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Global assessment of nitrogen deposition effects on terrestrial plant diversity: a synthesis.

TLDR
Ecosystems thought of as not N limited, such as tropical and subtropical systems, may be more vulnerable in the regeneration phase, in situations where heterogeneity in N availability is reduced by atmospheric N deposition, on sandy soils, or in montane areas.
Abstract
Atmospheric nitrogen (N) deposition is a recognized threat to plant diversity in temperate and northern parts of Europe and North America. This paper assesses evidence from field experiments for N deposition effects and thresholds for terrestrial plant diversity protection across a latitudinal range of main categories of ecosystems, from arctic and boreal systems to tropical forests. Current thinking on the mechanisms of N deposition effects on plant diversity, the global distribution of G200 ecoregions, and current and future (2030) estimates of atmospheric N-deposition rates are then used to identify the risks to plant diversity in all major ecosystem types now and in the future. This synthesis paper clearly shows that N accumulation is the main driver of changes to species composition across the whole range of different ecosystem types by driving the competitive interactions that lead to composition change and/or making conditions unfavorable for some species. Other effects such as direct toxicity of nitrogen gases and aerosols, long-term negative effects of increased ammonium and ammonia availability, soil-mediated effects of acidification, and secondary stress and disturbance are more ecosystem- and site-specific and often play a supporting role. N deposition effects in mediterranean ecosystems have now been identified, leading to a first estimate of an effect threshold. Importantly, ecosystems thought of as not N limited, such as tropical and subtropical systems, may be more vulnerable in the regeneration phase, in situations where heterogeneity in N availability is reduced by atmospheric N deposition, on sandy soils, or in montane areas. Critical loads are effect thresholds for N deposition, and the critical load concept has helped European governments make progress toward reducing N loads on sensitive ecosystems. More needs to be done in Europe and North America, especially for the more sensitive ecosystem types, including several ecosystems of high conservation importance. The results of this assessment show that the vulnerable regions outside Europe and North America which have not received enough attention are ecoregions in eastern and southern Asia (China, India), an important part of the mediterranean ecoregion (California, southern Europe), and in the coming decades several subtropical and tropical parts of Latin America and Africa. Reductions in plant diversity by increased atmospheric N deposition may be more widespread than first thought, and more targeted studies are required in low background areas, especially in the G200 ecoregions.

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Journal ArticleDOI

Food in the Anthropocene: the EAT–Lancet Commission on healthy diets from sustainable food systems

TL;DR: Food in the Anthropocene : the EAT-Lancet Commission on healthy diets from sustainable food systems focuses on meat, fish, vegetables and fruit as sources of protein.
Journal ArticleDOI

Human-induced nitrogen–phosphorus imbalances alter natural and managed ecosystems across the globe

TL;DR: It is shown that limited phosphorus and nitrogen availability are likely to jointly reduce future carbon storage by natural ecosystems during this century and if phosphorus fertilizers cannot be made increasingly accessible, the crop yields projections of the Millennium Ecosystem Assessment imply an increase of the nutrient deficit in developing regions.
Journal ArticleDOI

Lost food, wasted resources: global food supply chain losses and their impacts on freshwater, cropland, and fertiliser use

TL;DR: If the lowest loss and waste percentages achieved in any region in each step of the FSC could be reached globally, food supply losses could be halved and there would be enough food for approximately one billion extra people.
BookDOI

Global Energy Assessment: Toward a Sustainable Future

TL;DR: The Global Energy Assessment (GEA) as mentioned in this paper brings together over 300 international researchers to provide an independent, scientifically based, integrated and policy-relevant analysis of current and emerging energy issues and options.
References
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Journal ArticleDOI

Organic matter accumulation and nitrogen mineralization during secondary succession in heathland ecosystems.

Frank Berendse
- 01 Jun 1990 - 
TL;DR: It is proposed that Molinia has a positive effect on the mineralization rate of nitrogen mineralization in communities dominated by Calluna or Erica, whereas losses of nitrogen from the ecosystem appeared to be negligible in Moliniadominated communities.
Journal ArticleDOI

Competition in heathland along an experimental gradient of nutrient availability

TL;DR: The high competitive ability for light interception of Erica and Calluna with respect to Molinia can be attributed to their evergreen habit, which permits canopy closure early in the growing season and the importance of vertical canopy structure and timing of canopy development in competition for light.
Journal ArticleDOI

Effects of elevated CO2, nitrogen deposition, and decreased species diversity on foliar fungal plant disease

TL;DR: In this article, three components of global change, elevated CO2, nitrogen addition, and decreased plant species richness (diversity), increased the percent leaf area infected by fungi (pathogen load) for much to all of the plant community in one year of a factorial grassland experiment.
Journal ArticleDOI

Loss of forb diversity in relation to nitrogen deposition in the UK: regional trends and potential controls

TL;DR: In this article, the authors investigate the impact of nitrogen (N) deposition on the diversity of three different vegetation functional groups (forbs, grasses and mosses) using a field survey of acid grasslands across Great Britain.
Journal ArticleDOI

Natural nitrogen filter fails in polluted raised bogs

TL;DR: In this paper, a conceptual model is presented to explain the logistic response of these terrestrial carbon reservoirs to increased airborne nitrogen fluxes, based on global data ranging from pristine to heavily polluted areas.
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