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  • Pupkis V., Janužaitė J., Lapeikaitė I., Kisnierienė V. (2024) Inositol hexakisphosphate (IP6) enhances the electrical excitability of Characean Nitellopsis obtusa. (2024). Plant stress. 14, pp. 1-10.
  • Navickaitė A., Pupkis V., Kalnaitytė-Vengelienė A., Lapeikaitė I., Kisnierienė V., Bagdonas S. (2024) Combining Nitellopsis obtusa autofluorescence intensity and F680/F750 ratio to discriminate responses to environmental stressors. Methods and applications in fluorescence. 12 (4),  pp 1-10.
  • Pupkis, V., Lapeikaitė, I., Kavaliauskas, J., Trębacz, K., Kisnierienė, V. (2023). Certain calcium channel inhibitors exhibit a number of secondary effects on the physiological properties in Nitellopsis obtusa: a voltage clamp approach. Functional Plant Biology 50, pp. 195-205.
  • Kisnierienė, V., Trębacz, K., Pupkis, V., Koselski, M., & Lapeikaitė, I. (2022). Evolution of long-distance signalling upon plant terrestrialization: comparison of action potentials in Characean algae and liverworts. Annals of Botany. 130(4), pp. 457-475
  • Koselski M., Pupkis V., Hashimoto K., Lapeikaitė I., Hanaka A., Wasko P., Plukaitė E., Kuchitsu K., Kisnierienė V. Trebacz, K. (2021). Impact of Mammalian Two-Pore Channel Inhibitors on Long-Distance Electrical Signals in the Characean Macroalga Nitellopsis obtusa and the Early Terrestrial Liverwort Marchantia polymorpha. Plants, 10(4), 647.
  • Lapeikaitė I., Pupkis V., Neniškis V., Rukšėnas O., Kisnierienė V. (2020) Glutamate and NMDA affect cell excitability and Action Potential dynamics of single cell of macrophyte Nitellopsis obtusaFunct. Plant Biol.
  • Lapeikaitė I., Dragunaitė U., Pupkis V., Rukšėnas O., Kisnierienė V. (2019) Asparagine alters action potential parameters in single plant cell. Protoplasma 256, 511–519
  • Kisnierienė V., Lapeikaitė I., Pupkis V., Beilby MJ. (2019) Modeling the Action Potential in Characeae Nitellopsis obtusa: Effect of Saline Stress. Frontiers in Plant Science, 10, 1–15.

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