Background and aims: Functional traits are promising indicators of global changes and ecosystem processes. Trait responses to environmental conditions have been examined widely in vascular plants. In contrast, few studies have focused on soil lichens and mosses composing biocrusts. We aimed to evaluate the potential of biocrust tissue traits as indicators of changes in climate and soil properties. Methods: Isotope ratios and nutrient content in biocrust tissue were analyzed in 13 Mediterranean shrublands along an aridity gradient. Differences in tissue traits between biocrust groups (lichens and mosses), and relationships between tissue traits and climatic and soil variables were examined. Results: Lichens and mosses differed in δ13C, δ15N ...
Increasing N inputs and changing rainfall regimes will lead to drastic changes in multiple ecosystem...
Understanding patterns of habitat natural recovery after human-made disturbances is critical for the...
1. Climate change is expected to cause several impacts at the global scale, and drylands will be amo...
Biocrusts are key drivers of ecosystem functioning in drylands, yet our understanding of how climate...
1. Climate change is expected to cause several impacts at the global scale and drylands will be amon...
The increase in aridity predicted with climate change will have a negative impact on the multiple fu...
The availability of metallic nutrients in dryland soils, many of which are essential for the metabol...
Functional traits influence how an organism responds to its environment and how this can affect ecos...
Biocrusts are key drivers of ecosystem functioning in drylands, yet our understanding of how climate...
International audienceIdentifying consistent and predictable associations between traits and environ...
Biological soil crusts (BSCs) are key biotic components of dryland ecosystems worldwide that control...
The availability of metallic nutrients in dryland soils, many of which are essential for the metabol...
Functional traits are recognized as potential predictors of plant community responses to climate cha...
The importance of biological soil crusts (biocrusts) for the biogeochemistry of drylands is widely r...
Biocrusts are an essential soil surface cover at drylands where ecosystems are especially fragile to...
Increasing N inputs and changing rainfall regimes will lead to drastic changes in multiple ecosystem...
Understanding patterns of habitat natural recovery after human-made disturbances is critical for the...
1. Climate change is expected to cause several impacts at the global scale, and drylands will be amo...
Biocrusts are key drivers of ecosystem functioning in drylands, yet our understanding of how climate...
1. Climate change is expected to cause several impacts at the global scale and drylands will be amon...
The increase in aridity predicted with climate change will have a negative impact on the multiple fu...
The availability of metallic nutrients in dryland soils, many of which are essential for the metabol...
Functional traits influence how an organism responds to its environment and how this can affect ecos...
Biocrusts are key drivers of ecosystem functioning in drylands, yet our understanding of how climate...
International audienceIdentifying consistent and predictable associations between traits and environ...
Biological soil crusts (BSCs) are key biotic components of dryland ecosystems worldwide that control...
The availability of metallic nutrients in dryland soils, many of which are essential for the metabol...
Functional traits are recognized as potential predictors of plant community responses to climate cha...
The importance of biological soil crusts (biocrusts) for the biogeochemistry of drylands is widely r...
Biocrusts are an essential soil surface cover at drylands where ecosystems are especially fragile to...
Increasing N inputs and changing rainfall regimes will lead to drastic changes in multiple ecosystem...
Understanding patterns of habitat natural recovery after human-made disturbances is critical for the...
1. Climate change is expected to cause several impacts at the global scale, and drylands will be amo...