Publication: Kinematics governing mechanotransduction in the sensory hair of the Venus flytrap
Kinematics governing mechanotransduction in the sensory hair of the Venus flytrap
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Saikia, E., Läubli, N. F., Burri, J. T., Rüggeberg, M., Schlepütz, C. M., Vogler, H., Burgert, I., Herrmann, H. J., Nelson, B. J., Grossniklaus, U., & Wittel, F. K. (2020). Kinematics governing mechanotransduction in the sensory hair of the Venus flytrap. International Journal of Molecular Sciences, 22, 280. https://doi.org/10.3390/ijms22010280
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Insects fall prey to the Venus flytrap (Dionaea muscipula) when they touch the sensory hairs located on the flytrap lobes, causing sudden trap closure. The mechanical stimulus imparted by the touch produces an electrical response in the sensory cells of the trigger hair. These cells are found in a constriction near the hair base, where a notch appears around the hair’s periphery. There are mechanosensitive ion channels (MSCs) in the sensory cells that open due to a change in membrane tension; however, the kinematics behind this proces
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Saikia, E., Läubli, N. F., Burri, J. T., Rüggeberg, M., Schlepütz, C. M., Vogler, H., Burgert, I., Herrmann, H. J., Nelson, B. J., Grossniklaus, U., & Wittel, F. K. (2020). Kinematics governing mechanotransduction in the sensory hair of the Venus flytrap. International Journal of Molecular Sciences, 22, 280. https://doi.org/10.3390/ijms22010280