<div><p>Anthropogenic nitrogen (N) enrichment can alter N dynamics associated with decomposing plant litter. However, it is unclear to what extent these alterations occur via microbial effects (e.g., changes in gene regulation, physiology, or community composition) versus plant litter effects (e.g., changes in composition of N and C compounds). To isolate microbial effects from plant litter effects, we collected plant litter from long-term N fertilized and control plots, reciprocally inoculated it with microbes from the two treatments, and incubated it in a common field setting for three months. We used quantum dots (QDs) to track fungal uptake of glycine and chitosan. Glycine is a relatively simple organic N compound; chitosan is more comp...
To determine how plant species richness impacts microbial assimilation of new photosynthate, and how...
Atmospheric nitrogen (N) deposition has increased dramatically since preindustrial times and continu...
There is evidence that anthropogenic nitrogen (N) deposition enhances carbon (C) sequestration in bo...
Anthropogenic nitrogen (N) enrichment can alter N dynamics associated with decomposing plant litter....
Soil microorganisms mediate many nutrient transformations that are central in terrestrial cycling of...
To better understand mechanisms of carbon (C) and nitrogen (N) dynamics under anthropogenic N enrich...
Soil microbial community composition and litter quality are important drivers of litter decompositio...
Soil microbial communities are enormously important in the cycling of nitrogen (N). Soil microbial c...
The breakdown of organic nitrogen in soil is a potential rate-limiting step in nitrogen cycling. Arb...
Fungi influence nutrient cycling in terrestrial ecosystems, as they are major regulators of decompos...
Global climate change and an increase of anthropogenic factors combine to drive change in the ecosys...
Nitrogen (N) availability is increasing in many ecosystems due to anthropogenic disturbance. We used...
Atmospheric nitrogen (N) deposition has frequently been observed to increase soil carbon (C) storage...
Fungi play a key role in ecosystem nutrient cycles by scavenging, concentrating, translocating and r...
International audienceThe spatiotemporal dynamics of, and interspecific differences in, the acquisit...
To determine how plant species richness impacts microbial assimilation of new photosynthate, and how...
Atmospheric nitrogen (N) deposition has increased dramatically since preindustrial times and continu...
There is evidence that anthropogenic nitrogen (N) deposition enhances carbon (C) sequestration in bo...
Anthropogenic nitrogen (N) enrichment can alter N dynamics associated with decomposing plant litter....
Soil microorganisms mediate many nutrient transformations that are central in terrestrial cycling of...
To better understand mechanisms of carbon (C) and nitrogen (N) dynamics under anthropogenic N enrich...
Soil microbial community composition and litter quality are important drivers of litter decompositio...
Soil microbial communities are enormously important in the cycling of nitrogen (N). Soil microbial c...
The breakdown of organic nitrogen in soil is a potential rate-limiting step in nitrogen cycling. Arb...
Fungi influence nutrient cycling in terrestrial ecosystems, as they are major regulators of decompos...
Global climate change and an increase of anthropogenic factors combine to drive change in the ecosys...
Nitrogen (N) availability is increasing in many ecosystems due to anthropogenic disturbance. We used...
Atmospheric nitrogen (N) deposition has frequently been observed to increase soil carbon (C) storage...
Fungi play a key role in ecosystem nutrient cycles by scavenging, concentrating, translocating and r...
International audienceThe spatiotemporal dynamics of, and interspecific differences in, the acquisit...
To determine how plant species richness impacts microbial assimilation of new photosynthate, and how...
Atmospheric nitrogen (N) deposition has increased dramatically since preindustrial times and continu...
There is evidence that anthropogenic nitrogen (N) deposition enhances carbon (C) sequestration in bo...