Area of research
Ecology · Soil Science
Research interest
Research interests include Biology, Nitrification, Ecology, Denitrifying bacteria, Denitrification, and Ecosystem.
Plant growth drives soil nitrogen cycling and N-related microbial activity through changing root traits
Biological inhibition of soil nitrification by forest tree species affects <scp> <i>Nitrobacter</i> </scp> populations
The impact of failure: unsuccessful bacterial invasions steer the soil microbial community away from the invader’s niche
Control of soil N cycle processes by <i>Pteridium aquilinum</i> and <i>Erica cinerea</i> in heathlands along a <scp>pH</scp> gradient
Effect of plant diversity on the diversity of soil organic compounds
The added value of including key microbial traits to determine nitrogen‐related ecosystem services in managed grasslands
Successional patterns of key genes and processes involved in the microbial nitrogen cycle in a salt marsh chronosequence
Predicting the Responses of Soil Nitrite-Oxidizers to Multi-Factorial Global Change: A Trait-Based Approach
Mechanism of biological denitrification inhibition: procyanidins induce an allosteric transition of the membrane-bound nitrate reductase through membrane alteration
Plant species diversity affects soil–atmosphere fluxes of methane and nitrous oxide
Influence of plant traits, soil microbial properties, and abiotic parameters on nitrogen turnover of grassland ecosystems
Coupling Between and Among Ammonia Oxidizers and Nitrite Oxidizers in Grassland Mesocosms Submitted to Elevated CO2 and Nitrogen Supply
<i>Alnus</i> peptides modify membrane porosity and induce the release of nitrogen-rich metabolites from nitrogen-fixing <i>Frankia</i>
Variations in snow depth modify N-related soil microbial abundances and functioning during winter in subalpine grassland
Identification of <scp>B</scp> ‐type procyanidins in <scp> <i>F</i> </scp> <i>allopia</i> spp. involved in biological denitrification inhibition
Functional and structural responses of soil N-cycling microbial communities to the herbicide mesotrione: a dose-effect microcosm approach
Management of Microbial Communities through Transient Disturbances Enhances the Functional Resilience of Nitrifying Gas-Biofilters to Future Disturbances
Plant species identities and fertilization influence on arbuscular mycorrhizal fungal colonisation and soil bacterial activities
Contribution of above- and below-ground plant traits to the structure and function of grassland soil microbial communities
Are plant–soil feedback responses explained by plant traits?
Evidence for biological denitrification inhibition (<scp>BDI</scp>) by plant secondary metabolites
Using plant traits to explain plant–microbe relationships involved in nitrogen acquisition
A comparison of the strength of biodiversity effects across multiple functions
Soil Environmental Conditions and Microbial Build-Up Mediate the Effect of Plant Diversity on Soil Nitrifying and Denitrifying Enzyme Activities in Temperate Grasslands
Phytochemical analysis of mature tree root exudates in situ and their role in shaping soil microbial communities in relation to tree N-acquisition strategy
Relative contributions of plant traits and soil microbial properties to mountain grassland ecosystem services
Four years of experimental climate change modifies the microbial drivers of <scp><scp>N</scp></scp><sub>2</sub><scp><scp>O</scp></scp> fluxes in an upland grassland ecosystem
The effects of snowpack properties and plant strategies on litter decomposition during winter in subalpine meadows
Relating Phylogenetic and Functional Diversity among Denitrifiers and Quantifying their Capacity to Predict Community Functioning
Effect of earthworms on plant Lantana camara Pb-uptake and on bacterial communities in root-adhering soil