Sensitivity of regional evapotranspiration partitioning to variation in woody plant cover: insights from experimental dryland tree mosaics
Juan Camilo Villegas(Universidad de Antioquia), Travis E. Huxman(University of California, Irvine), Chris B. Zou(Oklahoma State University), Maite Guardiola‐Claramonte(University of Arizona), Henry D. Adams(Washington State University), David D. Breshears(University of Arizona), Evan D. Sommer(University of Arizona), Francina Domínguez(University of Arizona), Javier F. Espeleta(University of Arizona), Greg A. Barron‐Gafford(University of Arizona), Ashley Wiede Selvey(University of Arizona)
Cited by 36
Related Papers
Regional vegetation die-off in response to global-change-type drought
|Proceedings of the National Academy of Sciences|2005|2.2k
A multi-species synthesis of physiological mechanisms in drought-induced tree mortality
|Nature Ecology & Evolution|2017|1.1k
Temperature sensitivity of drought-induced tree mortality portends increased regional die-off under global-change-type drought
|Proceedings of the National Academy of Sciences|2009|1k
ECOHYDROLOGICAL IMPLICATIONS OF WOODY PLANT ENCROACHMENT
|Ecology|2005|757
Global field observations of tree die-off reveal hotter-drought fingerprint for Earth’s forests
|Nature Communications|2022|664