The Plant Cell · 2012 · 172 citations · 53 references
BiologyDevelopmental BiologyBotanyRoot GrowthNatural SciencesLateral Root OrganogenesisMorphogenesisRoot SystemRoot MorphologyOrganogenesisGene ExpressionMedicineCell BiologyLateral Root BranchingPlant PhysiologyPlant HormonePlant Development
The architecture of a plant's root system, established postembryonically, results from both coordinated root growth and lateral root branching. The plant hormones auxin and cytokinin are central endogenous signaling molecules that regulate lateral root organogenesis positively and negatively, respectively. Tight control and mutual balance of their antagonistic activities are particularly important during the early phases of lateral root organogenesis to ensure continuous lateral root initiation (LRI) and proper development of lateral root primordia (LRP). Here, we show that the early phases of lateral root organogenesis, including priming and initiation, take place in root zones with a repressed cytokinin response. Accordingly, ectopic overproduction of cytokinin in the root basal meristem most efficiently inhibits LRI. Enhanced cytokinin responses in pericycle cells between existing LRP might restrict LRI near existing LRP and, when compromised, ectopic LRI occurs. Furthermore, our results demonstrate that young LRP are more sensitive to perturbations in the cytokinin activity than are developmentally more advanced primordia. We hypothesize that the effect of cytokinin on the development of primordia possibly depends on the robustness and stability of the auxin gradient.
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Local, Efflux-Dependent Auxin Gradients as a Common Module for Plant Organ Formation
Eva Benková, Marta Michniewicz, Michael Sauer et al. · Cell · 2003 · 2.6K citations · Full text
Efflux-dependent auxin gradients establish the apical–basal axis of Arabidopsis
Jiří Friml, Anne Vieten, Michael Sauer et al. · Nature · 2003 · 1.9K citations