In many wetland plants, belowground transport of O2 via aerenchyma tissue and subsequent O2 loss across root surfaces generates small oxic root zones at depth in the rhizosphere with important consequences for carbon and nutrient cycling. This study demonstrates how roots of the intertidal salt-marsh plant Spartina anglica affect not only O2, but also pH and CO2 dynamics, resulting in distinct gradients of O2, pH, and CO2 in the rhizosphere. A novel planar optode system (VisiSens TD®, PreSens GmbH) was used for taking high-resolution 2D-images of the O2, pH, and CO2 distribution around roots during alternating light–dark cycles. Belowground sediment oxygenation was detected in the immediate vicinity of the roots, resulting in oxic root zone...
Live imaging methods have become extremely important for the exploration of biological processes. In...
Live imaging methods have become extremely important for the exploration of biological processes. In...
© 2014, Springer-Verlag Berlin Heidelberg. We present a new experimental set-up enabling fine-scale ...
Although transport of oxygen via the aerenchyma tissue and subsequent oxygen loss across root surfac...
Belowground sediment oxygenation in rhizospheres of wetland plants promotes nutrient uptake, serve a...
Spatial and temporal Oxygen, pH and CO2 dynamics in the rhizosphere of the salt marsh plant; Spartin...
Sediment oxygenation was assessed in situ in rhizospheres of the intertidal salt marsh grass, Sparti...
Although transport of oxygen via the aerenchyma tissue and subsequent oxygen loss across root surfac...
To improve the understanding of soil bioprocesses, especially nutrient flow and carbon allocation be...
In wetland ecosystems, actively ventilating plants strongly influence the oxidation of reduced subst...
It is now well known that roots introduce oxygen into the soil environment through radial oxygen los...
A novel type of planar optodes for simultaneous optical analysis of pH and oxygen dynamics in the rh...
Root-aerenchyma in wetland plants facilitate transport of oxygen from aboveground sources (atmospher...
Live imaging methods have become extremely important for the exploration of biological processes. In...
Live imaging methods have become extremely important for the exploration of biological processes. In...
Live imaging methods have become extremely important for the exploration of biological processes. In...
Live imaging methods have become extremely important for the exploration of biological processes. In...
© 2014, Springer-Verlag Berlin Heidelberg. We present a new experimental set-up enabling fine-scale ...
Although transport of oxygen via the aerenchyma tissue and subsequent oxygen loss across root surfac...
Belowground sediment oxygenation in rhizospheres of wetland plants promotes nutrient uptake, serve a...
Spatial and temporal Oxygen, pH and CO2 dynamics in the rhizosphere of the salt marsh plant; Spartin...
Sediment oxygenation was assessed in situ in rhizospheres of the intertidal salt marsh grass, Sparti...
Although transport of oxygen via the aerenchyma tissue and subsequent oxygen loss across root surfac...
To improve the understanding of soil bioprocesses, especially nutrient flow and carbon allocation be...
In wetland ecosystems, actively ventilating plants strongly influence the oxidation of reduced subst...
It is now well known that roots introduce oxygen into the soil environment through radial oxygen los...
A novel type of planar optodes for simultaneous optical analysis of pH and oxygen dynamics in the rh...
Root-aerenchyma in wetland plants facilitate transport of oxygen from aboveground sources (atmospher...
Live imaging methods have become extremely important for the exploration of biological processes. In...
Live imaging methods have become extremely important for the exploration of biological processes. In...
Live imaging methods have become extremely important for the exploration of biological processes. In...
Live imaging methods have become extremely important for the exploration of biological processes. In...
© 2014, Springer-Verlag Berlin Heidelberg. We present a new experimental set-up enabling fine-scale ...