Aims: The rhizosphere and root detritusphere are hotspots of microbial activity, where root-derived inputs induce intensive priming effects (PE) on soil organic carbon (SOC) decomposition. These conditions for induced PE differ between rhizosphere and detritusphere and are modified by plant traits. Methods: Continuous labelling with 13C-depleted CO2 allowed for the partitioning of plant and soil C sources of CO2 efflux and the investigation of the PE in the rhizosphere and detritusphere of slow-growing conservative Carex acuta and fast-growing acquisitive Glyceria maxima. Results: Glyceria allocated more C into the soil, induced higher microbial activity and a larger portion of active microorganisms, and depleted mineral N stronger than Car...
It is increasingly being recognized that the soil microbes can mineralize recalcitrant soil organic ...
It is increasingly being recognized that the soil microbes can mineralize recalcitrant soil organic ...
Living roots and their rhizodeposits affect microbial activity and soil carbon (C) and nitrogen (N) ...
Aims: The rhizosphere and root detritusphere are hotspots of microbial activity, where root-derived ...
It is increasingly being recognized that the soil microbes can mineralize recalcitrant soil organic ...
Rhizosphere priming is the change in decomposition of soil organic matter (SOM) caused by root activ...
It is increasingly being recognized that the soil microbes can mineralize recalcitrant soil organic ...
It is becoming increasingly clear that plant roots can impact the decomposition of existing soil C i...
WOS:000346545800018International audienceThe presence of plants induces strong accelerations in soil...
WOS:000346545800018International audienceThe presence of plants induces strong accelerations in soil...
Rhizosphere priming is the change in decomposition of soil organic matter (SOM) caused by root activ...
Rhizosphere priming effect can accelerate or decelerate the decomposition of soil organic matter. Us...
Rhizosphere priming effect can accelerate or decelerate the decomposition of soil organic matter. Us...
The presence of plants induces strong accelerations in soil organic matter (SOM) mineralization by s...
It is increasingly being recognized that the soil microbes can mineralize recalcitrant soil organic ...
It is increasingly being recognized that the soil microbes can mineralize recalcitrant soil organic ...
It is increasingly being recognized that the soil microbes can mineralize recalcitrant soil organic ...
Living roots and their rhizodeposits affect microbial activity and soil carbon (C) and nitrogen (N) ...
Aims: The rhizosphere and root detritusphere are hotspots of microbial activity, where root-derived ...
It is increasingly being recognized that the soil microbes can mineralize recalcitrant soil organic ...
Rhizosphere priming is the change in decomposition of soil organic matter (SOM) caused by root activ...
It is increasingly being recognized that the soil microbes can mineralize recalcitrant soil organic ...
It is becoming increasingly clear that plant roots can impact the decomposition of existing soil C i...
WOS:000346545800018International audienceThe presence of plants induces strong accelerations in soil...
WOS:000346545800018International audienceThe presence of plants induces strong accelerations in soil...
Rhizosphere priming is the change in decomposition of soil organic matter (SOM) caused by root activ...
Rhizosphere priming effect can accelerate or decelerate the decomposition of soil organic matter. Us...
Rhizosphere priming effect can accelerate or decelerate the decomposition of soil organic matter. Us...
The presence of plants induces strong accelerations in soil organic matter (SOM) mineralization by s...
It is increasingly being recognized that the soil microbes can mineralize recalcitrant soil organic ...
It is increasingly being recognized that the soil microbes can mineralize recalcitrant soil organic ...
It is increasingly being recognized that the soil microbes can mineralize recalcitrant soil organic ...
Living roots and their rhizodeposits affect microbial activity and soil carbon (C) and nitrogen (N) ...