Nitrogen (N) deposition is predicted to impact on the structure and functioning of Mediterranean ecosystems. In this study, we measured plant species composition, production and root phosphatase activity in a field experiment in which N (0, 10, 20 and 50 kg N ha-1 year-1) was added since October 2007 to a semiarid shrubland in central Spain. The characteristically dominant annual forb element responded negatively to N after ~2.5 and ~3.5 years. In contrast, the nitrophilous element (mainly crucifers) increased with N after ~2.5 and ~5.5 years, a response controlled by between-year variations in rainfall and the heterogeneous distribution of P availability. We also described a hierarchy of factors driving the structure and composition of the...
Anthropogenic eutrophication impacts ecosystems worldwide. Here, we use a vegetation dataset from se...
Atmospheric nitrogen (N) inputs in the Mediterranean Basin are projected to increase due to fossil f...
Nitrogen (N) deposition is a key driver of global change with significant effects on carbon (C) cycl...
Nitrogen (N) deposition is predicted to impact on the structure and functioning of Mediterranean eco...
Nitrogen (N) deposition has doubled the natural N inputs received by ecosystems through biological N...
Nitrogen (N) deposition has doubled the natural N inputs received by ecosystems through biological N...
Nitrogen (N) deposition due to anthropogenic pollution is a major driver of the global biodiversity ...
Atmospheric nitrogen (N) inputs in the Mediterranean Basin are projected to increase due to fossil f...
Nitrogen (N) enrichment has been pinpointed as a main driver for biodiversity change. Most of our kn...
Anthropogenic N deposition poses a threat to European Mediterranean ecosystems. We combined data fro...
Anthropogenic N deposition poses a threat to European Mediterranean ecosystems. We combined data fro...
We studied the impacts of nitrogen (N) deposition and precipitation gradients on soil chemistry and ...
Nitrogen (N) deposition threatens European Mediterranean ecosystems but investigation and understand...
Enhanced nitrogen (N) availability is one of the main drivers of biodiversity loss and degradation o...
<div><p>Enhanced nitrogen (N) availability is one of the main drivers of biodiversity loss and degra...
Anthropogenic eutrophication impacts ecosystems worldwide. Here, we use a vegetation dataset from se...
Atmospheric nitrogen (N) inputs in the Mediterranean Basin are projected to increase due to fossil f...
Nitrogen (N) deposition is a key driver of global change with significant effects on carbon (C) cycl...
Nitrogen (N) deposition is predicted to impact on the structure and functioning of Mediterranean eco...
Nitrogen (N) deposition has doubled the natural N inputs received by ecosystems through biological N...
Nitrogen (N) deposition has doubled the natural N inputs received by ecosystems through biological N...
Nitrogen (N) deposition due to anthropogenic pollution is a major driver of the global biodiversity ...
Atmospheric nitrogen (N) inputs in the Mediterranean Basin are projected to increase due to fossil f...
Nitrogen (N) enrichment has been pinpointed as a main driver for biodiversity change. Most of our kn...
Anthropogenic N deposition poses a threat to European Mediterranean ecosystems. We combined data fro...
Anthropogenic N deposition poses a threat to European Mediterranean ecosystems. We combined data fro...
We studied the impacts of nitrogen (N) deposition and precipitation gradients on soil chemistry and ...
Nitrogen (N) deposition threatens European Mediterranean ecosystems but investigation and understand...
Enhanced nitrogen (N) availability is one of the main drivers of biodiversity loss and degradation o...
<div><p>Enhanced nitrogen (N) availability is one of the main drivers of biodiversity loss and degra...
Anthropogenic eutrophication impacts ecosystems worldwide. Here, we use a vegetation dataset from se...
Atmospheric nitrogen (N) inputs in the Mediterranean Basin are projected to increase due to fossil f...
Nitrogen (N) deposition is a key driver of global change with significant effects on carbon (C) cycl...