| Literature DB >> 11910006 |
Alan Marchant1, Rishikesh Bhalerao, Ilda Casimiro, Jan Eklöf, Pedro J Casero, Malcolm Bennett, Goran Sandberg.
Abstract
Arabidopsis root architecture is regulated by shoot-derived signals such as nitrate and auxin. We report that mutations in the putative auxin influx carrier AUX1 modify root architecture as a result of the disruption in hormone transport between indole-3-acetic acid (IAA) source and sink tissues. Gas chromatography-selected reaction monitoring-mass spectrometry measurements revealed that the aux1 mutant exhibited altered IAA distribution in young leaf and root tissues, the major IAA source and sink organs, respectively, in the developing seedling. Expression studies using the auxin-inducible reporter IAA2::uidA revealed that AUX1 facilitates IAA loading into the leaf vascular transport system. AUX1 also facilitates IAA unloading in the primary root apex and developing lateral root primordium. Exogenous application of the synthetic auxin 1-naphthylacetic acid is able to rescue the aux1 lateral root phenotype, implying that root auxin levels are suboptimal for lateral root primordium initiation in the mutant.Entities:
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Year: 2002 PMID: 11910006 PMCID: PMC150581 DOI: 10.1105/tpc.010354
Source DB: PubMed Journal: Plant Cell ISSN: 1040-4651 Impact factor: 11.277