Nighttime transpiration of Populus euphratica during different phenophases
Author:
Publisher
Springer Science and Business Media LLC
Subject
Forestry
Link
http://link.springer.com/content/pdf/10.1007/s11676-018-0672-z.pdf
Reference36 articles.
1. Aishan T, Halik Ü, Betz F (2016) Modeling height-diameter relationship for Populus euphratica in the Tarim riparian forest ecosystem, Northwest China. J For Res 27(4):889–900
2. Benyon RG (1999) Nighttime water use in an irrigated Eucalyptus grandis plantation. Tree Physiol 19:853–859
3. Bucci SJ, Scholz FG, Goldstein G (2004) Processes preventing nocturnal equilibration between leaf and soil water potential in tropical savanna woody species. Tree Physiol 24:1119–1127
4. Bucci SJ, Goldstein G, Meinzer FC (2005) Mechanisms contributing to seasonal homeostasis of minimum leaf water potential and predawn disequilibrium between soil and plant water potential in Neotropical savanna trees. Trees 19:296–304
5. Buckley TN, Turnbull TL, Pfautsch S (2011) Nocturnal water loss in mature subalpine Eucalyptus delegatensis tall open forests and adjacent E. pauciflora woodlands. Ecol Evol 20:435–450
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