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Adaptation and Response in Drylands (ARID): A Dryland Research Agenda and Campaign StrategyDryland ecosystems cover 41% of Earth’s land surfaces, account for 44% of cultivated lands and 60% of food sources, and make large contributions to the global water and carbon cycles. However, these ecosystems are experiencing unprecedented extremes including heatwaves, floods, and droughts as well as hotter temperatures and often declining water resource availability. These ecosystems are some of the most challenging to monitor given their high temporal variability with rapid response to their environment as well as vast spatial variability with intermixing of different plant species and life forms amongst bare soil coverage. The Adaptation and Response in Drylands (ARID) campaign was selected by National Aeronautics and Space Administration (NASA) as a scoping study to develop a research agenda for a dryland field campaign. Here, we detail our ARID science research agenda and implementation plan that were developed based on an extensive community engagement effort in over 160 events with over a thousand scientists, land managers, and Tribal communities between 2023 and 2024. The selected science themes cover drought and climate variability, ecosystem structure, function, and biodiversity, carbon cycle interannual variability and trends, and social ecological systems (land management and adaptation). We then detail our remote sensing, modeling, and field-based strategies to capture high temporal and high spatial resolution processes. Finally, our implementation strategy is presented which includes focus area selections in a core intensive western U.S. domain and distributed international domains. This strategy includes our overarching guiding principles of using multi-temporal airborne acquisitions and super sites as well as enhancing land management in co-development with end-user partners. While originally developed for NASA, our ARID report creates a blueprint for any future dryland field campaign, at any scale, that can be implemented widely for foundational and applied science objectives.
Document ID
20260006932
Acquisition Source
Goddard Space Flight Center
Document Type
Accepted Manuscript (Version with final changes)
Authors
Andrew F Feldman
(University of Maryland, College Park College Park, United States)
Sasha C Reed
(United States Geological Survey Reston, United States)
Konrad Wessels
(George Mason University Fairfax, United States)
Dennis Ojima
(Colorado State University Fort Collins, United States)
David J P Moore
(University of Arizona Tucson, United States)
William K Smith
(University of Arizona Tucson, United States)
Niall P Hanan ORCID
(New Mexico State University Las Cruces, United States)
Cibele Amaral ORCID
(University of Colorado Boulder Boulder, United States)
Flurin Babst ORCID
(University of Arizona Tucson, United States)
Joel A Biederman
(University of Arizona Tucson, United States)
Marcy Litvak ORCID
(University of New Mexico Albuquerque, United States)
Natasha MacBean
(Western University London, Canada)
Benjamin Poulter
(Goddard Space Flight Center Greenbelt, United States)
Russell L Scott ORCID
(Southwest Watershed Research Center Tucson, United States)
Alicja Babst-Kostecka ORCID
(University of Arizona Tucson, United States)
Julia K Green ORCID
(University of Arizona Tucson, United States)
Raymond F Kokaly ORCID
(United States Geological Survey Reston, United States)
Ryan Pavlick
(National Aeronautics and Space Administration Washington, United States)
Robert Swap
(Goddard Space Flight Center Greenbelt, United States)
Shawn P Serbin ORCID
(Goddard Space Flight Center Greenbelt, United States)
Compton J Tucker
(Goddard Space Flight Center Greenbelt, United States)
Lixin Wang
(Indiana University Indianapolis Indianapolis, United States)
Jennifer Watts
(Woodwell Climate Research Center Falmouth, United States)
Alejandro Flores ORCID
(Boise State University Boise, United States)
James Rattling Leaf Sr.
(University of Colorado Boulder Boulder, United States)
Sativa Cruz
(Bay Area Environmental Research Institute Petaluma, United States)
Nikki Tulley
(Bay Area Environmental Research Institute Petaluma, United States)
Robert A. Washington-Allen ORCID
(University of Nevada, Reno Reno, United States)
Karen Prentice
(Bureau of Land Management Washington, United States)
Emily Kachergis
(Bureau of Land Management Washington, United States)
Julian Reyes
(Bureau of Land Management Washington, United States)
Jasmine Ryan
(United States Geological Survey Reston, United States)
Michael D SanClements
(National Ecological Observatory Network Boulder, United States)
Henry W Loescher
(National Ecological Observatory Network Boulder, United States)
Allison K Leidner
(United States Department of the Interior Washington, United States)
Tyson Swetnam
(University of Arizona Tucson, United States)
Date Acquired
July 28, 2026
Publication Date
July 15, 2026
Publication Information
Publication: Global Change Biology
Publisher: John Wiley & Sons (United Kingdom)
Volume: 32
Issue: 7
Issue Publication Date: July 1, 2026
ISSN: 1354-1013
e-ISSN: 1365-2486
Subject Category
Earth Resources and Remote Sensing
Funding Number(s)
CONTRACT_GRANT: DGECR/00302-2023
CONTRACT_GRANT: RGPIN/05249-2023
CONTRACT_GRANT: DGECR/00302-2023
CONTRACT_GRANT: RGPIN/05249-2023
WBS: 281945.02.66.02.31
Distribution Limits
Public
Copyright
Use by or on behalf of the US Gov. Permitted.
Technical Review
NASA Peer Committee
Keywords
drylands
arid
field campaign
remote sensing
ecology
biosphere
research agenda
land management
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