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Systemic effects of rising atmospheric vapor pressure deficit on plant physiology and productivity.
López J, Way DA, Sadok W. López J, et al. Glob Chang Biol. 2021 May;27(9):1704-1720. doi: 10.1111/gcb.15548. Epub 2021 Mar 8. Glob Chang Biol. 2021. PMID: 33683792 Free PMC article. Review.
Our analysis confirms predictions arising from the hydraulic corollary to Darcy's law, outlines a systemic physiological framework of plant responses to rising VPD, and provides recommendations for future research to better understand and mitigate VPD-mediated climate chan …
Our analysis confirms predictions arising from the hydraulic corollary to Darcy's law, outlines a systemic physiological framework of plant …
Variability in temperature-independent transpiration responses to evaporative demand correlate with nighttime water use and its circadian control across diverse wheat populations.
Tamang BG, Schoppach R, Monnens D, Steffenson BJ, Anderson JA, Sadok W. Tamang BG, et al. Planta. 2019 Jul;250(1):115-127. doi: 10.1007/s00425-019-03151-0. Epub 2019 Apr 3. Planta. 2019. PMID: 30941570
Nocturnal transpiration, through its circadian control, plays a role in modulating daytime transpiration response to increasing evaporative demand, to potentially enable drought tolerance in wheat. Limiting plant transpiration rate (TR) in response to increasing vapor pres …
Nocturnal transpiration, through its circadian control, plays a role in modulating daytime transpiration response to increasing evaporative …