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Auxin Transport Promotes Arabidopsis Lateral Root Initiation

Ilda Casimiro, Alan Marchant, Rishikesh P. Bhalerao, Tom Beeckman, Sandra Dhooge, Ranjan Swarup, Neil Graham, Dirk Inzé, Goran Sandberg, Pedro J. Casero, Malcolm Bennett
Ilda Casimiro
a Departmento de Ciencias Morfologicas y Biologia Celular y Animal, University of Extremadura, Badajoz, Spain
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Alan Marchant
b School of Biosciences, University of Nottingham, Nottingham NG7 2RD, United Kingdom
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Rishikesh P. Bhalerao
c Department of Forest Genetics and Plant Physiology, Swedish University of Agricultural Sciences, S-901 83 Umea, Sweden
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Tom Beeckman
d Department of Genetics, Universiteit Gent, B-9000 Gent, Belgium
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Sandra Dhooge
d Department of Genetics, Universiteit Gent, B-9000 Gent, Belgium
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Ranjan Swarup
b School of Biosciences, University of Nottingham, Nottingham NG7 2RD, United Kingdom
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Neil Graham
b School of Biosciences, University of Nottingham, Nottingham NG7 2RD, United Kingdom
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Dirk Inzé
d Department of Genetics, Universiteit Gent, B-9000 Gent, Belgium
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Goran Sandberg
c Department of Forest Genetics and Plant Physiology, Swedish University of Agricultural Sciences, S-901 83 Umea, Sweden
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Pedro J. Casero
a Departmento de Ciencias Morfologicas y Biologia Celular y Animal, University of Extremadura, Badajoz, Spain
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Malcolm Bennett
b School of Biosciences, University of Nottingham, Nottingham NG7 2RD, United Kingdom
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  • For correspondence: malcolm.bennett@nottingham.ac.uk

Published April 2001. DOI: https://doi.org/10.1105/tpc.13.4.843

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  • © 2001 American Society of Plant Physiologists

Abstract

Lateral root development in Arabidopsis provides a model for the study of hormonal signals that regulate postembryonic organogenesis in higher plants. Lateral roots originate from pairs of pericycle cells, in several cell files positioned opposite the xylem pole, that initiate a series of asymmetric, transverse divisions. The auxin transport inhibitor N-1-naphthylphthalamic acid (NPA) arrests lateral root development by blocking the first transverse division(s). We investigated the basis of NPA action by using a cell-specific reporter to demonstrate that xylem pole pericycle cells retain their identity in the presence of the auxin transport inhibitor. However, NPA causes indoleacetic acid (IAA) to accumulate in the root apex while reducing levels in basal tissues critical for lateral root initiation. This pattern of IAA redistribution is consistent with NPA blocking basipetal IAA movement from the root tip. Characterization of lateral root development in the shoot meristemless1 mutant demonstrates that root basipetal and leaf acropetal auxin transport activities are required during the initiation and emergence phases, respectively, of lateral root development.

  • Received November 14, 2000.
  • Accepted February 2, 2001.
  • Published April 1, 2001.
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Auxin Transport Promotes Arabidopsis Lateral Root Initiation
Ilda Casimiro, Alan Marchant, Rishikesh P. Bhalerao, Tom Beeckman, Sandra Dhooge, Ranjan Swarup, Neil Graham, Dirk Inzé, Goran Sandberg, Pedro J. Casero, Malcolm Bennett
The Plant Cell Apr 2001, 13 (4) 843-852; DOI: 10.1105/tpc.13.4.843

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Auxin Transport Promotes Arabidopsis Lateral Root Initiation
Ilda Casimiro, Alan Marchant, Rishikesh P. Bhalerao, Tom Beeckman, Sandra Dhooge, Ranjan Swarup, Neil Graham, Dirk Inzé, Goran Sandberg, Pedro J. Casero, Malcolm Bennett
The Plant Cell Apr 2001, 13 (4) 843-852; DOI: 10.1105/tpc.13.4.843
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The Plant Cell Online: 13 (4)
The Plant Cell
Vol. 13, Issue 4
Apr 2001
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