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Shintaro Munemasa

Showing results (31-40 of 95) with videos related to

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Plant Physiology|July 25, 2018
Guard Cell Salicylic Acid Signaling Is Integrated into Abscisic Acid Signaling via the Ca<sup>2+</sup>/CPK-Dependent PathwayMd Yeasin Prodhan, Shintaro Munemasa, Mst Nur-E-Nazmun Nahar, et al.
Plant Physiology|March 16, 2011
Involvement of endogenous abscisic acid in methyl jasmonate-induced stomatal closure in ArabidopsisMohammad Anowar Hossain, Shintaro Munemasa, Misugi Uraji, et al.
Nature Reviews. Molecular Cell Biology|May 5, 2022
Plant hormone regulation of abiotic stress responsesRainer Waadt, Charles A Seller, Po-Kai Hsu, et al.
Physiologia Plantarum|February 11, 2026
Reactive Carbonyl Species Mediate Isothiocyanate Signaling Pathway in Arabidopsis thaliana Guard CellsSumaiya Farzana, Md Moshiul Islam, Toshiyuki Nakamura, et al.
Physiologia Plantarum|January 31, 2025
Reactive carbonyl species function downstream of reactive oxygen species in chitosan-induced stomatal closureIsrat Jahan, Md Moshiul Islam, Toshiyuki Nakamura, et al.
Plant & Cell Physiology|January 12, 2010
Roles of AtTPC1, vacuolar two pore channel 1, in Arabidopsis stomatal closureMohammad Mahbub Islam, Shintaro Munemasa, Mohammad Anowar Hossain, et al.
Plant, Cell & Environment|July 18, 2018
The mechanism of SO<sub>2</sub> -induced stomatal closure differs from O<sub>3</sub> and CO<sub>2</sub> responses and is mediated by nonapoptotic cell death in guard cellsLia Ooi, Takakazu Matsuura, Shintaro Munemasa, et al.
Journal of Plant Physiology|August 13, 2024
Outward-rectifying potassium channels GORK and SKOR function in regulation of root growth under salt stress in Arabidopsis thalianaHafsa Jahan Hiya, Yoshitaka Nakashima, Airi Takeuchi, et al.
Biochemical and Biophysical Research Communications|July 22, 2008
Purification of the functional plant membrane channel KAT1Takao Hibi, Shiho Aoki, Keisuke Oda, et al.
Bioscience, Biotechnology, and Biochemistry|August 23, 2017
3,4-Dihydroxyphenylacetic acid is a potential aldehyde dehydrogenase inducer in murine hepatoma Hepa1c1c7 cellsYujia Liu, Ayuki Kurita, Sayaka Nakashima, et al.
Pageof 10

Showing results (31-40 of 95) with videos related to

Sort By:
Pageof 10
Plant Physiology|July 25, 2018
Guard Cell Salicylic Acid Signaling Is Integrated into Abscisic Acid Signaling via the Ca<sup>2+</sup>/CPK-Dependent PathwayMd Yeasin Prodhan, Shintaro Munemasa, Mst Nur-E-Nazmun Nahar, et al.
Plant Physiology|March 16, 2011
Involvement of endogenous abscisic acid in methyl jasmonate-induced stomatal closure in ArabidopsisMohammad Anowar Hossain, Shintaro Munemasa, Misugi Uraji, et al.
Nature Reviews. Molecular Cell Biology|May 5, 2022
Plant hormone regulation of abiotic stress responsesRainer Waadt, Charles A Seller, Po-Kai Hsu, et al.
Physiologia Plantarum|February 11, 2026
Reactive Carbonyl Species Mediate Isothiocyanate Signaling Pathway in Arabidopsis thaliana Guard CellsSumaiya Farzana, Md Moshiul Islam, Toshiyuki Nakamura, et al.
Physiologia Plantarum|January 31, 2025
Reactive carbonyl species function downstream of reactive oxygen species in chitosan-induced stomatal closureIsrat Jahan, Md Moshiul Islam, Toshiyuki Nakamura, et al.
Plant & Cell Physiology|January 12, 2010
Roles of AtTPC1, vacuolar two pore channel 1, in Arabidopsis stomatal closureMohammad Mahbub Islam, Shintaro Munemasa, Mohammad Anowar Hossain, et al.
Plant, Cell & Environment|July 18, 2018
The mechanism of SO<sub>2</sub> -induced stomatal closure differs from O<sub>3</sub> and CO<sub>2</sub> responses and is mediated by nonapoptotic cell death in guard cellsLia Ooi, Takakazu Matsuura, Shintaro Munemasa, et al.
Journal of Plant Physiology|August 13, 2024
Outward-rectifying potassium channels GORK and SKOR function in regulation of root growth under salt stress in Arabidopsis thalianaHafsa Jahan Hiya, Yoshitaka Nakashima, Airi Takeuchi, et al.
Biochemical and Biophysical Research Communications|July 22, 2008
Purification of the functional plant membrane channel KAT1Takao Hibi, Shiho Aoki, Keisuke Oda, et al.
Bioscience, Biotechnology, and Biochemistry|August 23, 2017
3,4-Dihydroxyphenylacetic acid is a potential aldehyde dehydrogenase inducer in murine hepatoma Hepa1c1c7 cellsYujia Liu, Ayuki Kurita, Sayaka Nakashima, et al.
Pageof 10