Comparative monitoring of temporal and spatial changes in tree water status using the non-invasive leaf patch clamp pressure probe and the pressure bomb
S. Rüger(University of Würzburg), U. Zimmermann(Isar-Amper-Klinikum München-Ost), Eran Raveh(Agricultural Research Organization), G. Zimmermann(University of Würzburg), Matthias Arend(Swiss Federal Institute for Forest, Snow and Landscape Research), W. Ehrenberger(University of Würzburg), Arie Nadler(Agricultural Research Organization), P. Geßner(University of Würzburg), Vladimir L. Sukhorukov(University of Würzburg), F.‐W. Bentrup(University of Salzburg), D. Zimmermann(Institute for Development and Economic Analysis)
Cited by 39
Related Papers
Mechanisms of woody-plant mortality under rising drought, CO2 and vapour pressure deficit
|Nature Reviews Earth & Environment|2022|600
Recycled vertical flow constructed wetland (RVFCW)—a novel method of recycling greywater for irrigation in small communities and households
|Chemosphere|2006|276
Non-structural carbohydrates in woody plants compared among laboratories
|Tree Physiology|2015|244
Evidence that differential gene expression between the halophyte, <i>Thellungiella halophila</i>, and <i>Arabidopsis thaliana</i> is responsible for higher levels of the compatible osmolyte proline and tight control of Na<sup>+</sup> uptake in <i>T. halophila</i>
|Plant Cell & Environment|2006|241
Ectomycorrhizal ecology is imprinted in the genome of the dominant symbiotic fungus Cenococcum geophilum
|Nature Communications|2016|178