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Plant, Cell & Environment|June 11, 2008
Stomatal responses to humidity in isolated epidermesJoseph C Shope, David Peak, Keith A MottJournal of Experimental Botany|November 8, 2006
Membrane trafficking and osmotically induced volume changes in guard cellsJoseph C Shope, Keith A MottProceedings of the National Academy of Sciences of the United States of America|November 23, 2011
Alternative perspective on the control of transpiration by radiationKeith A Mott, David PeakPlant, Cell & Environment|March 5, 2010
Stomatal responses to humidity and temperature in darknessKeith A Mott, David PeakPlant, Cell & Environment|October 1, 2010
A new, vapour-phase mechanism for stomatal responses to humidity and temperatureDavid Peak, Keith A MottPlant, Cell & Environment|August 4, 2018
Effects of the mesophyll on stomatal responses in amphistomatous leavesKeith A Mott, David PeakAnnals of Botany|November 7, 2006
Stomatal patchiness and task-performing networksKeith A Mott, David PeakPlant, Cell & Environment|October 18, 2012
Testing a vapour-phase model of stomatal responses to humidityKeith A Mott, David PeakPlant 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