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Coauthors
Jingbo Zhang Division of Biological Sciences, Section of Cell and Developmental Biology, Food and Fuel for the 21st Century, University of California, USA
1 protocol

Cun Wang Division of Biological Sciences, Section of Cell and Developmental Biology, Food and Fuel for the 21st Century, University of California, USA
1 protocol

Julian I. Schroeder
  • Division of Biological Sciences, Section of Cell and Developmental Biology, Food and Fuel for the 21st Century, University of California, USA
Contributions
  • 1 Author merit

Education

Ph. D in molecular plant physiology. Institute of Plant Biology, University of Zurich, 2014

Current position

Professor of Biology, University of California, San Diego

Publications (since 2014)

  1. Zhang, Z., Xie, Q., Jobe, T. O., Kau, A. R., Wang, C., Li, Y., Qiu, B., Wang, Q., Mendoza-Cozatl, D. G. and Schroeder, J. I. (2016). Identification of AtOPT4 as a Plant Glutathione Transporter. Mol Plant 9(3): 481-484.
  2. Hu, H., Rappel, W. J., Occhipinti, R., Ries, A., Bohmer, M., You, L., Xiao, C., Engineer, C. B., Boron, W. F. and Schroeder, J. I. (2015). Distinct Cellular Locations of Carbonic Anhydrases Mediate Carbon Dioxide Control of Stomatal Movements. Plant Physiol 169(2): 1168-1178.
  3. Brandt, B., Munemasa, S., Wang, C., Nguyen, D., Yong, T., Yang, P. G., Poretsky, E., Belknap, T. F., Waadt, R., Aleman, F. and Schroeder, J. I. (2015). Calcium specificity signaling mechanisms in abscisic acid signal transduction in Arabidopsis guard cells. Elife 4.
  4. Matrosova, A., Bogireddi, H., Mateo-Penas, A., Hashimoto-Sugimoto, M., Iba, K., Schroeder, J. I. and Israelsson-Nordstrom, M. (2015). The HT1 protein kinase is essential for red light-induced stomatal opening and genetically interacts with OST1 in red light and CO2 -induced stomatal movement responses. New Phytol 208(4): 1126-1137.
  5. Waadt, R., Manalansan, B., Rauniyar, N., Munemasa, S., Booker, M. A., Brandt, B., Waadt, C., Nusinow, D. A., Kay, S. A., Kunz, H. H., Schumacher, K., DeLong, A., Yates, J. R., 3rd and Schroeder, J. I. (2015). Identification of Open Stomata1-Interacting Proteins Reveals Interactions with Sucrose Non-fermenting1-Related Protein Kinases2 and with Type 2A Protein Phosphatases That Function in Abscisic Acid Responses. Plant Physiol 169(1): 760-779.
  6. Azoulay-Shemer, T., Palomares, A., Bagheri, A., Israelsson-Nordstrom, M., Engineer, C. B., Bargmann, B. O., Stephan, A. B. and Schroeder, J. I. (2015). Guard cell photosynthesis is critical for stomatal turgor production, yet does not directly mediate CO2 - and ABA-induced stomatal closing. Plant J 83(4): 567-581.
  7. Keinath, N. F., Waadt, R., Brugman, R., Schroeder, J. I., Grossmann, G., Schumacher, K. and Krebs, M. (2015). Live Cell Imaging with R-GECO1 Sheds Light on flg22- and Chitin-Induced Transient [Ca(2+)]cyt Patterns in Arabidopsis. Mol Plant 8(8): 1188-1200.
  8. Hamamoto, S., Horie, T., Hauser, F., Deinlein, U., Schroeder, J. I. and Uozumi, N. (2015). HKT transporters mediate salt stress resistance in plants: from structure and function to the field. Curr Opin Biotechnol 32: 113-120.
  9. Engineer, C. B., Ghassemian, M., Anderson, J. C., Peck, S. C., Hu, H. and Schroeder, J. I. (2014). Carbonic anhydrases, EPF2 and a novel protease mediate CO2 control of stomatal development. Nature 513(7517): 246-250.
  10. Kunz, H. H., Gierth, M., Herdean, A., Satoh-Cruz, M., Kramer, D. M., Spetea, C. and Schroeder, J. I. (2014). Plastidial transporters KEA1, -2, and -3 are essential for chloroplast osmoregulation, integrity, and pH regulation in Arabidopsis. PNAS 111(20): 7480-7485.
  11. Waadt, R., Hitomi, K., Nishimura, N., Hitomi, C., Adams, S. R., Getzoff, E. D. and Schroeder, J. I. (2014). FRET-based reporters for the direct visualization of abscisic acid concentration changes and distribution in Arabidopsis. Elife 3: e01739.
  12. Khanna, R., Li, J., Tseng, T. S., Schroeder, J. I., Ehrhardt, D. W. and Briggs, W. R. (2014). COP1 jointly modulates cytoskeletal processes and electrophysiological responses required for stomatal closure. Mol Plant 7(9): 1441-1454.
  13. Kunz, H. H., Zamani-Nour, S., Hausler, R. E., Ludewig, K., Schroeder, J. I., Malinova, I., Fettke, J., Flugge, U. I. and Gierth, M. (2014). Loss of cytosolic phosphoglucose isomerase affects carbohydrate metabolism in leaves and is essential for fertility of Arabidopsis. Plant Physiol 166(2): 753-765.
  14. Stephan, A. B. and Schroeder, J. I. (2014). Plant salt stress status is transmitted systemically via propagating calcium waves. Proc Natl Acad Sci U S A 111(17): 6126-6127.
  15. Mendoza-Cozatl, D. G., Xie, Q., Akmakjian, G. Z., Jobe, T. O., Patel, A., Stacey, M. G., Song, L., Demoin, D. W., Jurisson, S. S., Stacey, G. and Schroeder, J. I. (2014). OPT3 is a component of the iron-signaling network between leaves and roots and misregulation of OPT3 leads to an over-accumulation of cadmium in seeds. Mol Plant 7(9): 1455-1469.
  16. Deinlein, U., Stephan, A. B., Horie, T., Luo, W., Xu, G. and Schroeder, J. I. (2014). Plant salt-tolerance mechanisms. Trends Plant Sci 19(6): 371-379.
  17. Jones, A. M., Xuan, Y., Xu, M., Wang, R. S., Ho, C. H., Lalonde, S., You, C. H., Sardi, M. I., Parsa, S. A., Smith-Valle, E., Su, T., Frazer, K. A., Pilot, G., Pratelli, R., Grossmann, G., Acharya, B. R., Hu, H. C., Engineer, C., Villiers, F., Ju, C., Takeda, K., Su, Z., Dong, Q., Assmann, S. M., Chen, J., Kwak, J. M., Schroeder, J. I., Albert, R., Rhee, S. Y. and Frommer, W. B. (2014). Border control--a membrane-linked interactome of Arabidopsis. Science 344(6185): 711-716.
  18. Sato, Y., Nanatani, K., Hamamoto, S., Shimizu, M., Takahashi, M., Tabuchi-Kobayashi, M., Mizutani, A., Schroeder, J. I., Souma, S. and Uozumi, N. (2014). Defining membrane spanning domains and crucial membrane-localized acidic amino acid residues for K(+) transport of a Kup/HAK/KT-type Escherichia coli potassium transporter. J Biochem 155(5): 315-323.
  19. Song, W. Y., Mendoza-Cozatl, D. G., Lee, Y., Schroeder, J. I., Ahn, S. N., Lee, H. S., Wicker, T. and Martinoia, E. (2014). Phytochelatin-metal(loid) transport into vacuoles shows different substrate preferences in barley and Arabidopsis. Plant Cell Environ 37(5): 1192-1201.
  20. Muller, M., Kunz, H. H., Schroeder, J. I., Kemp, G., Young, H. S. and Neuhaus, H. E. (2014). Decreased capacity for sodium export out of Arabidopsis chloroplasts impairs salt tolerance, photosynthesis and plant performance. Plant J 78(4): 646-658.
  21. Bu, Q., Lv, T., Shen, H., Luong, P., Wang, J., Wang, Z., Huang, Z., Xiao, L., Engineer, C., Kim, T. H., Schroeder, J. I. and Huq, E. (2014). Regulation of drought tolerance by the F-box protein MAX2 in Arabidopsis. Plant Physiol 164(1): 424-439.
1 Protocol published
Two-electrode Voltage-clamp Recordings in Xenopus laevis Oocytes:Reconstitution of Abscisic Acid Activation of SLAC1 Anion Channel via PYL9 ABA Receptor
Authors:  Cun Wang, Jingbo Zhang and Julian I. Schroeder, date: 01/20/2017, view: 1901, Q&A: 0
Two-Electrode Voltage-Clamp (TEVC) recording in Xenopus laevis oocytes provides a powerful method to investigate the functions and regulation of ion channel proteins. This approach provides a well-known tool to characterize ion channels or ...