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 発表論文 selected

 

  1. Qian P,  Song W, Zaizen-Iida M, Kume S, Wang G, Zhang Y, Kinoshita-Tsujimura K, Chai J, Kakimoto T (2022) A Dof-CLE circuit controls phloem organization. Nature Plants 8, 817–827. Doi: 10.1038/s41477-022-01176-0.

  2. Hasi Q, Kakimoto T (2022) ROP Interactive Partners are Involved in Control of Cell Division Pattern in Arabidopsis Leaves. Plant and Cell Physiology. Doi: 10.1093/pcp/pcac089

  3. Zhang Y, Umeda M, Kakimoto T (2022) Pericycle cell division competence underlies various developmental programs. Plant Biotech. 39, 29-36. Doi: 10.5511/plantbiotechnology.21.1202a

  4. Zhang Y, Mitsuda N, Yoshizumi T, Horii Y, Oshima Y, Ohme-Takagi, M, Matsui M, Kakimoto, T.  (2021) Two types of bHLH transcription factor determine the competence of the pericycle for lateral root initiation. Nature Plants 7, 633-643 DOI: 10.1038/s41477-021-00919-9

  5. Qian P, Song W, Yokoo T, Minobe A, Wang G, Ishida T, Sawa S, Chai J, Kakimoto T. (2018) The CLE9/10 secretory peptide regulates stomatal and vascular development through distinct receptors. Nature Plants. 4(12):1071-1081. doi: 10.1038/s41477-018-0317-4

  6. Sugawara S, Mashiguchi K, Tanaka K, Hishiyama S, Sakai T, Hanada K, Kinoshita-Tsujimura K, Yu H, Dai X, Takebayashi Y, Takeda-Kamiya N, Kakimoto T, Kawaide H, Natsume M, Estelle M, Zhao Y, Hayashi K, Kamiya Y, Kasahara H (2015) Distinct Characteristics of Indole-3-Acetic Acid and Phenylacetic Acid, Two Common Auxins in Plants. Plant Cell Physiol. 56, 1641-1654. doi: 10.1093/pcp/pcv088

  7. Müller D, Waldie T, Miyawaki K, To JP, Melnyk CW, Kieber JJ, Kakimoto T, Leyser O. (2015) Cytokinin is required for escape but not release from auxin mediated apical dominance. Plant J. 82, 874-886. doi: 10.1111/tpj.12862

  8. Kumari A, Jewaria PK, Bergmann DC, Kakimoto T. (2014) Arabidopsis Reduces Growth Under Osmotic Stress by Decreasing SPEECHLESS Protein. Plant Cell Physiol. 55, 2037-2046.

  9. Shimizu-Mitao Y, Kakimoto T (2014) Auxin Sensitivities of All Arabidopsis Aux/IAAs for Degradation in the Presence of Every TIR1/AFB. Plant Cell Physiol. 55, 1450-1459.

  10. Jewaria PK, Hara T, Tanaka H, Kondo T, Betsuyaku S, Sawa S, Sakagami Y, Aimoto S, Kakimoto T.(2013) Differential Effects of Peptides Stomagen, EPF1, and EPF2 on Activation of the MAP Kinase MPK6 and the SPCH Protein Level. Plant Cell Physiol, 54, 1253-1262.

  11. Furuta K, Kubo M, Sano K, Demura T, Fukuda H, Liu YG, Shibata D, Kakimoto T. (2011) The CKH2/PKL Chromatin Remodeling Factor Negatively Regulates Cytokinin Responses in Arabidopsis Calli. Plant Cell Physiol. 52, 618-28.

  12. Kubo M, Furuta K, Demura T, Fukuda H, Liu YG, Shibata D, Kakimoto T. (2011) The CKH1/EER4 Gene Encoding a TAF12-Like Protein Negatively Regulates Cytokinin Sensitivity in Arabidopsis thaliana. Plant Cell Physiol. 52, 629-37.

  13. Tsujimura K, and Kakimoto T, 2011 Cytokinin receptors in sporophytes are essential for male and female functions in Arabidopsis thaliana. Plant Signal Behav. 6, 66-7

  14. Arata Y, Nagasawa-Iida A, Uneme H, Nakajima H, Kakimoto T, Sato R, (2010) Phenylquinazoline Compound S-4893 Is A Noncompetitive Cytokinin Antagonist That Targets Arabidopsis Cytokinin Receptor CRE1 And Promotes Root Growth In Arabidopsis And Rice. Plant Cell Physiol. 51, 2047-2059.

  15. Kondo T, Kajita R, Miyazaki A, Hokoyama M, Nakamura-Miura T, Mizuno S, Masuda Y, Irie K, Tanaka Y, Takada S, Kakimoto T, Sakagami Y. (2010). Stomatal density is controlled by a mesophyll-derived signalling molecule. Plant Cell Physiol 51: 1-8.

  16. Nishimura K, Fukagawa T, Takisawa H, Kakimoto T, Kanemaki M. (2009). An auxin-based degron system for the rapid depletion of proteins in nonplant cells. Nat Methods 6: 917-22

  17. Hara K, Yokoo T, Kajita R, Onishi T, Yahata S, Peterson KM, Torii KU, Kakimoto T. (2009). Epidermal cell density is autoregulated via a secretory peptide, EPIDERMAL PATTERNING FACTOR 2 in Arabidopsis leaves. Plant Cell Physiol 50: 1019-31

  18. Matsumoto-Kitano M, Kusumoto T, Tarkowski P, Kinoshita-Tsujimura K, Vaclavikova K, Miyawaki K, Kakimoto T. (2008). Cytokinins are central regulators of cambial activity. PNAS 105: 20027-31

  19. Hara K, Kajita R, Torii KU, Bergmann DC, Kakimoto T. 2007. The secretory peptide gene EPF1 enforces the stomatal one-cell-spacing rule. Genes Dev. 21: 1720-5

  20. Miyawaki K, Tarkowski P, Matsumoto-Kitano M, Kato T, Sato S, Tarkowska D, Tabata S, Sandberg G, Kakimoto T. 2006. Roles of Arabidopsis ATP/ADP isopentenyltransferases and tRNA isopentenyltransferases in cytokinin biosynthesis. PNAS 103: 16598-603

  21. Mahonen AP, Higuchi M, Tormakangas K, Miyawaki K, Pischke MS, Sussman MR, Helariutta Y, Kakimoto T. 2006. Cytokinins regulate a bidirectional phosphorelay network in Arabidopsis. Curr Biol . 16: 1116-22

  22. Mahonen AP, Bishopp A, Higuchi M, Nieminen KM, Kinoshita K, Tormakangas K, Ikeda Y, Oka A, Kakimoto T, Helariutta Y. 2006. Cytokinin signaling and its inhibitor AHP6 regulate cell fate during vascular development. Science 311: 94-8

  23. Kondo T, Sawa S, Kinoshita A, Mizuno S, Kakimoto T, Fukuda H, Sakagami Y. 2006. A plant peptide encoded by CLV3 identified by in situ MALDI-TOF MS analysis. Science, 313: 845-8

  24. Miyawaki K, Matsumoto-Kitano M, Kakimoto T. 2004. Expression of cytokinin biosynthetic isopentenyltransferase genes in Arabidopsis: tissue specificity and regulation by auxin, cytokinin, and nitrate. Plant J. 37: 128-38

  25. Higuchi M, Pischke MS, Mahonen AP, Miyawaki K, Hashimoto Y, Seki M, Kobayashi M, Shinozaki K, Kato T, Tabata S, Helariutta Y, Sussman MR, Kakimoto T. 2004. In planta functions of the Arabidopsis cytokinin receptor family. PNAS 101: 8821-6

  26. Kakimoto, T. Perception and signal transduction of cytokinins. Annual Review Plant Biology 54, 605-627 (2003)

  27. Kakimoto, T., Identification of Plant Cytokinin Biosynthetic Enzymes as Dimethylallyldiphosphate:ATP/ADP Isopentenyltransferases. Plant Cell Physiol. 42, 677-685 (2001)

  28. Inoue, T., Higuchi, M., Hashimoito, Y., Seki, M., Kobayashi, M., Kato, T., Tabata, S., Shinozaki, K. and Kakimoto, T.  Identification of CRE1 as a cytokinin receptor from Arabidopsis.  Nature, 409, 1060 - 1063 (2001)

  29. Kubo, M. and Kakimoto, T.  The CYTOKININ-HYPERSENSITIVE genes of Arabidopsis negatively regulate the cytokinin-signaling pathway for cell division and chloroplast development. Plant J. 23, 385-394 (2000)

  30. Kakimoto, T., CKI1, a histidine kinase homolog implicated in cytokinin signal transduction. Science, 274, 982-985 (1996)

図書

 

柿本辰男,生物の科学 遺伝 2016年09月

植物ホルモン研究の発展pp. 348-349

ISBN978-4-86043-442-7

 

新しい植物ホルモンの科学第3版 浅見 忠男, 柿本 辰男(編)

ISBN978-4-06-153452-0

 

高校生物解説書 授業でそのまま使えるPowerPoint付き! 植物編

町田泰則 (担当:共著)

講談社 2014年4月 (ISBN: 9784061538948)

 

植物ホルモンの分子細胞生物学

講談社サイエンティフィック 2006年

 

Molecular cell biology of plant hormones

2006年

 

植物生理学講座(福田ら編)

朝倉書店 2001年 サイトカイニンの合成と代謝

 

植物ホルモンのシグナル伝達、別冊細胞工学、秀潤社

岡穆宏、柿本辰男: 「サイトカイニン応答」

 

植物の環境応答と形態形成のクロストーク、岡穆宏、岡田清孝、篠崎一雄(編)、シュプリンガーフェアラーク東京

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