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Proceedings of the National Academy of Sciences of the United States of America|January 21, 2004
Evidence for complex, collective dynamics and emergent, distributed computation in plantsDavid Peak, Jevin D West, Susanna M Messinger, et al.Plant, Cell & Environment|July 25, 2009
Opinion: stomatal responses to light and CO(2) depend on the mesophyllKeith A MottPlant, Cell & Environment|September 28, 2007
Leaf hydraulic conductivity and stomatal responses to humidity in amphistomatous leavesKeith A MottPlant Physiology|May 18, 2010
Stomatal responses to flooding of the intercellular air spaces suggest a vapor-phase signal between the mesophyll and the guard cellsErik Sibbernsen, Keith A MottPlant, Cell & Environment|June 5, 2013
Modelling stomatal conductance in response to environmental factorsThomas N Buckley, Keith A MottJournal of Experimental Botany|November 8, 2006
Membrane trafficking and osmotically induced volume changes in guard cellsJoseph C Shope, Keith A MottOecologia|March 18, 2017
Carbon-water balance and patchy stomatal conductanceThomas N Buckley, Graham D Farquhar, Keith A MottPlant Physiology|January 13, 2006
Evidence for involvement of photosynthetic processes in the stomatal response to CO2Susanna M Messinger, Thomas N Buckley, Keith A MottPlant Physiology|October 11, 2003
Changes in surface area of intact guard cells are correlated with membrane internalizationJoseph C Shope, Daryll B DeWald, Keith A MottPlant, Cell & Environment|June 11, 2008
The role of the mesophyll in stomatal responses to light and CO2Keith A Mott, Erik D Sibbernsen, Joseph C ShopePageof 4