Research field (2):
Evolutionary biology
, Morphology, anatomy
Research keywords (1):
Plant, Evo-Devo, Morphogenesis, Organ Development, Organ Deformation, Gene, Transcription Factor, Cell Wall, Mechanics, Data Science, Image Analysis, Image Quantification, X-ray CT, Confocal Laser Scanning Microscopy
Research theme for competitive and other funds (3):
2020 - 2024 葉枕の力学的な可塑性を担う細胞壁発達制御メカニズムの解析
2019 - 2022 Aiming for a comprehensive search for genes that regulate the mechanical properties of plant organs
2008 - 2010 植物における葉の中央周縁軸に沿った極性形成機構の分子遺伝学的解析
Papers (17):
Miyuki T. Nakata, Masahiro Takahara, Toshihiro Yamada, Taku Demura. Simultaneous analysis of shape and internal structure of a curved Hibiscus cannabinus pulvinus: X-ray microtomography and semi-automated quantification. Journal of Plant Research. 2023
Masahiro Takahara, Satoru Tsugawa, Shingo Sakamoto, Taku Demura, Miyuki T Nakata. Pulvinar Slits: Cellulose-deficient and De-Methyl-Esterified Pectin-rich Structures in an Legume Motor Cell. Plant Physiology. 2023. kiad105
Miyuki T. Nakata, Masahiro Takahara. Mechanics of Reversible Deformation during Leaf Movement and Regulation of Pulvinus Development in Legumes. International Journal of Molecular Sciences. 2022. 23. 18. 10240-10240
Miyuki T Nakata, Shingo Sakamoto, Nuoendagula, Shinya Kajita, Nobutaka Mitsuda. Fiber Cell-Specific Expression of the VP16-Fused Ethylene Response Factor 41 Protein Increases Biomass Yield and Alters Lignin Composition. Frontiers in plant science. 2021. 12. 654655-654655
Miyuki T Nakata, Mao Nakao, Asuka Denda, Yusuke Onoda, Haruko Ueda, Taku Demura. Estimating the flexural rigidity of Arabidopsis inflorescence stems: Free-vibration test vs. three-point bending test. Plant biotechnology (Tokyo, Japan). 2020. 37. 4. 471-474