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Journal of Plant Research|March 24, 2019
A gene regulatory network for root hair developmentMichitaro Shibata, Keiko SugimotoPlant Signaling & Behavior|April 18, 2014
Interaction between chaperone and protease functions of LON2, and autophagy during the functional transition of peroxisomesShino Goto-Yamada, Shoji Mano, Kazusato Oikawa, et al.Current Opinion in Plant Biology|December 6, 2016
Molecular networks orchestrating plant cell growthAnna Franciosini, Bart Rymen, Michitaro Shibata, et al.Journal of Experimental Botany|March 13, 2023
Cytokinin signaling promotes root hair growth by directly regulating RSL4 expressionHirotomo Takatsuka, Anna Sasaki, Naoki Takahashi, et al.Proceedings of the National Academy of Sciences of the United States of America|February 4, 2022
Arabidopsis TBP-ASSOCIATED FACTOR 12 ortholog NOBIRO6 controls root elongation with unfolded protein response cofactor activityJune-Sik Kim, Yuki Sakamoto, Fuminori Takahashi, et al.The New Phytologist|June 17, 2022
Trihelix transcription factors GTL1 and DF1 prevent aberrant root hair formation in an excess nutrient conditionMichitaro Shibata, David S Favero, Ryu Takebayashi, et al.Journal of Cell Science|January 28, 2014
Organ-specific quality control of plant peroxisomes is mediated by autophagyKohki Yoshimoto, Michitaro Shibata, Maki Kondo, et al.The Plant Cell|December 26, 2013
Highly oxidized peroxisomes are selectively degraded via autophagy in ArabidopsisMichitaro Shibata, Kazusato Oikawa, Kohki Yoshimoto, et al.Development (Cambridge, England)|February 14, 2018
GTL1 and DF1 regulate root hair growth through transcriptional repression of ROOT HAIR DEFECTIVE 6-LIKE 4 in ArabidopsisMichitaro Shibata, Christian Breuer, Ayako Kawamura, et al.Autophagy|April 16, 2014
Plant autophagy is responsible for peroxisomal transition and plays an important role in the maintenance of peroxisomal qualityMichitaro Shibata, Kazusato Oikawa, Kohki Yoshimoto, et al.Pageof 2