Aboveground, belowground biomass, and morphological fine root characteristics of temperate tree regeneration

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Autor principal: Dietrich, Viktoria
Formato: Recurso digital
Lenguaje:inglés
Publicado: Zenodo 2025
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author Dietrich, Viktoria
author_facet Dietrich, Viktoria
contents <p>Along a gradient of mean annual precipitation (mm a-1), mean annual temperature (°C a-1) and nitrogen deposition (kg N ha-1 a-1) in Germany, biomass allocation and fine root morphology of 4 temperate tree species (<em>Fagus sylvatica, Quercus petraea, Pseudotsuga menziesii, Abies alba</em>) were characterised. Variables measured were aboveground and belowground biomass (both in g), specific root length (cm mg-1),  root tip frequency (tip mg-1), root tissue density (g cm-3), and mycorrhization rate (%). Co-factors that also determined biomass partitioning and root morphology were tree age, tree height (cm), upper mineral soil field capacity (V%), upper mineral soil nitrogen content (mg g-1) and canopy cover (%). A research article describing patterns in data per species is published in Ecosystems, Springer.</p>
format Recurso digital
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language eng
publishDate 2025
publisher Zenodo
record_format zenodo
spellingShingle Aboveground, belowground biomass, and morphological fine root characteristics of temperate tree regeneration
Dietrich, Viktoria
climate change
nitrogen availability
forest regeneration
temperate forests
biomass allocation
specific root length
<p>Along a gradient of mean annual precipitation (mm a-1), mean annual temperature (°C a-1) and nitrogen deposition (kg N ha-1 a-1) in Germany, biomass allocation and fine root morphology of 4 temperate tree species (<em>Fagus sylvatica, Quercus petraea, Pseudotsuga menziesii, Abies alba</em>) were characterised. Variables measured were aboveground and belowground biomass (both in g), specific root length (cm mg-1),  root tip frequency (tip mg-1), root tissue density (g cm-3), and mycorrhization rate (%). Co-factors that also determined biomass partitioning and root morphology were tree age, tree height (cm), upper mineral soil field capacity (V%), upper mineral soil nitrogen content (mg g-1) and canopy cover (%). A research article describing patterns in data per species is published in Ecosystems, Springer.</p>
title Aboveground, belowground biomass, and morphological fine root characteristics of temperate tree regeneration
topic climate change
nitrogen availability
forest regeneration
temperate forests
biomass allocation
specific root length
url https://doi.org/10.5281/zenodo.14586609