1. Climate change is expected to cause several impacts at the global scale and drylands will be among the most affected areas. Thus, investigating how these changes will affect the composition, structure and functioning of dryland ecosystems has become a priority. From an ecological indicator point of view, several works have shown that functional diversity is better than species richness to understand ecosystem functioning or response to environmental factors. However most of these works focus on plants while those of other organisms remain largely unknown. Lichens are amongst the ecosystem components more sensitive to climatic changes due to several physiological and ecological characteristics. Their poikilohydric nature (therefore highly...
The Atacama Desert is one of the driest and probably oldest deserts on Earth where only a few extrem...
Biocrusts, topsoil communities formed by mosses, lichens, liverworts, algae, and cyanobacteria, are ...
In this paper, we investigated whether growth form and substrate in lichens influence their physiolo...
1. Climate change is expected to cause several impacts at the global scale and drylands will be amon...
1. Climate change is expected to cause several impacts at the global scale, and drylands will be amo...
Biological soil crusts (BSCs) are key biotic components of dryland ecosystems worldwide that control...
Assessing the ecological impacts of environmental change on biological communities requires knowledg...
Carbon-concentrating mechanisms (CCMs) are a widespread phenomenon in photosynthetic organisms. In v...
This thesis focuses on the impact of climate change in alpine ecosystems stressing the response of h...
Biocrusts are key drivers of ecosystem functioning in drylands, yet our understanding of how climate...
We explored the influence of climatic factors on diversity patterns of multiple taxa (lichens, bryop...
Lichens are symbiotic organisms sensitive to climate change and susceptible to a severe decline in d...
Assessing the ecological impacts of environmental change on biological communities requires knowledg...
Functional traits influence how an organism responds to its environment and how this can affect ecos...
The Atacama Desert is one of the driest and probably oldest deserts on Earth where only a few extrem...
Biocrusts, topsoil communities formed by mosses, lichens, liverworts, algae, and cyanobacteria, are ...
In this paper, we investigated whether growth form and substrate in lichens influence their physiolo...
1. Climate change is expected to cause several impacts at the global scale and drylands will be amon...
1. Climate change is expected to cause several impacts at the global scale, and drylands will be amo...
Biological soil crusts (BSCs) are key biotic components of dryland ecosystems worldwide that control...
Assessing the ecological impacts of environmental change on biological communities requires knowledg...
Carbon-concentrating mechanisms (CCMs) are a widespread phenomenon in photosynthetic organisms. In v...
This thesis focuses on the impact of climate change in alpine ecosystems stressing the response of h...
Biocrusts are key drivers of ecosystem functioning in drylands, yet our understanding of how climate...
We explored the influence of climatic factors on diversity patterns of multiple taxa (lichens, bryop...
Lichens are symbiotic organisms sensitive to climate change and susceptible to a severe decline in d...
Assessing the ecological impacts of environmental change on biological communities requires knowledg...
Functional traits influence how an organism responds to its environment and how this can affect ecos...
The Atacama Desert is one of the driest and probably oldest deserts on Earth where only a few extrem...
Biocrusts, topsoil communities formed by mosses, lichens, liverworts, algae, and cyanobacteria, are ...
In this paper, we investigated whether growth form and substrate in lichens influence their physiolo...