Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Climate warming and the decline of amphibians and reptiles in Europe

View through CrossRef
AbstractAim  We explore the relationship between current European distributions of amphibian and reptile species and observed climate, and project species potential distributions into the future. Potential impacts of climate warming are assessed by quantifying the magnitude and direction of modelled distributional shifts for every species. In particular we ask, first, what proportion of amphibian and reptile species are projected to lose and gain suitable climate space in the future? Secondly, do species projections vary according to taxonomic, spatial or environmental properties? And thirdly, what climate factors might be driving projections of loss or gain in suitable environments for species?Location  Europe.Methods  Distributions of species are modelled with four species–climate envelope techniques (artificial neural networks, generalized linear models, generalized additive models, and classification tree analyses) and distributions are projected into the future using five climate‐change scenarios for 2050. Future projections are made considering two extreme assumptions: species have unlimited dispersal ability and species have no dispersal ability. A novel hybrid approach for combining ensembles of forecasts is then used to group linearly covarying projections into clusters with reduced inter‐model variability.Results  We show that a great proportion of amphibian and reptile species are projected to expand distributions if dispersal is unlimited. This is because warming in the cooler northern ranges of species creates new opportunities for colonization. If species are unable to disperse, then most species are projected to lose range. Loss of suitable climate space for species is projected to occur mainly in the south‐west of Europe, including the Iberian Peninsula, whilst species in the south‐east are projected to gain suitable climate. This is because dry conditions in the south‐west are projected to increase, approaching the levels found in North Africa, where few amphibian species are able to persist.Main conclusions  The impact of increasing temperatures on amphibian and reptile species may be less deleterious than previously postulated; indeed, climate cooling would be more deleterious for the persistence of amphibian and reptile species than warming. The ability of species to cope with climate warming may, however, be offset by projected decreases in the availability of water. This should be particularly true for amphibians. Limited dispersal ability may further increase the vulnerability of amphibians and reptiles to changes in climate.
Title: Climate warming and the decline of amphibians and reptiles in Europe
Description:
AbstractAim  We explore the relationship between current European distributions of amphibian and reptile species and observed climate, and project species potential distributions into the future.
Potential impacts of climate warming are assessed by quantifying the magnitude and direction of modelled distributional shifts for every species.
In particular we ask, first, what proportion of amphibian and reptile species are projected to lose and gain suitable climate space in the future? Secondly, do species projections vary according to taxonomic, spatial or environmental properties? And thirdly, what climate factors might be driving projections of loss or gain in suitable environments for species?Location  Europe.
Methods  Distributions of species are modelled with four species–climate envelope techniques (artificial neural networks, generalized linear models, generalized additive models, and classification tree analyses) and distributions are projected into the future using five climate‐change scenarios for 2050.
Future projections are made considering two extreme assumptions: species have unlimited dispersal ability and species have no dispersal ability.
A novel hybrid approach for combining ensembles of forecasts is then used to group linearly covarying projections into clusters with reduced inter‐model variability.
Results  We show that a great proportion of amphibian and reptile species are projected to expand distributions if dispersal is unlimited.
This is because warming in the cooler northern ranges of species creates new opportunities for colonization.
If species are unable to disperse, then most species are projected to lose range.
Loss of suitable climate space for species is projected to occur mainly in the south‐west of Europe, including the Iberian Peninsula, whilst species in the south‐east are projected to gain suitable climate.
This is because dry conditions in the south‐west are projected to increase, approaching the levels found in North Africa, where few amphibian species are able to persist.
Main conclusions  The impact of increasing temperatures on amphibian and reptile species may be less deleterious than previously postulated; indeed, climate cooling would be more deleterious for the persistence of amphibian and reptile species than warming.
The ability of species to cope with climate warming may, however, be offset by projected decreases in the availability of water.
This should be particularly true for amphibians.
Limited dispersal ability may further increase the vulnerability of amphibians and reptiles to changes in climate.

Related Results

“The Earth Is Dying, Bro”
“The Earth Is Dying, Bro”
Climate Change and Children Australian children are uniquely situated in a vast landscape that varies drastically across locations. Spanning multiple climatic zones—from cool tempe...
Ethics of climate change : a normative account
Ethics of climate change : a normative account
Consider, for instance, you and your family have lived around a place where you enjoyed the flora and fauna of the land as well as the natural environment. Fishing and farming were...
Climate and Culture
Climate and Culture
Climate is, presently, a heatedly discussed topic. Concerns about the environmental, economic, political and social consequences of climate change are of central interest in academ...
Microfossil as proxy for palaeoclimate and palaeoceanography
Microfossil as proxy for palaeoclimate and palaeoceanography
Recent global warming has been addressed due to human activity that causes increased greenhouse gases. However, there are inherent uncertainties in the statement, one of them is th...
Untitled Document
Untitled Document
The pattern of surface warming plays a significant role in the Earth’s response to radiative forcing as it influences climate feedbacks. Distinct patterns of surface warming lead t...
Case Report: Non-typhoidal Salmonella infections transmitted by reptiles and amphibians
Case Report: Non-typhoidal Salmonella infections transmitted by reptiles and amphibians
Non-typhoidal Salmonella infections (NTSI) can cause bacterial diarrhea, mostly leading to self-limiting gastroenteritis. However, in at-risk populations, NTSI can have severe comp...
Seasonal dynamics and temperature sensitivity of soil CO2 efflux in a medium-term warmed subarctic grassland
Seasonal dynamics and temperature sensitivity of soil CO2 efflux in a medium-term warmed subarctic grassland
Climate warming is expected to occur stronger and faster in high-latitude terrestrial ecosystems compared to other regions of the world. It has been suggested that high-latitude sy...
A Synergistic Imperative: An Integrated Policy and Education Framework for Navigating the Climate Nexus
A Synergistic Imperative: An Integrated Policy and Education Framework for Navigating the Climate Nexus
Climate change acts as a systemic multiplier of threats, exacerbating interconnected global crises that jeopardize food security, biodiversity, and environmental health. These chal...

Back to Top