Absorptive fine roots are an important driver of soil biogeochemical cycles. Yet, the spatio-temporal dynamics of those roots in the presence of neighboring species remain poorly understood. The aim of this study was to analyze shifts in absorptive fine-root traits in monoculture or mixtures of Fagus sylvatica [L.] and Picea abies [L.] Karst. We hypothesized that root competition would be higher under single-species than mixed-species interactions, leading to changes in (i) root survivorship, diameter and respiration and (ii) spatio-temporal patterns of root growth and death. Using minirhizotron methods, we monitored the timing and location of absorptive fine-root growth and death at an experimental forest in southern Germany from 2011 to 2...
Background: Quantifying the dynamics of root growth is vital when characterising the role of vegetat...
Fine roots and rhizomorphs have important implications for the global carbon balance, but the proces...
International audienceIntroduction Fine root dynamics control plant growth and development and play ...
Temperate forest ecosystems are exposed to a higher frequency, duration and severity of drought. To ...
Root-soil interactions are crucial parts of the terrestrial carbon (C) cycle. To get a better unders...
It is already well known that the effects of tree diversity on aboveground wood productivity depend ...
Aims: We aim to show the seasonality of fine root dynamics and examine the relationship between root...
Abstract Background Mixed forests are believed to enhance ecosystem functioning and sustainability d...
Root respiration (R-r) plays a crucial role in the global carbon balance, because R-r accounts for a...
Background and Aims: The structure of heterogeneous forests has consequences for their biophysical e...
AimThe fine roots of trees may show plastic responses to their resource environment. Several, contra...
Mixed stands of European beech (Fagus sylvatica L.) and Norway spruce (Picea abies (L.) Karst.) freq...
Fine roots play a key role in carbon, nutrient, and water biogeochemical cycles in forest ecosystems...
European beech (Fagus sylvatica L.) and European ash (Fraxinus excelsior L.) are common tree species...
Long-term minirhizotron observations of absorptive fine roots provide insights into seasonal pattern...
Background: Quantifying the dynamics of root growth is vital when characterising the role of vegetat...
Fine roots and rhizomorphs have important implications for the global carbon balance, but the proces...
International audienceIntroduction Fine root dynamics control plant growth and development and play ...
Temperate forest ecosystems are exposed to a higher frequency, duration and severity of drought. To ...
Root-soil interactions are crucial parts of the terrestrial carbon (C) cycle. To get a better unders...
It is already well known that the effects of tree diversity on aboveground wood productivity depend ...
Aims: We aim to show the seasonality of fine root dynamics and examine the relationship between root...
Abstract Background Mixed forests are believed to enhance ecosystem functioning and sustainability d...
Root respiration (R-r) plays a crucial role in the global carbon balance, because R-r accounts for a...
Background and Aims: The structure of heterogeneous forests has consequences for their biophysical e...
AimThe fine roots of trees may show plastic responses to their resource environment. Several, contra...
Mixed stands of European beech (Fagus sylvatica L.) and Norway spruce (Picea abies (L.) Karst.) freq...
Fine roots play a key role in carbon, nutrient, and water biogeochemical cycles in forest ecosystems...
European beech (Fagus sylvatica L.) and European ash (Fraxinus excelsior L.) are common tree species...
Long-term minirhizotron observations of absorptive fine roots provide insights into seasonal pattern...
Background: Quantifying the dynamics of root growth is vital when characterising the role of vegetat...
Fine roots and rhizomorphs have important implications for the global carbon balance, but the proces...
International audienceIntroduction Fine root dynamics control plant growth and development and play ...