Cooperative Conservation Actions Improve Sage-Grouse Population Performance within the Bi-State Distinct Population Segment
June 17, 2024
Defend and Grow the Core for Birds: How a Sagebrush Conservation Strategy Benefits Rangeland Birds 
June 17, 2024

Evaluating the Sagebrush Conservation Design Strategy through the Performance of a Sagebrush Indicator Species

Defending Cores is Synonymous with Stable Sage Grouse Populations

Key Findings: Conserving core sagebrush areas is synonymous with conserving at-risk, sagebrush-dependent wildlife. Sage grouse populations remained stable in Core Sagebrush Areas but have declined steeply in degraded sagebrush ecosystems.

Authors

Brian G. Prochazka *

U.S. Geological Survey, Western Ecological Research Center, Dixon, California

John C. Tull

U.S. Fish and Wildlife Service, Science Applications, Reno, Nevada

Carl G. Lundblad *

U.S. Geological Survey, Western Ecological Research Center, Reno, Nevada

Steve C. Abele

U.S. Fish and Wildlife Service, Ecological Services, Reno, Nevada

Kevin E. Doherty

U.S. Fish and Wildlife Service, Science Applications, Evergreen, Colorado & USDA Forest Service Research and Development, Missoula, Montana

Cameron L. Aldridge

U.S. Geological Survey, Fort Collins Science Center, Fort Collins, Colorado

Shawn T. O'Neil

U.S. Geological Survey, Western Ecological Research Center, Dixon, California

Peter S. Coates *

U.S. Geological Survey, Western Ecological Research Center, Dixon, California

*Equal Contributions

Abstract and Keywords

Abstract: Sagebrush ecosystems support a suite of unique species such as the emblematic greater sage-grouse (Centrocercus urophasianus; sage-grouse) but are under increasing pressure from anthropogenic stressors such as annual grass invasion, conifer encroachment, altered wildfire regimes, and land use change. We examined the ability of an ecosystem-based framework for sagebrush conservation, the sagebrush conservation design (SCD) strategy, and the associated model of sagebrush ecological integrity (SEI), to identify and rank priority habitats for sage-grouse, a sagebrush indicator species. We compared sage-grouse population trends from 1996–2021 across the three ranked SEI categories. We then modeled those trends directly as a function of the same landcover predictors underlying SEI, used the median trend estimates to recategorize the sage-grouse's range, and used spatial correlation methods to compare our sage-grouse performance categories with those of SEI. Finally, we compared the sage-grouse condition categories, predicted by our landcover-based model, to empirical trends derived from population count data. We found that the SCD and SEI were effective tools for identifying and ranking priority habitats for sage-grouse. Population trends were stable in the core areas identified by SEI but declining in the lower (i.e., growth and other) condition categories. As a result, core areas encompassed an increasingly larger share of the total sage-grouse population in a disproportionately smaller area. Our model supports the general functional relationships between landcover and sage-grouse performance suggested by SEI. We found strong spatial congruence between our categories of predicted sage-grouse population performance, the condition categories of SEI, and empirical trends derived from population count data. Our analysis demonstrates that proactive ecosystem-based approaches to the conservation of the sagebrush biome can help optimize the return on limited conservation resources and benefits for sagebrush obligate species and help reduce some of the real and perceived conflicts inherent in single-species management.

Keywords: Centrocercus urophasianus; Core areas; Ecosystem integrity; Greater Sage-Grouse; Rate of population change

Citation

Brian G. Prochazka, Carl G. Lundblad, Kevin E. Doherty, Shawn T. O'Neil, John C. Tull, Steve C. Abele, Cameron L. Aldridge, Peter S. Coates, "Evaluating the Sagebrush Conservation Design Strategy Through the Performance of a Sagebrush Indicator Species," Rangeland Ecology & Management, Volume 97, 2024, Pages 146-159, https://doi.org/10.1016/j.rama.2024.08.021

2024 Researcher Presentation

Watch Peter S. Coates' (coauthor) presentation about this article from the Sagebrush Conservation Design Symposia at the 2024 Society for Range Management conference.

Note: Peter's presentation covered two papers, the first half summarizes the research here (Prochazka, et al), the second half summarizes a different article (Coates, et al) that you can find here.

How the sagebrush ecosystem integrity was actually calculated is based on five different variables, three of which threaten the sagebrush ecosystem - tree cover, annual grass invasion and human modification, and two that improve sagebrush ecosystem integrity - sagebrush cover and perennial grasses. And when we modeled sage grouse growth rates in relation to those five variables, we came up with very strong negative effects on the three that affect sagebrush ecosystem integrity and positive effects on the two that improve integrity. What that tells us is that this is a quantifiable approach that links the sagebrush ecosystem integrity index to growth rates of sage grouse. So, protecting the core will in essence protect sage grouse populations because those are the same variables that are actually responsible for the rate of population growth.

- Peter S. Coates (coauthor)

Explore the Research

The special issue of Rangeland Ecology & Management is broken into six themes outlined below. Each theme includes several articles. Navigate through the articles using the layout below by hovering and clicking on the dots at the bottom of each block (each dot is linked to an article that falls within that theme). A complete list of the articles (with links) is also included on the Explore the Research page.

START HERE: THE STATE OF THE SAGEBRUSH

THEME 1
Business-As-Usual Won’t Work to Save the Sagebrush Sea

THEME 2
Better Spatial Targeting Can Improve Outcomes

THEME 3
Conservation Planning is Needed to Develop Realistic Business Plans

THEME 4
Targeted Ecosystem Management: Monitoring Shows Managing for Sagebrush Ecological Integrity is Working

THEME 5
Maintaining Sagebrush Ecological Integrity is Ecologically Relevant

THEME 6
There is Only Hope if We Manage Change

The State of the Sagebrush: Implementing the Sagebrush Conservation Design to Save a Biome
Closing the Conservation Gap in the Sagebrush Biome: Spatial Targeting and Exceptional Coordination are Needed for Conservation Efforts to Keep Pace with Ecosystem Losses
Climate Change Amplifies Ongoing Declines of Sagebrush Ecological Integrity
Well-connected Core Areas Retain Ecological Integrity of Sagebrush Ecosystems Amidst Overall Declines from 2001-2021
A Spatial Prioritization of Conifer Management to Defend and Grow Sagebrush Cores
A Strategic and Science-based Framework for Management of Invasive Annual Grasses in the Sagebrush Biome
Modeling Cropland Conversion Risk to Scale-up Averted Loss of Core Sagebrush Rangelands
Will It Burn? Characterizing Wildfire Risk for the Sagebrush Conservation Design
An Assessment of Conservation Opportunities within Sagebrush Ecosystems of U.S. National Parks and Wildlife Refuges
An Interactive Tool to Promote Stepping Down the Sagebrush Conservation Design to Local Conservation Planning
From a Bird to a Biome: Do Sage Grouse Initiative Efforts Contribute to Conservation of the Sagebrush Ecosystem?
Using Satellite Remote Sensing to Assess Shrubland Vegetation Responses to Largescale Juniper Removal in the Northern Great Basin
Cooperative Conservation Actions Improve Sage-Grouse Population Performance within the Bi-State Distinct Population Segment
Evaluating the Sagebrush Conservation Design Strategy through the Performance of a Sagebrush Indicator Species
Defend and Grow the Core for Birds: How a Sagebrush Conservation Strategy Benefits Rangeland Birds
The Carbon Security Index: A Novel Approach to Assessing How Secure Carbon Is in Sagebrush Ecosystems within the Great Basin
Crossing the Chasm: Using Technical Transfer to Bridge Science Production and Management Action
Assessing Conservation Readiness: The Where, Who, and How of Strategic Conservation in the Sagebrush Biome
Where Do We Go from Here with Sagebrush Conservation: A Long-Term Perspective?
There is No Hope Without Change: A Perspective on How We Conserve the Sagebrush Biome

START HERE: THE STATE OF THE SAGEBRUSH

THEME 1
Business-As-Usual Won’t Work to Save the Sagebrush Sea

THEME 2
Better Spatial Targeting Can Improve Outcomes

THEME 3
Conservation Planning is Needed to Develop Realistic Business Plans

THEME 4
Targeted Ecosystem Management: Monitoring Shows Managing for Sagebrush Ecological Integrity is Working

THEME 5
Maintaining Sagebrush Ecological Integrity is Ecologically Relevant

THEME 6
There is Only Hope if We Manage Change

The State of the Sagebrush: Implementing the Sagebrush Conservation Design to Save a Biome
Closing the Conservation Gap in the Sagebrush Biome: Spatial Targeting and Exceptional Coordination are Needed for Conservation Efforts to Keep Pace with Ecosystem Losses
Climate Change Amplifies Ongoing Declines of Sagebrush Ecological Integrity
Well-connected Core Areas Retain Ecological Integrity of Sagebrush Ecosystems Amidst Overall Declines from 2001-2021
A Spatial Prioritization of Conifer Management to Defend and Grow Sagebrush Cores
A Strategic and Science-based Framework for Management of Invasive Annual Grasses in the Sagebrush Biome
Modeling Cropland Conversion Risk to Scale-up Averted Loss of Core Sagebrush Rangelands
Will It Burn? Characterizing Wildfire Risk for the Sagebrush Conservation Design
An Assessment of Conservation Opportunities within Sagebrush Ecosystems of U.S. National Parks and Wildlife Refuges
An Interactive Tool to Promote Stepping Down the Sagebrush Conservation Design to Local Conservation Planning
From a Bird to a Biome: Do Sage Grouse Initiative Efforts Contribute to Conservation of the Sagebrush Ecosystem?
Using Satellite Remote Sensing to Assess Shrubland Vegetation Responses to Largescale Juniper Removal in the Northern Great Basin
Cooperative Conservation Actions Improve Sage-Grouse Population Performance within the Bi-State Distinct Population Segment
Evaluating the Sagebrush Conservation Design Strategy through the Performance of a Sagebrush Indicator Species
Defend and Grow the Core for Birds: How a Sagebrush Conservation Strategy Benefits Rangeland Birds
The Carbon Security Index: A Novel Approach to Assessing How Secure Carbon Is in Sagebrush Ecosystems within the Great Basin
Crossing the Chasm: Using Technical Transfer to Bridge Science Production and Management Action
Operationalizing Strategic Conservation: A Multi-level Framework to Identify Opportunities and Actions
Where Do We Go from Here with Sagebrush Conservation: A Long-Term Perspective?
There is No Hope Without Change: A Perspective on How We Conserve the Sagebrush Biome