Abstract
We investigated the effect of auxin and acetylcholine on the expression of the tomato expansin gene LeEXPA2, a specific expansin gene expressed in elongating tomato hypocotyl segments. Since auxin interferes with clathrin-mediated endocytosis, in order to regulate cellular and developmental responses we produced protoplasts from tomato elongating hypocotyls and followed the endocytotic marker, FM4-64, internalization in response to treatments. Tomato protoplasts were observed during auxin and acetylcholine treatments after transient expression of chimerical markers of volume-control related compartments such as vacuoles. Here we describe the contribution of auxin and acetylcholine to LeEXPA2 expression regulation and we support the hypothesis that a possible subcellular target of acetylcholine signal is the vesicular transport, shedding some light on the characterization of this small molecule as local mediator in the plant physiological response. © 2014 by the authors; licensee MDPI, Basel, Switzerland.
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Di Sansebastiano, G. P., Fornaciari, S., Barozzi, F., Piro, G., & Arru, L. (2014, March 17). New insights on plant cell elongation: A role for acetylcholine. International Journal of Molecular Sciences. MDPI AG. https://doi.org/10.3390/ijms15034565
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