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Kazuyuki Kuchitsu

Explore the profile of Kazuyuki Kuchitsu including associated specialties, affiliations and a list of published articles. Areas
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Articles 100
Citations 6435
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Recent Articles
1.
Tsuboyama S, Okumura T, Watanabe K, Koga K, Shiratani M, Kuchitsu K
Plant Physiol Biochem . 2024 Oct; 216:109172. PMID: 39395224
Cold atmospheric pressure plasma generators capable of generating plasma under normal pressure and temperature conditions have recently been developed, and their biological applications have been extensively studied. Plasma irradiation has...
2.
Kacprzyk J, Burke R, Armengot L, Coppola M, Tattrie S, Vahldick H, et al.
New Phytol . 2024 Mar; 242(5):1865-1875. PMID: 38538552
Programmed cell death (PCD) is fundamentally important for plant development, abiotic stress responses and immunity, but our understanding of its regulation remains fragmented. Building a stronger research community is required...
3.
Tsuboyama S, Okumura T, Attri P, Koga K, Shiratani M, Kuchitsu K
Sci Rep . 2024 Feb; 14(1):3172. PMID: 38326376
Several studies have documented that treatment by cold atmospheric pressure plasma (CAPP) on plants foster seed germination and growth in recent years. However, the molecular processes that underlie the action...
4.
Watanabe K, Hashimoto K, Hasegawa K, Shindo H, Tsuruda Y, Kupisz K, et al.
Plant Cell Physiol . 2024 Jan; 65(4):660-670. PMID: 38195149
In response to both biotic and abiotic stresses, vascular plants transmit long-distance Ca2+ and electrical signals from localized stress sites to distant tissues through their vasculature. Various models have been...
5.
Hashimoto T, Hashimoto K, Shindo H, Tsuboyama S, Miyakawa T, Tanokura M, et al.
Physiol Plant . 2023 Dec; 175(6):e14101. PMID: 38148249
NADPH oxidases/RBOHs catalyze apoplastic ROS production and act as key signaling nodes, integrating multiple signal transduction pathways regulating plant development and stress responses. Although RBOHs have been suggested to be...
6.
Kogoshi M, Nishio D, Kitahata N, Ohwada H, Kuchitsu K, Mizuno H, et al.
Plant Methods . 2023 Dec; 19(1):142. PMID: 38062468
Background: Plant defense activators offer advantages over pesticides by avoiding the emergence of drug-resistant pathogens. However, only a limited number of compounds have been reported. Reactive oxygen species (ROS) act...
7.
Kaneko H, Miyata F, Kurokawa M, Hashimoto K, Kuchitsu K, Furuya T
BMC Microbiol . 2023 Jul; 23(1):175. PMID: 37407947
Background: Microorganisms that activate plant immune responses are useful for application as biocontrol agents in agriculture to minimize crop losses. The present study was conducted to identify and characterize plant...
8.
Nickolov K, Gauthier A, Hashimoto K, Laitinen T, Vaisanen E, Paasela T, et al.
Front Plant Sci . 2022 Oct; 13:978586. PMID: 36311083
Plant respiratory burst oxidase homologs (RBOHs) are plasma membrane-localized NADPH oxidases that generate superoxide anion radicals, which then dismutate to HO, into the apoplast using cytoplasmic NADPH as an electron...
9.
Okumura T, Attri P, Kamataki K, Yamashita N, Tsukada Y, Itagaki N, et al.
Sci Rep . 2022 Jul; 12(1):12525. PMID: 35869157
Discharge plasma irradiates seeds with reactive oxygen and nitrogen species (RONS). However, RONS introduced in seeds by plasma irradiation have not been successfully detected thus far. This study provides experimental...
10.
Kimura S, Kaya H, Hashimoto K, Wrzaczek M, Kuchitsu K
Methods Mol Biol . 2022 Jun; 2526:107-122. PMID: 35657515
Reactive oxygen species (ROS) produced by plant NADPH oxidases, respiratory burst oxidase homologs (RBOHs), play key roles in biotic and abiotic stress responses and development in plants. While properly controlled...