1. Global changes include increasing nitrogen (N) and phosphorus (P) deposition, which affect microbial nutrient demand and biogeochemical cycles. The responses of P-mineralizing enzymes to these global change components are poorly defined and are not specified in forest soils differing in P content. 2. We chose one site in a P-rich and two sites in P-poor forests and established sixteen 20 × 20 m plots at each site. Control, either N only, P only, or combined N and P, were randomly distributed through each forest site with 4 replicates. We investigated the effects of N and P additions over four years on the phosphomonoesterase potential activity (Vmax), its half-saturation constant (Km), and its catalytic efficiency (Vmax/Km). 3. Without N...
In temperate forests, trees form symbiotic associations with fungi on their roots; the majority bein...
Increased human-derived nitrogen (N) deposition to terrestrial ecosystems has resulted in widespread...
Phosphorus (P) plays an important role in driving primary production in terrestrial ecosystems. Howe...
1. Global changes include increasing nitrogen (N) and phosphorus (P) deposition, which affect microb...
© 2017 The Authors. Functional Ecology © 2017 British Ecological Society Global changes include incr...
Symbiotic nitrogen (N)-fixing plants can enrich ecosystems with N, which can alter the cycling and d...
Foliar phosphorus (P) contents have been decreasing in a range of temperate forests in Europe and No...
High atmospheric nitrogen (N) deposition together with climatic changes have been suggested to drive...
International audienceSoil phosphatase enzymes are produced by plant roots and microorganisms and pl...
Aim Anthropogenic additions of nitrogen (N) are expected to drive terrestrial ecosystems toward grea...
Anthropogenic activities have altered both nitrogen (N) and phosphorus (P) cycles across the globe. ...
Understanding the main underlying drivers of soil nutrient cycles is essential for predicting the ef...
International audienceThe key message N addition decreased soil inorganic P availability, microbial ...
1. It has long been believed that soil microbial activity in tropical forest ecosystems is limited b...
Large amounts of carbon (C), nitrogen (N) and phosphorus (P) in soil are stored in forms that are no...
In temperate forests, trees form symbiotic associations with fungi on their roots; the majority bein...
Increased human-derived nitrogen (N) deposition to terrestrial ecosystems has resulted in widespread...
Phosphorus (P) plays an important role in driving primary production in terrestrial ecosystems. Howe...
1. Global changes include increasing nitrogen (N) and phosphorus (P) deposition, which affect microb...
© 2017 The Authors. Functional Ecology © 2017 British Ecological Society Global changes include incr...
Symbiotic nitrogen (N)-fixing plants can enrich ecosystems with N, which can alter the cycling and d...
Foliar phosphorus (P) contents have been decreasing in a range of temperate forests in Europe and No...
High atmospheric nitrogen (N) deposition together with climatic changes have been suggested to drive...
International audienceSoil phosphatase enzymes are produced by plant roots and microorganisms and pl...
Aim Anthropogenic additions of nitrogen (N) are expected to drive terrestrial ecosystems toward grea...
Anthropogenic activities have altered both nitrogen (N) and phosphorus (P) cycles across the globe. ...
Understanding the main underlying drivers of soil nutrient cycles is essential for predicting the ef...
International audienceThe key message N addition decreased soil inorganic P availability, microbial ...
1. It has long been believed that soil microbial activity in tropical forest ecosystems is limited b...
Large amounts of carbon (C), nitrogen (N) and phosphorus (P) in soil are stored in forms that are no...
In temperate forests, trees form symbiotic associations with fungi on their roots; the majority bein...
Increased human-derived nitrogen (N) deposition to terrestrial ecosystems has resulted in widespread...
Phosphorus (P) plays an important role in driving primary production in terrestrial ecosystems. Howe...