Data for: Modeling the distribution of the endangered Jemez Mountains salamander (Plethodon neomexicanus) in relation to geology, topography, and climate
The Jemez Mountains salamander (Plethodon neomexicanus; hereafter JMS) is an endangered salamander restricted to the Jemez Mountains in north-central New Mexico, United States. This strictly terrestrial species requires moist surface conditions for mating and foraging. Threats to its current habitat...
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Zusammenfassung: | The Jemez Mountains salamander (Plethodon neomexicanus; hereafter JMS) is
an endangered salamander restricted to the Jemez Mountains in
north-central New Mexico, United States. This strictly terrestrial species
requires moist surface conditions for mating and foraging. Threats to its
current habitat include fire suppression and ensuing severe fires, changes
in forest composition, habitat fragmentation, and climate change. Forest
composition changes resulting from reduced fire frequency and increased
tree density suggest that its current aboveground habitat does not mirror
its historically successful habitat regime. We hypothesized that geology
and topography might play a significant role in the current distribution
of the salamander. We modeled the distribution of the JMS using a machine
learning algorithm to assess how geology, topography, and climate
variables influence its distribution. Our habitat suitability map reveals
low uncertainty in model predictions, and we found slight discrepancies
between the designated critical habitat and the most suitable areas for
the JMS. Because geological features are important to its distribution, we
recommend that geological and topographical data are considered, both
during survey design and in the description of localities of JMS records
once detected. |
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DOI: | 10.5061/dryad.9ghx3ffkz |