Auxin-Mediated Cell Cycle Activation during Early Lateral Root Initiation
Top Cited Papers
Open Access
- 16 September 2002
- journal article
- Published by Oxford University Press (OUP) in Plant Cell
- Vol. 14 (10) , 2339-2351
- https://doi.org/10.1105/tpc.004960
Abstract
Lateral root formation can be divided into two major phases: pericycle activation and meristem establishment. In Arabidopsis, the first lateral root initiation event is spatially and temporally asynchronous and involves a limited number of cells in the xylem pericycle. To study the molecular regulation during pericycle activation, we developed a lateral root–inducible system. Successive treatments with an auxin transport inhibitor and exogenous auxin were used to prevent the first formative divisions and then to activate the entire pericycle. Our morphological and molecular data show that, in this inducible system, xylem pericycle activation was synchronized and enhanced to cover the entire length of the root. The results also indicate that the inducible system can be considered a novel in planta system for the study of synchronized cell cycle reactivation. In addition, the expression patterns of Kip-Related Protein2 (KRP2) in the pericycle and its ectopic expression data revealed that the cyclin-dependent kinase inhibitor plays a significant role in the regulation of lateral root initiation. KRP2 appears to regulate early lateral root initiation by blocking the G1-to-S transition and to be regulated transcriptionally by auxin.Keywords
This publication has 43 references indexed in Scilit:
- Control of proliferation, endoreduplication and differentiation by theArabidopsisE2Fa-DPa transcription factorThe EMBO Journal, 2002
- Interaction of the Arabidopsis E2F and DP Proteins Confers Their Concomitant Nuclear Translocation and TransactivationPlant Physiology, 2002
- Analysis of cell division parameters and cell cycle gene expression during the cultivation of Arabidopsis thaliana cell suspensions.2001
- When plant cells decide to divideTrends in Plant Science, 2001
- Functional Analysis of Cyclin-Dependent Kinase Inhibitors of ArabidopsisPlant Cell, 2001
- The peri-cell-cycle in ArabidopsisJournal of Experimental Botany, 2001
- Expression of the plant cyclin‐dependent kinase inhibitor ICK1 affects cell division, plant growth and morphologyThe Plant Journal, 2000
- Indole-3-acetic acid is synthesized from L -tryptophan in roots of Arabidopsis thalianaPlanta, 1998
- ICK1, a cyclin‐dependent protein kinase inhibitor fromArabidopsis thalianainteracts with both Cdc2a and CycD3, and its expression is induced by abscisic acidThe Plant Journal, 1998
- A plant cyclin-dependent kinase inhibitor geneNature, 1997