Biologia plantarum 50:411-416, 2006 | DOI: 10.1007/s10535-006-0058-5
Effects of ion channel inhibitors on cold- and electrically-induced action potentials in Dionaea muscipula
- 1 Department of Biophysics, Institute of Biology, Maria Curie-Sklodowska University, Lublin, Poland
Glass microelectrodes were inserted into Dionaea muscipula (Venus flytrap) lobes and the action potentials (APs) were recorded in response to a sudden temperature drop or a direct current (DC) application. The effect of potassium channel inhibitor, tetraethylammonium ion, was the lengthening of the depolarization phase of AP. APs were also affected by the anion channel inhibitor, anthracene-9-carboxylic acid, that made them slower and smaller. Neomycin, which disturbs inositol triphosphate-dependent Ca2+ release, caused the visible inhibition of AP, too. Ruthenium red, which blocks cyclic ADP-ribose-dependent Ca2+ release, totally inhibited DC-triggered APs and induced the decrease in the amplitudes of cold-evoked APs. Lanthanum ions significantly inhibited both cold- and DC-induced membrane potential changes. It was concluded that during excitation Dionaea muscipula relied upon the calcium influxes from both the extra- and intracellular compartments.
Keywords: calcium; cyclic ADP-ribose; inositol triphosphate; phospholipase C; tetraethylammonium ion; Venus flytrap
Subjects: calcium; carnivorous plant; cyclic ADP-ribose; Dionaea muscipula; phospholipase; Venus flytrap
Received: October 15, 2004; Accepted: June 20, 2005; Published: September 1, 2006 Show citation
| ACS | AIP | APA | ASA | Harvard | Chicago | Chicago Notes | IEEE | ISO690 | MLA | NLM | Turabian | Vancouver |
References
- Allen, G.J., Muir, S.R., Sanders, D.: Release of Ca2+ from individual plant vacuoles by both InsP3 and cyclic ADP-ribose.-Science 268: 735-737, 1995.
Go to original source... - Anil, V.S., Rao, K.S.: Calcium mediated signal transduction in plants: a perspective on the role of Ca2+ and CDPKs during early plant development.-J. Plant Physiol. 158: 1237-1256, 2001.
Go to original source... - Bauer, C.S., Plieth, C., Bethmann, B., Popescu, O., Hansen, U.P., Simonis, W., Schonknecht, G.: Strontium-induced repetitive calcium spikes in a unicellular green alga.-Plant Physiol. 117: 545-557, 1998.
Go to original source... - Beilby, M.J.: Calcium and plant action potentials.-Plant Cell Environ. 7: 415-421, 1984.
Go to original source... - Biskup, B., Gradmann, D., Thiel, G.: Calcium release from InsP3-sensitive internal stores initiates action potential in Chara.-FEBS Lett. 453: 72-76, 1999.
Go to original source... - Browse, J., Xin, Z.: Temperature sensing and cold acclimation.-Curr. Opinion Plant Biol. 4: 241-246, 2001.
Go to original source... - Chinnusamy, V., Schumaker, K., Zhu, J.-K.: Molecular genetic perspectives on cross-talk and specificity in abiotic stress signalling in plants.-J. exp. Bot. 55: 225-236, 2004.
Go to original source... - Dziubinska, H.: Ways of signal transmission and physiological role of electrical potentials in plants.-Acta Soc. Bot. Pol. 4: 309-318, 2003.
Go to original source... - Favre, P., Krol, E., Stolarz, M., Szarek, I., Greppin, H., Trebacz, K., Degli Agosti, R.: Action potentials elicited in the liverwort Conocephalum conicum (Hepaticae) with different stimuli.-Arch. Sci. 52: 175-185, 1999.
- Fisahn, J., Herde, O., Willmitzer, L., Pena-Cortes, H.: Analysis of the transient increases in cytosolic Ca2+ during action potential of higher plants with high temporal resolution: requirement of Ca2+ transients for induction of jasmonic acid biosynthesis and PINII gene expression.-Plant Cell Physiol. 45: 456-459, 2004.
Go to original source... - Hodick, D., Sievers, A.: The influence of Ca2+ on the action potential in mesophyll cells of Dionaea muscipula Ellis.-Protoplasma 133: 83-84, 1986.
Go to original source... - Hodick, D., Sievers, A.: The action potential of Dionaea muscipula Ellis.-Planta 174: 8-18, 1988.
Go to original source... - Hodick, D., Sievers, A.: On the mechanism of trap closure of Venus flytrap (Dionaea muscipula Ellis).-Planta 179: 32-42, 1989.
Go to original source... - Huner, N.P.A., Oquist, G., Sarhan, F.: Energy balance and acclimation to light and cold.-Trends Plant Sci. 3: 224-230, 1998.
Go to original source... - Iijima, T., Sibaoka, T.: Membrane potentials in excitable cells of Aldrovanda vesiculosa trap-lobes.-Plant Cell Physiol. 26: 1-13, 1985.
- Kikuyama, M., Oda, K., Shimmen, T., Tazawa, M.: Potassium and chloride effluxes during excitation of Characeae cells.-Plant Cell Physiol. 25: 965-974, 1984.
- Kikuyama, M., Tazawa, M.: Transient increase of intracellular Ca2+ during excitation of tonoplast-free Chara cells.-Protoplasma 117: 62-67, 1983.
Go to original source... - Knight, H., Knight, M.R.: Abiotic stress signalling pathways: specificity and cross-talk.-Trends Plant Sci. 6: 262-267, 2001.
Go to original source... - Knight, M.R.: Signal transduction leading to low-temperature tolerance in Arabidopsis thaliana.-Phil. Trans. roy. Soc. London B Biol. Sci. 357: 871-875, 2002.
Go to original source... - Krol, E., Dziubinska, H., Trebacz, K.: Low-temperature induced transmembrane potential changes in the liverwort Conocephalum conicum.-Plant Cell Physiol. 44: 527-533, 2003.
Go to original source... - Krol, E., Dziubinska H., Trebacz K.: Low-temperature induced transmembrane potential changes in mesophyll cells of Arabidopsis thaliana, Helianthus annuus and Vicia faba.-Physiol. Plant. 120: 265-270, 2004.
Go to original source... - Krol, E., Trebacz, K.: Calcium-dependent voltage transients evoked by illumination in the liverwort Conocephalum conicum.-Plant Cell Physiol. 40: 17-24, 1999.
Go to original source... - Lunevsky, V.Z., Zherelova, O.M., Vostrikov, I.Y., Berestovsky, G.N.: Excitation of Characeae cell membranes as a result of activation of calcium and chloride channels.-J. Membrane Biol. 72: 43-58, 1983.
Go to original source... - Monroy, A.F., Dhindsa, R.S.: Low-temperature signal transduction: induction of cold acclimation-specific genes of alfalfa by calcium at 25 °C.-Plant Cell 7: 321-331, 1995.
Go to original source... - Muir, S.R., Bewell, M.A., Sanders, D., Allen, G.J.: Ligand-gated Ca2+ channels and signalling in higher plants.-J. exp. Bot. 48: 589-597, 1997.
Go to original source... - Muir, S.R., Sanders, D.: Pharmacology of Ca2+ release from red beet microsomes suggests the presence of ryanodine receptor homologs in higher plants.-FEBS Lett. 255: 92-96, 1996.
Go to original source... - Murata, N., Los, D.A.: Membrane fluidity and temperature perception.-Plant Physiol. 115: 875-879, 1997.
Go to original source... - Ng, C.K-Y., McAinsh, M.R.: Encoding specificity in plant calcium signalling: hot-spotting the ups and downs and waves.-Ann. Bot. 92: 477-485, 2003.
Go to original source... - Ovary, B.L., Sangwan, V., Omann, F., Dhindsa, R.: Early steps in cold sensing by plant cell: the role of actin cytoskeleton and membrane fluidity.-Plant J. 23: 785-794, 2000.
Go to original source... - Plieth, C.: Temperature sensing by plants: calcium-permeable channels as primary sensors-a model.-J. Membrane Biol. 172: 121-127, 1999.
Go to original source... - Plieth, C., Hansen, U.-P., Knight, H., Knight, M.R.: Temperature sensing by plants: the primary characteristics of signal perception and calcium response.-Plant J. 18: 491-497, 1999.
Go to original source... - Plieth, C., Sattelmacher, B., Hansen, U.-P., Thiel, G.: The action potential in Chara: Ca2+ release from internal stores visualized by Mn2+-induced quenching of fura-dextran.-Plant J. 13: 167-175, 1998.
Go to original source... - Sanders, D., Brownlee, C., Harper, J.F.: Communicating with calcium.-Plant Cell 11: 691-706, 1999.
Go to original source... - Sanders, D., Pelloux, J., Brownlee, C., Harper, J.F.: Calcium at the crossroads of signalling.-Plant Cell 2002(Suppl.): S401-S417, 2002.
Go to original source... - Sibaoka, T.: Action potentials in plant organs.-Symp. Soc. Exp. Biol. 20: 49-74, 1966.
- Tazawa, M., Kikuyama, M.: Is Ca2+ release from internal stores involved in membrane excitation?-Plant Cell Physiol. 44: 518-526, 2003.
Go to original source... - Thiel, G., Dityatev, A.E.: Transient activity of excitatory Cl- channels in Chara. Evidence for quantal release of a gating factor.-J. Membrane Biol. 163: 183-191, 1998.
Go to original source... - Thiel, G., Homann, U., Plieth, C.: Ion channel activity during the action potential in Chara: new insight with new techniques.-J. exp. Bot. 48: 609-622, 1997.
Go to original source... - Trebacz, K., Busch, M.B., Hejnowicz, Z., Sievers, A.: Cyclopiazonic acid disturbs the regulation of cytosolic calcium when repetitive action potentials are evoked in Dionaea traps.-Planta 198: 623-626, 1996.
Go to original source... - Trebacz, K., Sievers, A.: Action potentials evoked by light in traps of Dionaea muscipula Ellis.-Plant Cell Physiol. 39: 369-372, 1998.
Go to original source... - Trebacz, K., Simonis, W., Schonknecht, G.: Cytoplasmic Ca2+, K+, Cl-, NO3-activities in the liverwort Conocephalum conicum L. at rest and during action potentials.-Plant Physiol. 106: 1073-1084, 1994.
Go to original source... - Trebacz, K., Simonis, W., Schonknecht, G.: Effects of anion channel inhibitors on light-induced potential changes in the liverwort Conocephalum conicum.-Plant Cell Physiol. 38: 550-557, 1997.
Go to original source... - Wacke, M., Thiel G.: Electrically triggered all-or-none Ca2+ liberation during action potentials in the giant alga Chara.-J. gen. Physiol. 118: 11-21, 2001.
Go to original source... - White, P.J., Bowen, H.C., Demidchik, V., Nichols, C., Davies, J.M.: Genes for calcium-permeable channels in the plasma membrane of plant root cells.-Biochim. biophys. Acta 1564: 299-309, 2002.
Go to original source... - Williamson, R.E., Ashley, C.C.: Free Ca2+ and cytoplasmic streaming in the alga Chara.-Nature 296: 647-650, 1982.
Go to original source... - Willmott, N., Sethi, J.K., Walseth, T.F., Lee, H.C., White, A.M., Galione, A.: Nitric oxide-induced mobilization of intracellular calcium via cyclic ADP-ribose signalling pathway.-J. biol. Chem. 271: 3699-3705, 1996.
Go to original source... - Xiong, L., Schumaker, K.S., Zhu, J.-K.: Cell signalling during cold, drought and salt stress.-Plant Cell 2002(Suppl.): S165-S183, 2002.
Go to original source... - Xiong, L., Zhu, J.-K.: Abiotic stress signal transduction in plants: molecular and genetic perspectives.-Physiol. Plant. 112: 152-166, 2001.
Go to original source... - Zhang, X.G., Cote, G.G., Crain, R.C.: Involvement of phosphoinositide turnover in tracheary element differentiation in Zinnia elegans L. cells.-Planta 215: 312-318, 2002.
Go to original source... - Zhu, J.-K.: Cell signalling under salt, water and cold stresses.-Curr. Opinion Plant Biol. 4: 401-406, 2001.
Go to original source...



