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Termination of belowground C allocation by trees alters soil fungal and bacterial communities in a boreal forest.Quantification of effects of season and nitrogen supply on tree below-ground carbon transfer to ectomycorrhizal fungi and other soil organisms in a boreal pine forest.Forests trapped in nitrogen limitation--an ecological market perspective on ectomycorrhizal symbiosis.Is microbial community composition in boreal forest soils determined by pH, C-to-N ratio, the trees, or all three?Fractional contributions by autotrophic and heterotrophic respiration to soil-surface CO2 efflux in Boreal forests.Nitrogen acquisition from inorganic and organic sources by boreal forest plants in the field.Can gas chromatography combustion isotope ratio mass spectrometry be used to quantify organic compound abundance?Are ectomycorrhizal fungi alleviating or aggravating nitrogen limitation of tree growth in boreal forests?High temporal resolution tracing of photosynthate carbon from the tree canopy to forest soil microorganisms.Allocation of carbon to fine root compounds and their residence times in a boreal forest depend on root size class and season.Recovery of ectomycorrhiza after 'nitrogen saturation' of a conifer forest.Tamm Review: On the nature of the nitrogen limitation to plant growth in Fennoscandian boreal forestsLarge-scale forest girdling shows that current photosynthesis drives soil respirationProduction of dissolved organic carbon and low-molecular weight organic acids in soil solution driven by recent tree photosynthateFungal but not bacterial soil communities recover after termination of decadal nitrogen additions to boreal forestContrasting patterns of soil N-cycling in model ecosystems of Fennoscandian boreal forestsContrasting effects of nitrogen availability on plant carbon supply to mycorrhizal fungi and saprotrophs - a hypothesis based on field observations in boreal forestBoreal forest plants take up organic nitrogenMicrobial community response to growing season and plant nutrient optimisation in a boreal Norway spruce forestIs the high 15N natural abundance of trees in N-loaded forests caused by an internal ecosystem N isotope redistribution or a change in the ecosystem N isotope mass balance?The return of an experimentally N-saturated boreal forest to an N-limited state: observations on the soil microbial community structure, biotic N retention capacity and gross N mineralisation
P50
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P50
description
Zweeds onderzoekster
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Mona N Högberg
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Mona N Högberg
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Mona N Högberg
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Mona N Högberg
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Mona N. Högberg
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Mona N. Högberg
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Mona N. Högberg
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Mona N Högberg
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Mona N. Högberg
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Mona Högberg
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Mona Nordström Högberg
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Mona N Högberg
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Mona N Högberg
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Mona N Högberg
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Mona N. Högberg
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Mona N. Högberg
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Mona N. Högberg
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Mona N. Högberg
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Mona N. Högberg
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Mona N. Högberg
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P106
P1153
7003782659
P21
P27
P31
P496
0000-0003-1258-7630