Above- and belowground responses of Arctic tundra ecosystems to altered soil nutrients and mammalian herbivory.
about
Respiratory flexibility and efficiency are affected by simulated global change in Arctic plants.Bryophyte-cyanobacteria associations as regulators of the northern latitude carbon balance in response to global change.How will the greening of the Arctic affect an important prey species and disturbance agent? Vegetation effects on arctic ground squirrels.Vegetation shift from deciduous to evergreen dwarf shrubs in response to selective herbivory offsets carbon losses: evidence from 19 years of warming and simulated herbivory in the subarctic tundra.Soil bacterial community composition altered by increased nutrient availability in Arctic tundra soils.Differential physiological responses to environmental change promote woody shrub expansionHerbivory and nutrient limitation protect warming tundra from lowland species' invasion and diversity loss.Top-down vs. bottom-up control on vegetation composition in a tidal marsh depends on scaleComplex biotic interactions drive long-term vegetation dynamics in a subarctic ecosystem.Increased duration of aquatic resource pulse alters community and ecosystem responses in a subarctic plant community.Responses of belowground communities to large aboveground herbivores: Meta-analysis reveals biome-dependent patterns and critical research gaps.Effects of long-term nutrient additions on Arctic tundra, stream, and lake ecosystems: beyond NPP.Shrub encroachment in Arctic tundra: Betula nana effects on above- and belowground litter decomposition.The role of driving factors in historical and projected carbon dynamics of upland ecosystems in Alaska.Long-term warming restructures Arctic tundra without changing net soil carbon storage.Above-ground and below-ground responses to long-term nutrient addition across a retrogressive chronosequenceAboveground mammal and invertebrate exclusions cause consistent changes in soil food webs of two subalpine grassland types, but mechanisms are system-specificHerbivory mediates the long-term shift in the relative importance of microsite and propagule limitationLong-Term Experiments Reveal Strong Interactions Between Lemmings and Plants in the Fennoscandian Highland TundraC–N–P interactions control climate driven changes in regional patterns of C storage on the North Slope of AlaskaBiogenic silica accumulation varies across tussock tundra plant functional typeCan antibrowsing defense regulate the spread of woody vegetation in arctic tundra?
P2860
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P2860
Above- and belowground responses of Arctic tundra ecosystems to altered soil nutrients and mammalian herbivory.
description
2012 nî lūn-bûn
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2012年の論文
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2012年学术文章
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2012年学术文章
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2012年学术文章
@zh-cn
2012年学术文章
@zh-hans
2012年学术文章
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2012年学术文章
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2012年學術文章
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2012年學術文章
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name
Above- and belowground respons ...... ients and mammalian herbivory.
@en
Above- and belowground respons ...... ients and mammalian herbivory.
@nl
type
label
Above- and belowground respons ...... ients and mammalian herbivory.
@en
Above- and belowground respons ...... ients and mammalian herbivory.
@nl
prefLabel
Above- and belowground respons ...... ients and mammalian herbivory.
@en
Above- and belowground respons ...... ients and mammalian herbivory.
@nl
P2093
P2860
P921
P356
P1433
P1476
Above- and belowground respons ...... ients and mammalian herbivory.
@en
P2093
David R Johnson
Gauis R Shaver
John C Moore
Rodney T Simpson
P2860
P304
P356
10.1890/11-1631.1
P407
P50
P577
2012-07-01T00:00:00Z