Range-wide population trend analysis for greater sage-grouse (Centrocercus urophasianus)—Updated 1960–2025
Greater sage-grouse (Centrocercus urophasianus; hereafter sage-grouse) are at the center of State and national land-use policies largely because of their unique life-history traits as an ecological indicator for the health of sagebrush ecosystems. This updated population analysis provides State and Federal land and wildlife managers with the best available science to help guide management and conservation plans aimed at benefitting sage-grouse populations and the ecosystems they inhabit. This analysis relied on previously published population modeling methodology from Coates and others (2021, 2022a) and incorporates population lek count data for 1960–2025. Included in this report are methodological updates to period terminology, expanded reporting of trends across all nadir-to-nadir combinations, and revised extirpation probability estimation that utilizes every historic population nadir to forecast abundance. Each of these updates are detailed under individual Modification sections. Additional updates include simulation analyses that evaluate the effects of progressively longer exclusions of Wyoming lek count data (Wyoming Game and Fish Department has not provided access to a complete lek count data set since 2023) on trends, extirpation probabilities, and targeted annual warning system signals.
State-space models estimated a 2.7-percent average annual decline in sage-grouse populations between 1966 and 2021 (Period 1–7, six population oscillations) across their geographical range. The average annual decline among climate clusters for the same number of oscillations ranged between 2.0 and 3.5 percent. Cumulative declines were 42.4, 61.7, and 77.9 percent range-wide in Period 5–7 (19 years [two oscillations]), Period 3–7 (36 years [four oscillations]), and Period 1–7 (55 years), respectively. Between 2024 and 2025 (1-year, non-trend timeframe), range-wide population size declined 1.9 percent (95-percent credible interval [CRI]= −4.71–1.48).
Simulations of missing data from Wyoming showed that progressively longer gaps produced more negative trend estimates and higher extirpation probabilities, predominantly within Wyoming. Effects on targeted annual warning system signals were more nuanced, with missed warnings occurring inside and outside Wyoming and false warnings occurring predominantly within Wyoming.
Citation Information
| Publication Year | 2026 |
|---|---|
| Title | Range-wide population trend analysis for greater sage-grouse (Centrocercus urophasianus)—Updated 1960–2025 |
| DOI | 10.3133/dr1234 |
| Authors | Brian G. Prochazka, Peter S. Coates, Cameron L. Aldridge, Michael S. O’Donnell, Adrian P. Monroe, Steve E. Hanser, John C. Tull, Lief A. Wiechman, Michael P. Chenaille, Michael T. Atamian, Kathy A. Griffin, Heather F. Harris, Jesse L. Kolar, Katherine S. Miller, Michael A. Schroeder, Justin R. Small, Alex J. Solem, Jennifer L. Struthers, Heather L. Talley, Skyler T. Vold |
| Publication Type | Report |
| Publication Subtype | USGS Numbered Series |
| Series Title | Data Report |
| Series Number | 1234 |
| Index ID | dr1234 |
| Record Source | USGS Publications Warehouse |
| USGS Organization | Western Ecological Research Center |