Has water limited our imagination for aridland biogeochemistry?
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Effect of desertification on productivity in a desert steppeDrought degree constrains the beneficial effects of a fungal endophyte on Atractylodes lancea.Effects of stratospheric ozone depletion, solar UV radiation, and climate change on biogeochemical cycling: interactions and feedbacks.Solar ultraviolet radiation and ozone depletion-driven climate change: effects on terrestrial ecosystems.Soil N retention and nitrate leaching in three types of dunes in the Mu Us desert of ChinaEffects of Increased Summer Precipitation and Nitrogen Addition on Root Decomposition in a Temperate Desert.Structure and functioning of dryland ecosystems in a changing world.Environmental effects of ozone depletion and its interactions with climate change: progress report, 2011Nitrogen cycling and water pulses in semiarid grasslands: are microbial and plant processes temporally asynchronous?Comparing soil organic carbon dynamics in perennial grasses and shrubs in a saline-alkaline arid region, northwestern China.Water consumption characteristics and water use efficiency of winter wheat under long-term nitrogen fertilization regimes in northwest ChinaUnderstanding litter decomposition in semiarid ecosystems: linking leaf traits, UV exposure and rainfall variability.Environmental effects of ozone depletion and its interactions with climate change: progress report, 2015.Litter Decomposition in a Semiarid Dune Grassland: Neutral Effect of Water Supply and Inhibitory Effect of Nitrogen Addition.Soil gross nitrogen transformations along the Northeast China Transect (NECT) and their response to simulated rainfall eventsPulse frequency and soil-litter mixing alter the control of cumulative precipitation over litter decomposition.Control of climate and litter quality on leaf litter decomposition in different climatic zones.Soil metabolic pulses: water, substrate, and biological regulation.Plant δ(15) N reflects the high landscape-scale heterogeneity of soil fertility and vegetation productivity in a Mediterranean semiarid ecosystem.Do soil organisms affect aboveground litter decomposition in the semiarid Patagonian steppe, Argentina?The interaction between abiotic photodegradation and microbial decomposition under ultraviolet radiation.Direct and indirect effects of shifting rainfall on soil microbial respiration and enzyme activity in a semi-arid systemPinus ponderosa alters nitrogen dynamics and diminishes the climate footprint in natural ecosystems of PatagoniaSolar ultraviolet radiation in a changing climateThe Palaearctic steppe biome: a new synthesisEffects of two locust control methods on wood-eating termites in arid AustraliaA model-based evaluation of woody plant encroachment effects on coupled carbon and water cyclesSoil water regulates the control of photosynthesis on diel hysteresis between soil respiration and temperature in a desert shrublandAbiotic versus biotic controls on soil nitrogen cycling in drylands along a 3200 km transectA shady business: pine afforestation alters the primary controls on litter decomposition along a precipitation gradient in Patagonia, ArgentinaWhether in life or in death: fresh perspectives on how plants affect biogeochemical cyclingThresholds in decoupled soil-plant elements under changing climatic conditionsTemporal dynamics of ultraviolet radiation impacts on litter decomposition in a semi-arid ecosystemAn accounting of C-based trace gas release during abiotic plant litter degradationSoil organic C and total N pools in the Kalahari: potential impacts of climate change on C sequestration in savannas
P2860
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P2860
Has water limited our imagination for aridland biogeochemistry?
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2011 nî lūn-bûn
@nan
2011 թուականի Մարտին հրատարակուած գիտական յօդուած
@hyw
2011 թվականի մարտին հրատարակված գիտական հոդված
@hy
2011年の論文
@ja
2011年論文
@yue
2011年論文
@zh-hant
2011年論文
@zh-hk
2011年論文
@zh-mo
2011年論文
@zh-tw
2011年论文
@wuu
name
Has water limited our imagination for aridland biogeochemistry?
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Has water limited our imagination for aridland biogeochemistry?
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type
label
Has water limited our imagination for aridland biogeochemistry?
@ast
Has water limited our imagination for aridland biogeochemistry?
@en
prefLabel
Has water limited our imagination for aridland biogeochemistry?
@ast
Has water limited our imagination for aridland biogeochemistry?
@en
P1476
Has water limited our imagination for aridland biogeochemistry?
@en
P304
P356
10.1016/J.TREE.2011.02.003
P50
P577
2011-03-12T00:00:00Z