Cumulative and partially recoverable impacts of nitrogen addition on a temperate steppe.

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Cumulative and partially recoverable impacts of nitrogen addition on a temperate steppe. is …
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scholarly articleQ13442814

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P356DOI10.1002/EAP.1647
P8608Fatcat IDrelease_5naja7j2afhmldri4nxszhjtlm
P698PubMed publication ID29113017

P50authorTianxiang HaoQ56885972
Fusuo ZhangQ86701040
P2093author name stringLing Song
Xuejun Liu
Keith Goulding
P2860cites workEffects of Soil Resources on Plant Invasion and Community Structure in Californian Serpentine GrasslandQ28315488
Productivity depends more on the rate than the frequency of N addition in a temperate grasslandQ28646149
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Loss of plant species after chronic low-level nitrogen deposition to prairie grasslandsQ33318652
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Rapid plant species loss at high rates and at low frequency of N addition in temperate steppeQ35154356
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Cumulative nitrogen input drives species loss in terrestrial ecosystemsQ57000365
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The plant traits that drive ecosystems: Evidence from three continentsQ57052325
Direct and indirect effects of nitrogen deposition on species composition change in calcareous grasslandsQ57183650
Nitrogen enrichment enhances the dominance of grasses over forbs in a temperate steppe ecosystemQ57256940
How long do ecosystems take to recover from atmospheric nitrogen deposition?Q57262391
Changes in species richness and composition in European acidic grasslands over the past 70 years: the contribution of cumulative atmospheric nitrogen depositionQ57262432
Quantifying atmospheric nitrogen deposition through a nationwide monitoring network across ChinaQ57869432
Biological nitrogen fixation in mixed legume/grass pasturesQ58294638
Impacts of atmospheric nitrogen deposition: responses of multiple plant and soil parameters across contrasting ecosystems in long-term field experimentsQ58380199
Competitive Exclusion in Herbaceous VegetationQ59065321
Recovery of soil nitrogen pools in species-rich grasslands after 12 years of simulated pollutant nitrogen deposition: a 6-year experimental analysisQ61905430
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Niche differences in phenology and rooting depth promote coexistence with a dominant C4 bunchgrassQ81576589
Decline of acid-sensitive plant species in heathland can be attributed to ammonium toxicity in combination with low pHQ81631599
P433issue1
P921main subjectsteppeQ123991
P304page(s)237-248
P577publication date2017-12-27
P1433published inEcological ApplicationsQ3047086
P1476titleCumulative and partially recoverable impacts of nitrogen addition on a temperate steppe
P478volume28

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