Biocrust Lichen Effects on Soil Phosphorus Under Simulated Climate Change
by Laura Concostrina‐Zubiri
Available on 1 platform
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Description
A manipulative microcosm experiment evaluated how six biocrust-forming lichen species affect soil available phosphorus and acid phosphatase activity after 50 months of simulated warming and rainfall reduction. The dataset likely contains measurements of inorganic, organic, and total available phosphorus concentrations, as well as enzyme activity data, from a controlled environmental study. It was authored by Laura Concostrina‐Zubiri and shared via Papers with Code.
Use Cases
Modeling soil phosphorus availability based on biocrust species identity and climate variables.
Analyzing the relationship between lichen morphology/chemistry and soil enzyme activity.
Training models to predict nutrient cycling impacts of specific climate change treatments.
Comparing species-specific effects of biocrusts on soil fertility metrics.
Strengths
Data originates from a controlled 50-month manipulative experiment.
Includes results for six distinct lichen species with diverse morphology and chemistry.
Explicitly tests the effects of simulated ~2°C warming and 35% rainfall reduction.
Limitations
Row count and dataset scale are unknown, which may limit suitability assessment.
Column-level documentation is absent; field semantics must be inferred after download.
The dataset's geographic origin and specific soil sample details are not provided.
Provenance
Source
Laura Concostrina‐Zubiri
Collection Method
Manipulative microcosm experiment.
Time Range
Experimental duration of 50 months.
Geography
Likely dryland ecosystems, but specific location not stated.
License is listed as Open Access (green); specific terms should be verified.