Literature DB >> 15051881

Transcript profiling of early lateral root initiation.

Kristiina Himanen1, Marnik Vuylsteke, Steffen Vanneste, Steven Vercruysse, Elodie Boucheron, Philippe Alard, Dominique Chriqui, Marc Van Montagu, Dirk Inzé, Tom Beeckman.   

Abstract

At the onset of lateral root initiation in Arabidopsis thaliana, the phytohormone auxin activates xylem pole pericycle cells for asymmetric cell division. However, the molecular events leading from auxin to lateral root initiation are poorly understood, in part because the few responsive cells in the process are embedded in the root and are thus difficult to access. A lateral root induction system, in which most xylem pole pericycle cells were synchronously activated by auxin transport inhibition followed by auxin application, was used for microarray transcript profiling. Of 4,600 genes analyzed, 906 significantly differentially regulated genes were identified that could be grouped into six major clusters. Basically, three major patterns were discerned representing induced, repressed, and transiently expressed genes. Analysis of the coregulated genes, which were specific for each time point, provided new insight into the molecular regulation and signal transduction preceding lateral root initiation in Arabidopsis. The reproducible expression profiles during a time course allowed us to define four stages that precede the cell division in the pericycle. These early stages were characterized by G1 cell cycle block, auxin perception, and signal transduction, followed by progression over G1/S transition and G2/M transition. All these processes took place within 6 h after transfer from N-1-naphthylphthalamic acid to 1-naphthalene acetic acid. These results indicate that this lateral root induction system represents a unique synchronized system that allows the systematic study of the developmental program upstream of the cell cycle activation during lateral root initiation.

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Year:  2004        PMID: 15051881      PMCID: PMC387388          DOI: 10.1073/pnas.0308702101

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  41 in total

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2.  Assessing gene significance from cDNA microarray expression data via mixed models.

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Review 3.  Cell-cycle-dependent translational control.

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Journal:  Nucleic Acids Res       Date:  2003-01-01       Impact factor: 16.971

6.  The peri-cell-cycle in Arabidopsis.

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8.  Cluster analysis and display of genome-wide expression patterns.

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9.  Auxin-mediated cell cycle activation during early lateral root initiation.

Authors:  Kristiina Himanen; Elodie Boucheron; Steffen Vanneste; Janice de Almeida Engler; Dirk Inzé; Tom Beeckman
Journal:  Plant Cell       Date:  2002-10       Impact factor: 11.277

10.  Arabidopsis AUX1 gene: a permease-like regulator of root gravitropism.

Authors:  M J Bennett; A Marchant; H G Green; S T May; S P Ward; P A Millner; A R Walker; B Schulz; K A Feldmann
Journal:  Science       Date:  1996-08-16       Impact factor: 47.728

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  76 in total

1.  Genetic approach towards the identification of auxin-cytokinin crosstalk components involved in root development.

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2.  Gibberellins regulate lateral root formation in Populus through interactions with auxin and other hormones.

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Authors:  Paul Overvoorde; Hidehiro Fukaki; Tom Beeckman
Journal:  Cold Spring Harb Perspect Biol       Date:  2010-04-28       Impact factor: 10.005

Review 4.  Genetic control of root growth: from genes to networks.

Authors:  Radka Slovak; Takehiko Ogura; Santosh B Satbhai; Daniela Ristova; Wolfgang Busch
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5.  Cell cycle progression in the pericycle is not sufficient for SOLITARY ROOT/IAA14-mediated lateral root initiation in Arabidopsis thaliana.

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7.  Nodulation phenotypes of gibberellin and brassinosteroid mutants of pea.

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8.  Expression profiles of 10,422 genes at early stage of low nitrogen stress in rice assayed using a cDNA microarray.

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Review 9.  Auxin: regulation, action, and interaction.

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10.  A kinetic analysis of the auxin transcriptome reveals cell wall remodeling proteins that modulate lateral root development in Arabidopsis.

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Journal:  Plant Cell       Date:  2013-09-17       Impact factor: 11.277

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