Application of 42K to Arabidopsis Tissues Using Real-Time Radioisotope Imaging System(RRIS)
Author:
Affiliation:
1. Graduate School of Agricultural and Life Sciences, The University of Tokyo
Publisher
Japan Radioisotope Association
Subject
Radiation
Link
https://www.jstage.jst.go.jp/article/radioisotopes/64/3/64_169/_pdf
Reference23 articles.
1. 1) Schachtman, D. P., Schroeder, J. I., Lucas, W. J., Anderson, J. A. and Gaber, R. F., Expression of an inward-rectifying potassium channel by the Arabidopsis KAT1 cDNA, Science, 258, 1654-1658(1992)
2. 2) Schachtman, D. P. and Schroeder, J. I., Structure and transport mechanism of a high-affinity potassium uptake transporter from higher plants, Nature, 370, 655-658(1994)
3. 3) Véry, A.-A., Nieves-Cordones, M., Daly, M., Khan, I., Fizames, C. and Sentenac, H., Molecular biology of K+ transport across the plant cell membrane:What do we learn from comparison between plant species?, J. Plant Physiol., 171, 748-769(2014)
4. 4) Jeschke, W. D. and Pate, J. S., Cation and chloride partitioning through xylem and phloem within the whole plant of Ricinus Communis L. under conditions of salt stress, J. Exp. Bot., 42, 1105-1116(1991)
5. 5) Hayashi, H. and Chino, M., Collection of pure phloem sap from wheat and its chemical composition, Plant Cell Physiol., 27, 1387-1393(1986)
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