Rchr
J-GLOBAL ID:200901077613197037   Update date: Sep. 13, 2022

NAKASHIMA Kazuo

ナカシマ カズオ | NAKASHIMA Kazuo
Affiliation and department:
Job title: Program Director
Research field  (4): Crop production science ,  Plant genetics and breeding ,  Conservation science (plants) ,  Plants: molecular biology and physiology
Research keywords  (11): 遺伝子組換え ,  バイオテクノロジー ,  不良環境耐性 ,  種子成熟 ,  病害虫 ,  遺伝子発現 ,  環境ストレス ,  植物 ,  Plant ,  Gene expression ,  Stress response
Research theme for competitive and other funds  (4):
  • 2010 - 2014 植物の水利用効率に関わるストレス感知機構解明と分子育種への応用
  • 2009 - 2013 地球環境劣化に対応した環境ストレス耐性作物の作出技術の開発
  • 2009 - 2011 穂発芽変異体を用いた種子成熟・休眠・発芽分子機構の解明
  • Molecular Responses to Environmental Stress in Plants
Papers (72):
  • Angela Fernando, Michael Selvaraj, Manabu Ishitani, Kazuo Nakashima, Kazuo Shinozaki, Kazuko Yamaguchi-Shinozaki. How utilizing the genes involved in drought tolerance could tackle the climate change-related food crisis?. Molecular plant. 2021. 14. 10. 1601-1603
  • Martina Bianca Fuhrmann-Aoyagi, Claudete de Fátima Ruas, Elton Gargioni Grisoste Barbosa, Patricia Braga, Larissa Alessandra Cardoso Moraes, Ana Claudia Barneche de Oliveira, Norihito Kanamori, Kazuko Yamaguchi-Shinozaki, Kazuo Nakashima, Alexandre Lima Nepomuceno, et al. Constitutive expression of Arabidopsis bZIP transcription factor AREB1 activates cross-signaling responses in soybean under drought and flooding stresses. Journal of plant physiology. 2021. 257. 153338-153338
  • Ken Hoshikawa, Dung Pham, Hiroshi Ezura, Roland Schafleitner, Kazuo Nakashima. Genetic and Molecular Mechanisms Conferring Heat Stress Tolerance in Tomato Plants. Frontiers in plant science. 2021. 12. 786688-786688
  • Michael Gomez Selvaraj, Asad Jan, Takuma Ishizaki, Milton Valencia, Beata Dedicova, Kyonoshin Maruyama, Takuya Ogata, Daisuke Todaka, Kazuko Yamaguchi-Shinozaki, Kazuo Nakashima, et al. Expression of the CCCH-tandem zinc finger protein gene OsTZF5 under a stress-inducible promoter mitigates the effect of drought stress on rice grain yield under field conditions. Plant biotechnology journal. 2020. 18. 8. 1711-1721
  • Mayla Daiane Correa Molinari, Renata Fuganti-Pagliarini, Silvana Regina Rockenbach Marin, Leonardo Cesar Ferreira, Daniel de Amorim Barbosa, Juliana Marcolino-Gomes, Maria Cristina Neves de Oliveira, Liliane Marcia Mertz-Henning, Norihito Kanamori, Hironori Takasaki, et al. Overexpression of AtNCED3 gene improved drought tolerance in soybean in greenhouse and field conditions. Genetics and molecular biology. 2020. 43. 3. e20190292
more...
MISC (38):
Books (4):
  • Application of Biotechnology to Generate Drought-tolerant Soybean Plants in Brazil - Development of Genetic Engineering Technology of Crops with Stress Tolerance against Degradation of Global Environment - (Crop Production under Stressful Conditions: Ap
    2018
  • Promoters and transcription factors in abiotic stress-responsive gene expression (Govindjee, Pareek, A., Sopor, S., and Bohnert, H. (eds) Abiotic stress biology in plants)
    Springer-Verlag Berlin 2009
  • 植物の環境ストレスに対する応答(羽柴輝良編 新しい作物保護の展開-バイオサイエンスへのかけはし-)
    ソフトサイエンス社 2005
  • Use of β-glucuronidase to show dehydration and high-salt gene expression (Molecular Methods of Plant Analysis)
    Springer-Verlag Berlin 2002
Education (2):
  • Tohoku University
  • Tohoku University Graduate School of Agricultural Science
Professional career (1):
  • Ph.D.
Awards (1):
  • 日本植物病理学会学術奨励賞(1996)
Association Membership(s) (3):
日本植物病理学会 ,  日本植物生理学会 ,  Japanese Society of Breeding
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