We investigated the variation of N:P and N:K ratio in ombrotrophic Sphagnum plants along a gradient of atmospheric N deposition from 1 to 2.5 g m-2 year-1 in Central-East Europe. The N:P and N:K ratio in Sphagnum capitula increased significantly along the N deposition gradient. Sphagnum species from the Cuspidata section were characterised by significantly lower ratios at low N deposition. When we compared the observed N:P ratios in Sphagnum plants with the values reported in a previous Europeanwide study, we found a correspondence in nutrient stoichiometry only for a few bogs: higher P concentration in Sphagnum capitula caused a lower N:P ratio in most of the study bogs so that Sphagnum plants still seem N-limited despite their N saturatio...
Increased N deposition in Europe has affected mire ecosystems. However, knowledge on the physiologic...
Nitrogen deposition may cause shifts in the Sphagnum species composition of bogs, ultimately affecti...
Human alteration of the global nitrogen (N) cycle has had major impacts on naturally N-limited ecosy...
We investigated the variation of N:P and N:K ratio in ombrotrophic Sphagnum plants along a gradient ...
We studied the effects of increasing levels of atmospheric nitrogen (N) deposition on nutrient limit...
We studied the effects of increasing levels of atmospheric nitrogen (N) deposition on nutrient limit...
•We studied the effects of increasing levels of atmospheric nitrogen (N) deposition on nutrient lim...
Alteration of the global nitrogen (N) cycle because of human-enhanced N fixation is a major concern ...
Southern Sweden has long been exposed to an increasing atmospheric nitrogen deposition. We investiga...
Although numerous studies have addressed the effects of increased N deposition on nutrient-poor envi...
Alteration of the global nitrogen (N) cycle because of human-enhanced N fixation is a major concern ...
This study investigated the factors underlying the variability of needle and soil elemental composit...
1 In a 4-year fertilization experiment we studied the effects of increased nitrogen (N) or phosphoru...
Sphagnum plants are sensitive to nitrogen deposition changes. However, previous literature is inconc...
1. This study investigated the factors underlying the variability of needle and soil elemental compo...
Increased N deposition in Europe has affected mire ecosystems. However, knowledge on the physiologic...
Nitrogen deposition may cause shifts in the Sphagnum species composition of bogs, ultimately affecti...
Human alteration of the global nitrogen (N) cycle has had major impacts on naturally N-limited ecosy...
We investigated the variation of N:P and N:K ratio in ombrotrophic Sphagnum plants along a gradient ...
We studied the effects of increasing levels of atmospheric nitrogen (N) deposition on nutrient limit...
We studied the effects of increasing levels of atmospheric nitrogen (N) deposition on nutrient limit...
•We studied the effects of increasing levels of atmospheric nitrogen (N) deposition on nutrient lim...
Alteration of the global nitrogen (N) cycle because of human-enhanced N fixation is a major concern ...
Southern Sweden has long been exposed to an increasing atmospheric nitrogen deposition. We investiga...
Although numerous studies have addressed the effects of increased N deposition on nutrient-poor envi...
Alteration of the global nitrogen (N) cycle because of human-enhanced N fixation is a major concern ...
This study investigated the factors underlying the variability of needle and soil elemental composit...
1 In a 4-year fertilization experiment we studied the effects of increased nitrogen (N) or phosphoru...
Sphagnum plants are sensitive to nitrogen deposition changes. However, previous literature is inconc...
1. This study investigated the factors underlying the variability of needle and soil elemental compo...
Increased N deposition in Europe has affected mire ecosystems. However, knowledge on the physiologic...
Nitrogen deposition may cause shifts in the Sphagnum species composition of bogs, ultimately affecti...
Human alteration of the global nitrogen (N) cycle has had major impacts on naturally N-limited ecosy...