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Plant Biol (Stuttg) ; 20(3): 426-432, 2018 May.
Article in English | MEDLINE | ID: mdl-29450949

ABSTRACT

The spatial deployment of lateral roots determines the ability of a plant to interact with the surrounding environment for nutrition and anchorage. This paper shows that besides the pericycle, the vascular cambium becomes active in Arabidopsis thaliana taproot at a later stage of development and is also able to form new lateral roots. To demonstrate the above, we implemented a two-step approach in which the first step leads to development of a secondary structure in A. thaliana taproot, and the second applies a mechanical stress on the vascular cambium to initiate formation of a new lateral root primordium. GUS staining showed PRE3, DR5 and WOX11 signals in the cambial zone of the root during new lateral root formation. An advanced level of wood formation, characterized by the presence of medullar rays, was achieved. Preliminary investigations suggest the involvement of auxin and two transcription factors (PRE3/ATBS1/bHLH135/TMO7 and WOX11) in the transition of some vascular cambium initials from a role as producers of xylem/phloem mother cells to founder cells of a new lateral root primordium.


Subject(s)
Arabidopsis Proteins/physiology , Arabidopsis/growth & development , Basic Helix-Loop-Helix Transcription Factors/physiology , Homeodomain Proteins/physiology , Plant Roots/growth & development , Transcription Factors/physiology , Arabidopsis/metabolism , Arabidopsis/ultrastructure , Indoleacetic Acids/metabolism , Plant Growth Regulators/physiology , Plant Roots/metabolism , Plant Roots/ultrastructure , Seedlings/growth & development
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