Tree hydrological niche acclimation through ontogeny in a seasonal Amazon forest
Author:
Funder
U.S. National Science Foundation
Serrapilheira Institute
USDA
Publisher
Springer Science and Business Media LLC
Subject
Plant Science,Ecology
Link
https://link.springer.com/content/pdf/10.1007/s11258-023-01361-x.pdf
Reference87 articles.
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2. Barros FV, Bittencourt PRL, Brum M, Restrepo-Coupe N, Pereira L, Teodoro GS, Saleska SR, Borma LS, Christoffersen BO, Penha D, Alves LF, Lima AJN, Carneiro VMC, Gentine P, Lee J, Aragão LEOC, Ivanov V, Leal LSM, Araujo AC, Oliveira RS (2019) Hydraulic traits explain differential responses of Amazonian forests to the 2015 El Nino-induced drought. New Phytol 223:1253–1266
3. Bittencourt PRL, Oliveira RS, da Costa ACL, Giles AL, Coughlin I, Costa PB, Bartholomew DC, Ferreira LV, Vasconcelos SS, Barros FV, Junior JAS, Oliveira AAR, Mencuccini M, Meir P, Rowland L (2020) Amazonia trees have limited capacity to acclimate plant hydraulic properties in response to long-term drought. Glob Change Biol 26:3569–3584
4. Bittencourt PR, Pereira L, Oliveira RS (2018) Pneumatic method to measure plant xylem embolism. Bio-Protoc 8(20):e3059–e3059
5. Brienen RJW, Gloor E, Clerici S, Newton R, Arppe L, Boom A, Bottrell S, Callaghan M, Heaton T, Helama S, Helle G, Leng MJ, Mielikäinen K, Oinonen M, Timonen M (2017) Tree height strongly affects estimates of water-use efficiency responses to climate and CO2 using isotopes. Nat Commun 8:1–10. https://doi.org/10.1038/s41467-017-00225-z
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