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Computer simulations reveal properties of the cell-cell signaling network at the shoot apex in Arabidopsis.


ABSTRACT: The active transport of the plant hormone auxin plays a major role in the initiation of organs at the shoot apex. Polar localized membrane proteins of the PIN1 family facilitate this transport, and recent observations suggest that auxin maxima created by these proteins are at the basis of organ initiation. This hypothesis is based on the visual, qualitative characterization of the complex distribution patterns of the PIN1 protein in Arabidopsis. To take these analyses further, we investigated the properties of the patterns using computational modeling. The simulations reveal previously undescribed properties of PIN1 distribution. In particular, they suggest an important role for the meristem summit in the distribution of auxin. We confirm these predictions by further experimentation and propose a detailed model for the dynamics of auxin fluxes at the shoot apex.

SUBMITTER: de Reuille PB 

PROVIDER: S-EPMC1360567 | biostudies-literature | 2006 Jan

REPOSITORIES: biostudies-literature

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Computer simulations reveal properties of the cell-cell signaling network at the shoot apex in Arabidopsis.

de Reuille Pierre Barbier PB   Bohn-Courseau Isabelle I   Ljung Karin K   Morin Halima H   Carraro Nicola N   Godin Christophe C   Traas Jan J  

Proceedings of the National Academy of Sciences of the United States of America 20060123 5


The active transport of the plant hormone auxin plays a major role in the initiation of organs at the shoot apex. Polar localized membrane proteins of the PIN1 family facilitate this transport, and recent observations suggest that auxin maxima created by these proteins are at the basis of organ initiation. This hypothesis is based on the visual, qualitative characterization of the complex distribution patterns of the PIN1 protein in Arabidopsis. To take these analyses further, we investigated th  ...[more]

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