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The Plant Journal : for Cell and Molecular Biology|June 9, 2005
Identification of a putative voltage-gated Ca2+ channel as a key regulator of elicitor-induced hypersensitive cell death and mitogen-activated protein kinase activation in riceTakamitsu Kurusu, Toshikazu Yagala, Akio Miyao, et al.Plant Signaling & Behavior|August 21, 2010
Roles of calcineurin B-like protein-interacting protein kinases in innate immunity in riceTakamitsu Kurusu, Jumpei Hamada, Haruyasu Hamada, et al.Plant Signaling & Behavior|March 12, 2014
Involvement of elevated proline accumulation in enhanced osmotic stress tolerance in Arabidopsis conferred by chimeric repressor gene silencing technologyDaisuke Kazama, Takamitsu Kurusu, Nobutaka Mitsuda, et al.Plant & Cell Physiology|January 29, 2003
Isolation and characterization of the ACC synthase genes from lettuce (Lactuca sativa L.), and the involvement in low pH-induced root hair initiationHidenori Takahashi, Takahiro Iwasa, Tetsuhito Shinkawa, et al.Plant Biotechnology (Tokyo, Japan)|November 19, 2025
Oxylipin KODA enhances the early growth of rice (<i>Oryza sativa</i> L.) under low-temperature stress at night to simulate a natural temperature conditionMineyuki Yokoyama, Takamitsu Kurusu, Hirokazu Ohno, et al.Plants (Basel, Switzerland)|May 4, 2016
Identification of Chimeric Repressors that Confer Salt and Osmotic Stress Tolerance in ArabidopsisDaisuke Kazama, Masateru Itakura, Takamitsu Kurusu, et al.Plant Signaling & Behavior|November 6, 2012
In vivo imaging and quantitative monitoring of autophagic flux in tobacco BY-2 cellsShigeru Hanamata, Takamitsu Kurusu, Masaaki Okada, et al.Plant Methods|December 7, 2023
Novel in silico screening system for plant defense activators using deep learning-based prediction of reactive oxygen species accumulationMasayuki Kogoshi, Daiki Nishio, Nobutaka Kitahata, et al.Plant Signaling & Behavior|September 6, 2017
Autophagy-mediated regulation of phytohormone metabolism during rice anther developmentTakamitsu Kurusu, Tomoko Koyano, Nobutaka Kitahata, et al.Plant & Cell Physiology|October 17, 2018
High-Affinity K+ Transporters from a Halophyte, Sporobolus virginicus, Mediate Both K+ and Na+ Transport in Transgenic Arabidopsis, X. laevis Oocytes and YeastYuichi Tada, Chisato Endo, Maki Katsuhara, et al.Pageof 4