Landscape conservation forecasting to evaluate ecological condition and wildlife habitat suitability in eastern Nevada U.S.A.
This study uses state and transition simulation models to evaluate landscape conservation and restoration across eastern Nevada. Researchers examined how vegetation treatments, prescribed fire, climate change, and management investments influence ecological condition, wildfire activity, and Rocky Mountain bighorn sheep habitat suitability over 50 years.
Subject Tags
- Wildlife
- Habitat restoration
- Conservation Planning
Abstract
Introduction
Cooperation among managers of protected areas and federal multiple use lands with private inholdings to increase restoration success and economies of scale creates ecological and regulatory complexity best studied with state-and-transition simulation models (STSM).
Objectives
Project partners asked whether (1) agency budgets are sufficient to lower the dissimilarity between current vegetation and the reference condition, (2) prescribed burning improves bighorn sheep habitat without excess reduction of older subalpine forest classes, (3) vegetation treatments reduce uncharacteristic fire activity, and (4) climate scenarios affect vegetation treatments and bighorn sheep habitat?
Methods
Spatial STSMs were run for a 161,569-ha remote-sensed vegetation map. Partners selected two management scenarios crossed with three 50-year climate projections applied to 22 focal ecological systems with defined objectives, budgets, treatments costs and success rates, and metrics for vegetation and bighorn sheep.
Results
Drier climate suppressed fire but its greater precipitation variability increased fire and avalanche frequency. Treatments decreased area burned at lower elevations where non-native annual fuels facilitated fires. Ecological departure (vegetation dissimilarity) from reference conditions was unchanged when lower elevation seedings included introduced species, but ecological departure decreased with native species seeding. Prescribed fire and increased avalanche frequency increased bighorn sheep habitat suitability.
Citation
Provencher, L., Badik, K.J., Byer, S., Saito, L., Horner, M., Hamilton, B., Clifford, M. and McHugh, D. (2026), Landscape conservation forecasting to evaluate ecological condition and wildlife habitat suitability in eastern Nevada U.S.A.. Restor Ecol e70445. https://doi.org/10.1111/rec.70445
TNC Authors
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Kevin Badik
Rangeland Ecologist
The Nature Conservancy
Email: kevin.badik@tnc.org -
Sarah Byer
Spatial/ GIS Analyst. Nevada
The Nature Conservancy
Email: sarah.byer@tnc.org -
Laurel Saito
Strategy Director Water
The Nature Conservancy
Email: laurel.saito@tnc.org -
Michael Clifford
Nevada Conservation Scientist. Nevada
The Nature Conservancy
Email: michael.clifford@tnc.org -
Devin McHugh
NV and UT Spatial Analyst. Nevada
The Nature Conservancy
Email: devin.mchugh@tnc.org -
Louis Provencher
The Nature Conservancy
Email: lprovencher@tnc.org