How to assess species richness along single environmental gradients? Implications of potential versus realized species distributions.
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Summary
The authors' response curves suggest that potential species richness of grasslands is slightly more sensitive to acidification than realized plant species richness, and natural background values are more important to consider in the derivation of EQS for pH than methodological differences between the three approaches.
- Type
- article
- Published
- 2015-05-01
- Cited by
- 8
- References
- 36
- Access
- Open access
- OpenAlex
- https://openalex.org/W1968126718
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:8789623
Keywords
Species richness, Ecology, Body size and species richness, Vegetation (pathology), Plant species
References
- Floristic diversity of an eastern Mediterranean dwarf shrubland: the importance of soil pH
- Sensitivity of native and non-native mollusc species to changing river water temperature and salinity
- Grinnellian and Eltonian niches and geographic distributions of species.
- The definition of species richness used by species sensitivity distributions approximates observed effects of salinity on stream macroinvertebrates.
- The effect of environmental factors on floating fresh marsh end-of-season biomass.
- Patterns of plant species richness in relation to different environments: An appraisal
- Estimating safe concentrations of trace metals from inter-continental field data on river macroinvertebrates.
- Considerable environmental bottlenecks for species listed in the Habitats and Birds Directives in the Netherlands
- Deriving sediment quality guidelines from field-based species sensitivity distributions.
- Population consequences of cadmium toxicity in soil microarthropods.
- Modelling distribution and abundance with presence‐only data
- A method for deriving water‐quality benchmarks using field data
- Comparing species abundance models
- Field sensitivity distribution of macroinvertebrates for phosphorus in inland waters
- Defining the limits to local density: alternative views of abundance–environment relationships
- Global assessment of the effects of terrestrial acidification on plant species richness.
- Model Selection via Bayesian Information Criterion for Quantile Regression Models
- A multiple stress model for vegetation (‘move’): a tool for scenario studies and standard-setting
- Acidification of sandy grasslands – consequences for plant diversity
- Plant species sensitivity distributions for ozone exposure.
Cited by
- Impact of extreme metal contamination at the supra-individual level in a contaminated bay ecosystem.
- Effect of Soil Properties on Tree Distribution across an Agricultural Landscape on a Tropical Mountain, Tanzania
- Context-dependent environmental quality standards of soil nitrate for terrestrial plant communities.
- Quantifying effects of toxic and non–toxic stressors on biota in estuaries
- Using field data to quantify chemical impacts on wildlife population viability.
- Deriving Field-Based Ecological Risks for Bird Species
- What Is the Impact of Accidentally Transporting Terrestrial Alien Species? A New Life Cycle Impact Assessment Model
- Physiological and Proteomic Response Mechanisms of a Salt-tolerant wild Grapevine (Vitis vinifera L. ssp. sylvestris)
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