How water flow, geometry, and material properties drive plant movements

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Abstract

Plants are dynamic. They adjust their shape for feeding, defence, and reproduction. Such plant movements are critical for their survival. We present selected examples covering a range of movements from single cell to tissue level and over a range of time scales. We focus on reversible turgor-driven shape changes. Recent insights into the mechanisms of stomata, bladderwort, the waterwheel, and the Venus flytrap are presented. The underlying physical principles (turgor, osmosis, membrane permeability, wall stress, snap buckling, and elastic instability) are highlighted, and advances in our understanding of these processes are summarized.

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APA

Morris, R. J., & Blyth, M. (2019, July 23). How water flow, geometry, and material properties drive plant movements. Journal of Experimental Botany. Oxford University Press. https://doi.org/10.1093/jxb/erz167

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