Datasets depicting historical (1901-1920), contemporary (1979-2013), and future (2061-2080) life zones as global rasters at 30 arc-second resolution in GeoTiff format are included, which were produced for the study "Accelerated shifts in terrestrial life zones under rapid climate change", published in Global Change Biology by Elsen et al. Life zones are determined by distinct combinations of biotemperature and precipitation and represent broad-scale ecosystem types (sensu Holdridge[1]). For the future period, life zone maps were produced using five general circulation models (GCMs: CESM1-BGC, MPI-ESM-MR, ACCESS1-3, MIROC5, and CMCC-CM), each under two representative concentration pathways (RCPs: RCP4.5 and RCP8.5). An ensemble mean across a...
The Geologic TimeScale Creator (TSCreator) project has compiled a range of paleo-environmental and b...
International audienceAim To analyse global patterns of climate during the mid-Holocene and conduct ...
The distribution of global vegetation patterns is strongly related to climate patterns. Local differ...
Rapid climate change is impacting biodiversity, ecosystem function, and human well-being. Though the...
Motivation: In order to understand how species evolutionarily responded to Plio-Pleistocene climate ...
Land-Use Land-cover (LULC) data are important predictors of species occurrence and threat. Although ...
AbstractLife zones are a convenient and quantifiable method for delineating areas with similar plant...
Over the last 15 years bioclimate models have been widely used to predict ecological responses to cl...
Aim Insight into global biome responses to climatic and other environmental changes is essential to ...
Land-use change is a direct driver of biodiversity and carbon storage loss. Projections of future la...
Biomes are important constructs for organizing understanding of how the worlds’ major terrestrial ec...
Life cycles can limit the abilities of species to track changing climatic conditions. We combined ag...
The files included here relate to the paper “Global biome patterns of the Middle and Late Pleistocen...
A global land cover classification data set is used to divide the globe into seven regions to study ...
The datasets are derived from the following article, please cite this article when using the data: ...
The Geologic TimeScale Creator (TSCreator) project has compiled a range of paleo-environmental and b...
International audienceAim To analyse global patterns of climate during the mid-Holocene and conduct ...
The distribution of global vegetation patterns is strongly related to climate patterns. Local differ...
Rapid climate change is impacting biodiversity, ecosystem function, and human well-being. Though the...
Motivation: In order to understand how species evolutionarily responded to Plio-Pleistocene climate ...
Land-Use Land-cover (LULC) data are important predictors of species occurrence and threat. Although ...
AbstractLife zones are a convenient and quantifiable method for delineating areas with similar plant...
Over the last 15 years bioclimate models have been widely used to predict ecological responses to cl...
Aim Insight into global biome responses to climatic and other environmental changes is essential to ...
Land-use change is a direct driver of biodiversity and carbon storage loss. Projections of future la...
Biomes are important constructs for organizing understanding of how the worlds’ major terrestrial ec...
Life cycles can limit the abilities of species to track changing climatic conditions. We combined ag...
The files included here relate to the paper “Global biome patterns of the Middle and Late Pleistocen...
A global land cover classification data set is used to divide the globe into seven regions to study ...
The datasets are derived from the following article, please cite this article when using the data: ...
The Geologic TimeScale Creator (TSCreator) project has compiled a range of paleo-environmental and b...
International audienceAim To analyse global patterns of climate during the mid-Holocene and conduct ...
The distribution of global vegetation patterns is strongly related to climate patterns. Local differ...