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The Science of the Total Environment|August 21, 2017
Short-term effects of spring prescribed burning on the understory vegetation of a Pinushalepensis forest in Northeastern SpainLaura Fuentes, Beatriz Duguy, Daniel Nadal-Sala
Journal of Experimental Botany|July 10, 2024
Overcoming drought: life traits driving tree strategies to confront drought stressDaniel Nadal-Sala, Nadine K Ruehr, Santiago Sabaté
Plant, Cell & Environment|November 5, 2020
Dying by drying: Timing of physiological stress thresholds related to tree death is not significantly altered by highly elevated CO2Marielle Gattmann, Benjamin Birami, Daniel Nadal Sala, et al.
Frontiers in Plant Science|October 29, 2025
Cold and low irradiation shape Polylepis reticulata's seasonal growth and water use dynamics at the Ecuadorian Andean tree lineAldemar Carabajo-Hidalgo, Daniel Nadal-Sala, Byron Poma, et al.
Physiologia Plantarum|October 26, 2023
Relationships between xylem embolism and tree functioning during drought, recovery, and recurring drought in Aleppo pineYael Wagner, Mila Volkov, Daniel Nadal-Sala, et al.
Frontiers in Plant Science|September 20, 2021
Leaf Shedding and Non-Stomatal Limitations of Photosynthesis Mitigate Hydraulic Conductance Losses in Scots Pine Saplings During Severe Drought StressDaniel Nadal-Sala, Rüdiger Grote, Benjamin Birami, et al.
Oecologia|April 9, 2021
Heatwave frequency and seedling death alter stress-specific emissions of volatile organic compounds in Aleppo pineBenjamin Birami, Ines Bamberger, Andrea Ghirardo, et al.
Plant Physiology|October 17, 2022
Anatomical adjustments of the tree hydraulic pathway decrease canopy conductance under long-term elevated CO2Marielle Gattmann, Scott A M McAdam, Benjamin Birami, et al.
Ecological Applications : a Publication of the Ecological Society of America|February 25, 2021
Assessing model performance via the most limiting environmental driver in two differently stressed pine standsDaniel Nadal-Sala, Rüdiger Grote, Benjamin Birami, et al.
Global Change Biology|March 11, 2021
Increasing aridity will not offset CO2 fertilization in fast-growing eucalypts with access to deep soil waterDaniel Nadal-Sala, Belinda E Medlyn, Nadine K Ruehr, et al.
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