Rchr
J-GLOBAL ID:200901090873106422   Update date: Aug. 19, 2024

Fujino Kaien

フジノ カイエン | Fujino Kaien
Affiliation and department:
Research field  (2): Landscape science ,  Environmental agriculture
Research keywords  (2): 作物生理学 ,  Crop Physiology
Research theme for competitive and other funds  (16):
  • 2021 - 2025 植物の防御機構等に関与する不溶性プロアントシアニジン合成機構の生理的解析
  • 2021 - 2023 ジャガイモ塊茎における分裂組織の成長制御メカニズムの解明
  • 2017 - 2020 Physiological analysis of pericarp dehiscence mechanism involved in yield
  • 2014 - 2017 Mechanism of enhanced salinity tolerance by an endogenouse peptide elicitor in Arabidopsis
  • 2012 - 2015 Possibility of active secretion of Arabidopsis enodgenous peptide elicitor
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Papers (54):
  • Hyuk Sung Yoon, Kaien Fujino, Shenkui Liu, Tetsuo Takano, Daisuke Tsugama. VIP1 and its close homologs confer mechanical stress tolerance in Arabidopsis leaves. Plant physiology and biochemistry : PPB. 2024. 215. 109021-109021
  • Koichi Yamamori, Seiya Ishiguro, Kei Ogasawara, Kayyis Lubba, Kaien Fujino, Kazumitsu Onishi, Yutaka Sato, Yuji Kishima. The anther transcriptome of cold-tolerant rice cultivars is largely insensitive to temperature changes. 2024
  • Xia Zhang, Kaien Fujino, Hanako Shimura. Transcriptomic Analyses Reveal the Role of Cytokinin and the Nodal Stem in Microtuber Sprouting in Potato (Solanum tuberosum L.). International journal of molecular sciences. 2023. 24. 24
  • Kota Kambara, Hanako Shimura, Kaien Fujino, Chikara Masuta. Metagenomic Analyses of Viruses in the Orchid Mycorrhizal Interaction Using Improved Assemble Tools. Methods in Molecular Biology. 2023. 67-81
  • Kota Kambara, Kaien Fujino, Hanako Shimura. Construction of a de novo assembly pipeline using multiple transcriptome data sets from Cypripedium macranthos (Orchidaceae). PLOS ONE. 2023
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MISC (49):
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Books (1):
  • Viability, DNA Synthesis and Cell Wall Regeneration on Potato Protoplasts
    Biotechnology in Agriculture and Forestry 1987
Professional career (2):
  • (BLANK)
  • 博士(農学) (北海道大学)
Awards (1):
  • 2010/03 - 日本育種学会 日本育種学会論文賞 A major QTL, qPDH1, is commonly involved in shattering resistance of soybean cultivars.
Association Membership(s) (3):
作物学会 ,  植物生理学会 ,  植物学会
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