Ecological interpretations of nitrogen isotope ratios of terrestrial plants and soils
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On the influence of provenance to soil quality enhanced stress reaction of young beech trees to summer droughtNitrogen cycling in an extreme hyperarid environment inferred from δ(15)N analyses of plants, soils and herbivore diet.A Spatially Explicit Dual-Isotope Approach to Map Regions of Plant-Plant Interaction after Exotic Plant Invasion.Biotic degradation at night, abiotic degradation at day: positive feedbacks on litter decomposition in drylands.Temperature and rainfall interact to control carbon cycling in tropical forests.Heterogeneous environments shape invader impacts: integrating environmental, structural and functional effects by isoscapes and remote sensingNitrogen and carbon isotopic dynamics of subarctic soils and plants in southern Yukon Territory and its implications for paleoecological and paleodietary studies.Continental scale variability of foliar nitrogen and carbon isotopes in Populus balsamifera and their relationships with climate.Centennial-scale reductions in nitrogen availability in temperate forests of the United States.Salix arctica changes root distribution and nutrient uptake in response to subsurface nutrients in High Arctic deserts.Stable isotopes of carbon and nitrogen help to predict the belowground communities at a regional scale.Investigation of the Influence of Leaf Thickness on Canopy Reflectance and Physiological Traits in Upland and Pima Cotton Populations.Plant δ(15) N reflects the high landscape-scale heterogeneity of soil fertility and vegetation productivity in a Mediterranean semiarid ecosystem.An ectomycorrhizal nitrogen economy facilitates monodominance in a neotropical forest.δ(15) N from soil to wine in bulk samples and proline.Land Use Alters the Drought Responses of Productivity and CO2 Fluxes in Mountain Grassland.Soil organic matter dynamics after afforestation of mountain grasslands in both a Mediterranean and a temperate climateRapid recuperation of soil nitrogen following agricultural abandonment in a karst area, southwest ChinaNitrogen input <sup>15</sup>N signatures are reflected in plant <sup>15</sup>N natural abundances in subtropical forests in ChinaAbiotic versus biotic controls on soil nitrogen cycling in drylands along a 3200 km transectIncreasing crop diversity increased soil microbial activity, nitrogen-sourcing and crop nitrogen, but not soil microbial diversity
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P2860
Ecological interpretations of nitrogen isotope ratios of terrestrial plants and soils
description
article
@en
im Juni 2015 veröffentlichter wissenschaftlicher Artikel
@de
wetenschappelijk artikel
@nl
наукова стаття, опублікована в червні 2015
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name
Ecological interpretations of nitrogen isotope ratios of terrestrial plants and soils
@en
Ecological interpretations of nitrogen isotope ratios of terrestrial plants and soils
@nl
type
label
Ecological interpretations of nitrogen isotope ratios of terrestrial plants and soils
@en
Ecological interpretations of nitrogen isotope ratios of terrestrial plants and soils
@nl
prefLabel
Ecological interpretations of nitrogen isotope ratios of terrestrial plants and soils
@en
Ecological interpretations of nitrogen isotope ratios of terrestrial plants and soils
@nl
P2093
P2860
P50
P1433
P1476
Ecological interpretations of nitrogen isotope ratios of terrestrial plants and soils
@en
P2093
E. N. J. Brookshire
Joseph M. Craine
Michael D. Cramer
Niles J. Hasselquist
P2860
P2888
P356
10.1007/S11104-015-2542-1
P577
2015-06-09T00:00:00Z