Authors
Laurent Laplaze, Eva Benkova, Ilda Casimiro, Lies Maes, Steffen Vanneste, Ranjan Swarup, Dolf Weijers, Vanessa Calvo, Boris Parizot, Maria Begona Herrera-Rodriguez, Remko Offringa, Neil Graham, Patrick Doumas, Jiri Friml, Didier Bogusz, Tom Beeckman, Malcolm Bennett
Publication date
2007/12/1
Journal
The Plant Cell
Volume
19
Issue
12
Pages
3889-3900
Publisher
American Society of Plant Biologists
Description
In Arabidopsis thaliana, lateral roots are formed from root pericycle cells adjacent to the xylem poles. Lateral root development is regulated antagonistically by the plant hormones auxin and cytokinin. While a great deal is known about how auxin promotes lateral root development, the mechanism of cytokinin repression is still unclear. Elevating cytokinin levels was observed to disrupt lateral root initiation and the regular pattern of divisions that characterizes lateral root development in Arabidopsis. To identify the stage of lateral root development that is sensitive to cytokinins, we targeted the expression of the Agrobacterium tumefaciens cytokinin biosynthesis enzyme isopentenyltransferase to either xylem-pole pericycle cells or young lateral root primordia using GAL4-GFP enhancer trap lines. Transactivation experiments revealed that xylem-pole pericycle cells are sensitive to cytokinins, whereas young lateral …
Total citations
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Scholar articles
L Laplaze, E Benkova, I Casimiro, L Maes, S Vanneste… - The Plant Cell, 2007