Involvement of the Membrane Trafficking Factor PATROL1 in the Salinity Stress Tolerance of Arabidopsis thaliana
Author:
Affiliation:
1. Graduate School of Science and Technology, Kumamoto University
2. Department of Biology, Faculty of Science, Kyushu University
3. International Research Organization for Advanced Science and Technology, Kumamoto University
Publisher
International Society of Cytology
Subject
Cell Biology,Plant Science,Genetics,Animal Science and Zoology
Link
https://www.jstage.jst.go.jp/article/cytologia/86/2/86_D-21-00002/_pdf
Reference16 articles.
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3. Dou, L., He, K., Higaki, T., Wang, X. and Mao, T. 2018. Ethylene signaling modulates cortical microtubule reassembly in response to salt stress. Plant Physiol. 176: 2071–2081.
4. Drakakaki, G., Van De Ven, W., Pan, S., Miao, Y., Wang, J., Keinath, N. F., Weatherly, B., Jiang, L., Schumacher, K., Hicks, G. and Raikhel, N. 2012. Isolation and proteomic analysis of the SYP61 compartment reveal its role in exocytic trafficking in Arabidopsis. Cell Res. 22: 413–424.
5. Hashimoto-Sugimoto, M., Higaki, T., Yaeno, T., Nagami, A., Irie, M., Fujimi, M., Miyamoto, M., Akita, K., Negi, J., Shirasu, K., Hasezawa, S. and Iba, K. 2013. A Munc13-like protein in Arabidopsis mediates H+-ATPase translocation that is essential for stomatal responses. Nat. Commun. 4: 1–9.
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