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Stomatal responses in grapevine become increasingly more tolerant to low water potentials throughout the growing season

作者:José Herrera, Alberto Calderan, Gregory A. Gambetta, E. Peterlunger, Astrid Forneck, Paolo Sivilotti, Hervé Cochard, Uri Hochberg · 发表于:The Plant Journal · 年份:2021 · DOI:10.1111/tpj.15591 · 被引用次数:61 · 研究领域:Horticultural and Viticultural Research、Plant Water Relations and Carbon Dynamics、Fermentation and Sensory Analysis

SUMMARY The leaf of a deciduous species completes its life cycle in a few months. During leaf maturation, osmolyte accumulation leads to a significant reduction of the turgor loss point (Ψ TLP ), a known marker for stomatal closure. Here we exposed two grapevine cultivars to drought at three different times during the growing season to explore if the seasonal decrease in leaf Ψ TLP influences the stomatal response to drought. The results showed a significant seasonal shift in the response of stomatal conductance to stem water potential (g s ~Ψ stem ), demonstrating that grapevines become increasingly tolerant to low Ψ stem as the season progresses in coordination with the decrease in Ψ TLP . We also used the SurEau hydraulic model to demonstrate a direct link between osmotic adjustment and the plasticity of g s ~Ψ stem . To understand the possible advantages of g s ~Ψ stem plasticity, we incorporated a seasonally dynamic leaf osmotic potential into the model that simulated stomatal conductance under several water availabilities and climatic scenarios. The model demonstrated that a seasonally dynamic stomatal closure threshold results in trade‐offs: it reduces the time to turgor loss under sustained long‐term drought, but increases overall gas exchange particularly under seasonal shifts in temperature and stochastic water availability. A projected hotter future is expected to lower the increase in gas exchange that plants gain from the seasonal shift in g s ~Ψ stem . These fin...