurance effect of biodiversity.Consumer trophic diversity as a fundamental mechanism linking predation and ecosystem functioning.Red coral extinction risk enhanced by ocean acidification.Hydrologic variability affects invertebrate grazing on phototrophic biofilms in stream microcosmsDiversity and structure of bacterial communities associated with Phanerochaete chrysosporium during wood decay.Spatial and spatiotemporal variation in metapopulation structure affects population dynamics in a passively dispersing arthropod.Single gene locus changes perturb complex microbial communities as much as apex predator loss.The role of experiments in understanding fishery-induced evolution.Simulated climate change, epidemic size, and host evolution across host-parasite populations.Harvested populations are more variable only in more variable environments.Multifunctionality is affected by interactions between green roof plant species, substrate depth, and substrate type.The relevance of conditional dispersal for bacterial colony growth and biodegradation.Density-dependent movement and the consequences of the Allee effect in the model organism Tetrahymena.Testing the keystone community concept: effects of landscape, patch removal, and environment on metacommunity structure.A STANDARDIZED TRI-TROPHIC SMALL-SCALE SYSTEM (TriCosm) FOR THE ASSESSMENT OF STRESSOR INDUCED EFFECTS ON AQUATIC COMMUNITY DYNAMICS.Decoupled responses of soil bacteria and their invertebrate consumer to warming, but not freeze-thaw cycles, in the Antarctic Dry Valleys.Predators regulate prey species sorting and spatial distribution in microbial landscapes.Habitat structure mediates biodiversity effects on ecosystem properties.
P2860
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P2860
Microcosm experiments can inform global ecological problems.
description
2007 nî lūn-bûn
@nan
2007 թուականի Սեպտեմբերին հրատարակուած գիտական յօդուած
@hyw
2007 թվականի սեպտեմբերին հրատարակված գիտական հոդված
@hy
2007年の論文
@ja
2007年論文
@yue
2007年論文
@zh-hant
2007年論文
@zh-hk
2007年論文
@zh-mo
2007年論文
@zh-tw
2007年论文
@wuu
name
Microcosm experiments can inform global ecological problems.
@ast
Microcosm experiments can inform global ecological problems.
@en
Microcosm experiments can inform global ecological problems.
@en-gb
Microcosm experiments can inform global ecological problems.
@nl
type
label
Microcosm experiments can inform global ecological problems.
@ast
Microcosm experiments can inform global ecological problems.
@en
Microcosm experiments can inform global ecological problems.
@en-gb
Microcosm experiments can inform global ecological problems.
@nl
prefLabel
Microcosm experiments can inform global ecological problems.
@ast
Microcosm experiments can inform global ecological problems.
@en
Microcosm experiments can inform global ecological problems.
@en-gb
Microcosm experiments can inform global ecological problems.
@nl
P50
P1476
Microcosm experiments can inform global ecological problems
@en
P2093
Steven M Sait
P304
P356
10.1016/J.TREE.2007.08.003
P577
2007-09-05T00:00:00Z