Divergent climate change effects on widespread dryland plant communities driven by climatic and ecohydrological gradients
Description
We used an individual-based plant simulation model that represents intra- and inter-specific competition for water availability, which is represented by a process-based soil water balance model. For dominant plant functional types, we quantified changes in biomass and characterized agreement among 52 future climate scenarios. We then used a multivariate matching algorithm to generate fine-scale interpolated surfaces of functional type biomass for our study area.
Resources
| Name |
Format |
Description |
Link |
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0 |
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https://doi.org/10.1111/gcb.15776 |
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55 |
The metadata original source |
https://data.doi.gov/harvest/object/f765c221-7ac7-4c62-9f12-7e3179a56eb2 |
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0 |
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https://doi.org/10.5061/dryad.3tx95x6ht |
Tags
- community-dynamics
- sagebrush
- warming
- artemisia-tridentata
- dryland
- climate-change
- ecohydrology
- biological-sciences
- individual-based-model