Diurnal Variations in Photochemical Energy Utilization and Osmotic Adjustments in Black Poplar Leaves Under Progressive Water Stress.
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Black poplar leaves activate photoprotective mechanisms and increase osmolyte accumulation under water stress, with isoprene emission tripling at midday in moderately stressed plants.
- Why it matters: Understanding how woody crops like Populus nigra adapt to drought is crucial for improving resilience and productivity amid climate change-induced water scarcity.
- What they did: The study combined daily physiological measurements and NMR metabolomics on seedlings subjected to moderate and severe water stress, analyzing changes in metabolites and energy dissipation strategies.
- The result: Findings reveal that P. nigra balances photoprotection, osmotic adjustments, and metabolic shifts, such as increased amino acids and antioxidant levels, enabling survival during water deficit conditions.