The aim of this study is to analyse the vascular flora and the local climate along an altitudinal gradient in the Lefka Ori massif Crete and to evaluate the potential effects of climate change on the plant diversity of the sub-alpine and alpine zones. It provides a quantitative/qualitative analysis of vegetation-environment relationships for four summits along an altitude gradient on the Lefka Ori massif Crete (1664-2339 m). The GLORIA multi-summit approach was used to provide vegetation and floristic data together with temperature records for every summit. Species richness and species turnover was calculated together with floristic similarity between the summits. 70 species were recorded, 20 of which were endemic, belonging to 23 different...
Aim In the alpine life zone, plant diversity is strongly determined by local topography and microcli...
High-elevation habitats host a large number of plant species and are characterized by high biodivers...
Climate change will fundamentally affect the vegetation in high elevations. Via long term monitoring...
The aim of this study is to analyse the vascular flora and the local climate along an altitudinal gr...
High mountain zones in the Mediterranean area are considered more vulnerable in comparison to lower ...
Aim The aim of this study was to explore the environmental factors that determine the spatial distri...
<div><p>Understanding diversity patterns along environmental gradients and their underlying mechanis...
High-mountain plant communities are strongly determined by abiotic conditions, especially low temper...
The aim of this study is to analyse the vascular flora and the local climate along the altitude grad...
This thesis focuses on the impact of climate change in alpine ecosystems stressing the response of h...
In the alpine life zone, plant diversity is strongly determined by local topography and microclimate...
In the alpine life zone, plant diversity is strongly determined by local topography and microclimate...
Plant diversity in the Southern Alps (Dolomites, South Tyrol and Trentino, Italy) and in the Central...
The effects of the rise and fall of the dialy and annual temperature range the fall of atmospheric p...
Aim In the alpine life zone, plant diversity is strongly determined by local topography and microcli...
Aim In the alpine life zone, plant diversity is strongly determined by local topography and microcli...
High-elevation habitats host a large number of plant species and are characterized by high biodivers...
Climate change will fundamentally affect the vegetation in high elevations. Via long term monitoring...
The aim of this study is to analyse the vascular flora and the local climate along an altitudinal gr...
High mountain zones in the Mediterranean area are considered more vulnerable in comparison to lower ...
Aim The aim of this study was to explore the environmental factors that determine the spatial distri...
<div><p>Understanding diversity patterns along environmental gradients and their underlying mechanis...
High-mountain plant communities are strongly determined by abiotic conditions, especially low temper...
The aim of this study is to analyse the vascular flora and the local climate along the altitude grad...
This thesis focuses on the impact of climate change in alpine ecosystems stressing the response of h...
In the alpine life zone, plant diversity is strongly determined by local topography and microclimate...
In the alpine life zone, plant diversity is strongly determined by local topography and microclimate...
Plant diversity in the Southern Alps (Dolomites, South Tyrol and Trentino, Italy) and in the Central...
The effects of the rise and fall of the dialy and annual temperature range the fall of atmospheric p...
Aim In the alpine life zone, plant diversity is strongly determined by local topography and microcli...
Aim In the alpine life zone, plant diversity is strongly determined by local topography and microcli...
High-elevation habitats host a large number of plant species and are characterized by high biodivers...
Climate change will fundamentally affect the vegetation in high elevations. Via long term monitoring...