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hca: an Arabidopsis mutant exhibiting unusual cambial activity and altered vascular patterning

Authors :
Jean-Pierre Renou
Simon R. Turner
Björn Sundberg
Christophe Pineau
Gaetan Lemonnier
Amandine Freydier
Alain Jauneau
Alain M. Boudet
Deborah Goffner
Lise Jouanin
Petr Tarkowski
Philippe Ranocha
Magalie Pichon
Göran Sandberg
Source :
The Plant Journal. 44:271-289
Publication Year :
2005
Publisher :
Wiley, 2005.

Abstract

By screening a T-DNA population of Arabidopsis mutants for alterations in inflorescence stem vasculature, we have isolated a mutant with a dramatic increase in vascular tissue development, characterized by a continuous ring of xylem/phloem. This phenotype is the consequence of premature and numerous cambial cell divisions in both the fascicular and interfascicular regions that result in the loss of the alternate vascular bundle/fiber organization typically observed in Arabidopsis stems. The mutant was therefore designated high cambial activity (hca). The hca mutation also resulted in pleiotropic effects including stunting and a delay in developmental events such as flowering and senescence. The physiological characterization of hca seedlings in vitro revealed an altered auxin and cytokinin response and, most strikingly, an enhanced sensitivity to cytokinin. These results were substantiated by comparative microarray analysis between hca and wild-type plants. The genetic analysis of hca indicated that the mutant phenotype was not tagged by the T-DNA and that the hca mutation segregated as a single recessive locus, mapping to the long arm of chromosome 4. We propose that hca is involved in mechanisms controlling the arrangement of vascular bundles throughout the plant by regulating the auxin-cytokinin sensitivity of vascular cambial cells. Thus, the hca mutant is a useful model for examining the genetic and hormonal control of cambial growth and differentiation.

Details

ISSN :
09607412
Volume :
44
Database :
OpenAIRE
Journal :
The Plant Journal
Accession number :
edsair.doi...........732a26baa3b6ebf0678b5f22b9580388
Full Text :
https://doi.org/10.1111/j.1365-313x.2005.02526.x