The rhizosphere microbial community of crop plants in intensively managed arable soils is strongly dominated by bacteria, especially in the initial stages of plant development. In order to establish more diverse and balanced rhizosphere microbiomes, as seen for wild plants, crop variety selection could be based on their ability to promote growth of saprotrophic fungi in the rhizosphere. We hypothesized that this can be achieved by increasing the exudation of phenolic acids, as generally higher fungal abundance is observed in environments with phenolic-rich inputs, such as exudates of older plants and litter leachates. To test this, a rhizosphere simulation microcosm was designed to establish gradual diffusion of root exudate metabolites fro...
International audienceUp to 20% of the carbon capital fixed by plants through photosynthesis is inve...
The plant root interface is a hot spot for microbial activities. Root exudates are the key compounds...
The rhizosphere microbiome is regulated by plant genotype, root exudates and environment. There is s...
The rhizosphere microbial community of crop plants in intensively managed arable soils is strongly d...
The rhizosphere microbial community of crop plants in intensively managed arable soils is strongly d...
The rhizosphere microbial community of crop plants in intensively managed arable soils is strongly d...
Intensively managed agricultural production of food and fiber does often coincide with negative side...
International audienceThe rhizodeposition of plants dramatically influence the surrounding soil and ...
The rhizosphere of land plants is a diverse and complex environment that is critical to the life cyc...
Saprotrophic fungi play an important role in ecosystem functioning and plant performance, but their ...
Plant diversity has been shown to determine the composition and functioning of soil biota. Although ...
The rhizosphere microbiome is regulated by plant genotype, root exudates and environment. There is s...
The rhizodeposition of plants dramatically influence the surrounding soil and its microflora. Root e...
Saprotrophic fungi play an important role in ecosystem functioning and plant performance, but their ...
How the root metabolic profiles and rhizosphere bacterial communities of dioecious plants respond to...
International audienceUp to 20% of the carbon capital fixed by plants through photosynthesis is inve...
The plant root interface is a hot spot for microbial activities. Root exudates are the key compounds...
The rhizosphere microbiome is regulated by plant genotype, root exudates and environment. There is s...
The rhizosphere microbial community of crop plants in intensively managed arable soils is strongly d...
The rhizosphere microbial community of crop plants in intensively managed arable soils is strongly d...
The rhizosphere microbial community of crop plants in intensively managed arable soils is strongly d...
Intensively managed agricultural production of food and fiber does often coincide with negative side...
International audienceThe rhizodeposition of plants dramatically influence the surrounding soil and ...
The rhizosphere of land plants is a diverse and complex environment that is critical to the life cyc...
Saprotrophic fungi play an important role in ecosystem functioning and plant performance, but their ...
Plant diversity has been shown to determine the composition and functioning of soil biota. Although ...
The rhizosphere microbiome is regulated by plant genotype, root exudates and environment. There is s...
The rhizodeposition of plants dramatically influence the surrounding soil and its microflora. Root e...
Saprotrophic fungi play an important role in ecosystem functioning and plant performance, but their ...
How the root metabolic profiles and rhizosphere bacterial communities of dioecious plants respond to...
International audienceUp to 20% of the carbon capital fixed by plants through photosynthesis is inve...
The plant root interface is a hot spot for microbial activities. Root exudates are the key compounds...
The rhizosphere microbiome is regulated by plant genotype, root exudates and environment. There is s...