KNAT1 and ERECTA Regulate Inflorescence Architecture in Arabidopsis
- 1 March 2002
- journal article
- research article
- Published by Oxford University Press (OUP) in Plant Cell
- Vol. 14 (3) , 547-558
- https://doi.org/10.1105/tpc.010391
Abstract
Plant architecture is dictated by morphogenetic factors that specify the number and symmetry of lateral organs as well as their positions relative to the primary axis. Mutants defective in the patterning of leaves and floral organs have provided new insights on the signaling pathways involved, but there is comparatively little information regarding aspects of the patterning of stems, which play a dominant role in architecture. To this end, we have characterized five alleles of the brevipedicellus mutant of Arabidopsis, which exhibits reduced internode and pedicel lengths, bends at nodes, and downward-oriented flowers and siliques. Bends in stems correlate with a loss of chlorenchyma tissue at the node adjacent to lateral organs and in the abaxial regions of pedicels. A stripe of achlorophyllous tissue extends basipetally from each node and is positioned over the vasculature that services the corresponding lateral organ. Map-based cloning and complementation studies revealed that a null mutation in the KNAT1 homeobox gene is responsible for these pleiotropic phenotypes. Our observation that wild-type Arabidopsis plants also downregulate chlorenchyma development adjacent to lateral organs leads us to propose that KNAT1 and ERECTA are required to restrict the action of an asymmetrically localized, vasculature-associated chlorenchyma repressor at the nodes. Our data indicate that it is feasible to alter the architecture of ornamental and crop plants by manipulating these genetically defined pathways.Keywords
This publication has 32 references indexed in Scilit:
- KNAT2: Evidence for a Link between Knotted-like Genes and Carpel DevelopmentPlant Cell, 2001
- GENETIC ANALYSIS OF HORMONE SIGNALINGAnnual Review of Plant Biology, 1999
- KNAT1 induces lobed leaves with ectopic meristems when overexpressed in Arabidopsis.Plant Cell, 1996
- The Arabidopsis ERECTA gene encodes a putative receptor protein kinase with extracellular leucine-rich repeats.Plant Cell, 1996
- A member of the KNOTTED class of homeodomain proteins encoded by the STM gene of ArabidopsisNature, 1996
- Ectopic expression of the knox homeo box gene rough sheath1 alters cell fate in the maize leaf.Genes & Development, 1995
- Sequence analysis and expression patterns divide the maize knotted1-like homeobox genes into two classes.Plant Cell, 1994
- A knotted1-like homeobox gene in Arabidopsis is expressed in the vegetative meristem and dramatically alters leaf morphology when overexpressed in transgenic plants.Plant Cell, 1994
- A procedure for mapping Arabidopsis mutations using co‐dominant ecotype‐specific PCR‐based markersThe Plant Journal, 1993
- Overexpression of the maize homeo box gene, KNOTTED-1, causes a switch from determinate to indeterminate cell fates.Genes & Development, 1993