Compensatory Carbon Gain under Extreme Atmospheric Drought
Le résumé fourni par la source
This repository contains the datasets supporting the study on long-term physiological and structural acclimation of Pinus halepensis to sustained drought alleviation under Mediterranean climate conditions. The data were collected from a multi-year irrigation experiment designed to investigate how reduced soil water limitation interacts with high atmospheric evaporative demand (vapor pressure deficit, VPD) to influence tree function and water use strategies.The repository includes measurements of:Leaf gas exchange parameters (photosynthesis, transpiration, stomatal conductance)Sap flow Soil water content and environmental variablesClimatic variables, including temperature, radiation, humidity, and VPDData were collected from irrigated and control plots across multiple seasons and years, enabling analyses of short- and long-term responses to altered water availability. The datasets support investigations of plant water relations, carbon assimilation, stomatal regulation, drought responses, and ecosystem acclimation under climate change scenarios.
Ce résumé expose les affirmations des auteurs. BNTIC ne l’interprète pas comme une validation indépendante des résultats.