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  1. Microtubule-dependent microtubule nucleation in plant cells.
    Takashi Murata, Mitsuyasu Hasebe
    J Plant Res
    Jan 2007 (Vol. 120, Issue 1, Pages 73-8)
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  1. Plant microtubule studies: past and present.
    Yoshinobu Mineyuki
    J Plant Res
    Jan 2007 (Vol. 120, Issue 1, Pages 45-51)
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  1. Cortical control of plant microtubules.
    Takashi Hashimoto, Takehide Kato
    Curr Opin Plant Biol
    Feb 2006 (Vol. 9, Issue 1, Pages 5-11)
    MEDLINE | Related Records

  1. Organization of cortical microtubules in plant cells.
    R J Cyr, B A Palevitz
    Curr Opin Cell Biol
    Feb 1995 (Vol. 7, Issue 1, Pages 65-71)
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  1. Microtubules guide root hair tip growth.
    Björn J Sieberer, Tijs Ketelaar, John J Esseling, Anne Mie C Emons
    New Phytol
    Sep 2005 (Vol. 167, Issue 3, Pages 711-9)
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  1. Organization of neuronal microtubules in the nematode Caenorhabditis elegans.
    M Chalfie, J N Thomson
    J Cell Biol
    Jul 1979 (Vol. 82, Issue 1, Pages 278-89)
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  1. Microtubule dynamics and organization in the plant cortical array.
    David W Ehrhardt, Sidney L Shaw
    Annu Rev Plant Biol
    2006 (Vol. 57, Pages 859-75)
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  1. Dynamics and regulation of plant interphase microtubules: a comparative view.
    Takashi Hashimoto
    Curr Opin Plant Biol
    Dec 2003 (Vol. 6, Issue 6, Pages 568-76)
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  1. Microtubules and the shape of plants to come.
    Clive Lloyd, Jordi Chan
    Nat Rev Mol Cell Biol
    Jan 2004 (Vol. 5, Issue 1, Pages 13-22)
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  1. The role of the cytoskeleton during oriented microfibril deposition. I. Elucidation of the possible interaction between microtubules and cellulose synthetic complexes.
    R W Seagull
    J Ultrastruct Res
    May 1983 (Vol. 83, Issue 2, Pages 168-75)
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  1. Dynamic reorientation of cortical microtubules, from transverse to longitudinal, in living plant cells.
    M Yuan, P J Shaw, R M Warn, C W Lloyd
    Proc Natl Acad Sci U S A
    Jun 1994 (Vol. 91, Issue 13, Pages 6050-3)
    MEDLINE | Related Records

  1. The plant cytoskeleton: recent advances in the study of the plant microtubule-associated proteins MAP-65, MAP-190 and the Xenopus MAP215-like protein, MOR1.
    Patrick J Hussey, Timothy J Hawkins, Hisako Igarashi, Despina Kaloriti, Andrei Smertenko
    Plant Mol Biol
    Dec 2002 (Vol. 50, Issue 6, Pages 915-24)
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  1. MAPs in plant cells: delineating microtubule growth dynamics and organization.
    John C Sedbrook
    Curr Opin Plant Biol
    Dec 2004 (Vol. 7, Issue 6, Pages 632-40)
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  1. The role of motor proteins in establishing the microtubule arrays of axons and dendrites.
    P W Baas
    J Chem Neuroanat
    Jun 1998 (Vol. 14, Issue 3-4, Pages 175-80)
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  1. Characterization of microtubule binding domains in the Arabidopsis kinesin-like calmodulin binding protein.
    S B Narasimhulu, A S Reddy
    Plant Cell
    Jun 1998 (Vol. 10, Issue 6, Pages 957-65)
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  1. Plant cell growth responds to external forces and the response requires intact microtubules.
    C L Wymer, S A Wymer, D J Cosgrove, R J Cyr
    Plant Physiol
    Feb 1996 (Vol. 110, Issue 2, Pages 425-30)
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  1. Microtubules cut and run.
    Peter W Baas, Arzu Karabay, Liang Qiang
    Trends Cell Biol
    Oct 2005 (Vol. 15, Issue 10, Pages 518-24)
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  1. Acentrosomal microtubule nucleation in higher plants.
    Anne-Catherine Schmit
    Int Rev Cytol
    2002 (Vol. 220, Pages 257-89)
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  1. MOR1 is essential for organizing cortical microtubules in plants.
    A T Whittington, O Vugrek, K J Wei, N G Hasenbein, K Sugimoto, M C Rashbrooke, G O Wasteneys
    Nature
    May 2001 (Vol. 411, Issue 6837, Pages 610-3)
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  1. Immunofluorescence microscopy of microtubules in intact cell lineages of the moss, Physcomitrella patens. I. Normal and CIPC-treated tip cells.
    J H Doonan, D J Cove, C W Lloyd
    J Cell Sci
    Apr 1985 (Vol. 75, Pages 131-47)
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