Proceedings of the National Academy of Sciences · 2003 · 537 citations · 27 references
BiologyGfp-based Auxin BiosensorDevelopmental BiologyPlant Hormone AuxinBotanyNatural SciencesGravity-induced Root CurvatureMorphogenesisRoot SystemCytoskeletonRoot MorphologyMedicineCell BiologyCellular PhysiologyPlant HormonePlant PhysiologyPlant Development
Gravity-induced root curvature has long been considered to be regulated by differential distribution of the plant hormone auxin. However, the cells establishing these gradients, and the transport mechanisms involved, remain to be identified. Here, we describe a GFP-based auxin biosensor to monitor auxin during Arabidopsis root gravitropism at cellular resolution. We identify elevated auxin levels at the root apex in columella cells, the site of gravity perception, and an asymmetric auxin flux from these cells to the lateral root cap (LRC) and toward the elongation zone after gravistimulation. We differentiate between an efflux-dependent lateral auxin transport from columella to LRC cells, and an efflux- and influx-dependent basipetal transport from the LRC to the elongation zone. We further demonstrate that endogenous gravitropic auxin gradients develop even in the presence of an exogenous source of auxin. Live-cell auxin imaging provides unprecedented insights into gravity-regulated auxin flux at cellular resolution, and strongly suggests that this flux is a prerequisite for root gravitropism.
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Lateral relocation of auxin efflux regulator PIN3 mediates tropism in Arabidopsis
Justyna Wiśniewska, Eva Benková, Kurt Mendgen et al. · Nature · 2002 · 1.4K citations · Full text
An Auxin-Dependent Distal Organizer of Pattern and Polarity in the Arabidopsis Root
Sabrina Sabatini, Dimitris Beis, Harald Wolkenfelt et al. · Cell · 1999 · 1.4K citations · Full text
Auxin transport inhibitors block PIN1 cycling and vesicle trafficking
Niko Geldner, York-Dieter Stierhof, Gerd Jürgens et al. · Nature · 2001 · 1.2K citations
Auxin Transport Inhibitors, Cytoskeleton, Protein Transport +4