|
|
|
|||
| Home Help Feedback Subscriptions Archive Search | ||||
The fully linked HTML version of this article has now been published.
Leaves are determinate organs that arise from the flanks of the shoot apical meristem as polar structures with distinct adaxial (dorsal) and abaxial (ventral) sides. Opposing regulatory interactions between genes specifying adaxial or abaxial fates function to maintain dorsoventral polarity. One component of this regulatory network is the Myb-domain transcription factor gene ASYMMETRIC LEAVES1 (AS1). The contribution of AS1 to leaf polarity varies across different plant species; however, in Arabidopsis, as1 mutants have only mild defects in leaf polarity, suggesting that alternate pathways exist for leaf patterning. Here, we describe three genes, PIGGYBACK1 (PGY1), PGY2 and PGY3, which alter leaf patterning in the absence of AS1. All three pgy mutants develop dramatic ectopic lamina outgrowths on the adaxial side of the leaf in an as1 mutant background. This leaf-patterning defect is enhanced by mutations in the adaxial HD-ZIPIII gene REVOLUTA (REV), and is suppressed by mutations in abaxial KANADI genes. Thus, PGY genes influence leaf development via genetic interactions with the HD-ZIPIII-KANADI pathway. PGY1, PGY2 and PGY3 encode cytoplasmic large subunit ribosomal proteins, L10a, L9 and L5, respectively. Our results suggest a role for translation in leaf dorsoventral patterning and indicate that ribosomes are regulators of key patterning events in plant development.
This article has been cited by other articles:
Development ePress online publication date 27 Feb 2008
doi: 10.1242/dev.016469
This Article ![]()
![]()
Full Text (PDF)
![]()
All Versions of this Article:
dev.016469v1
135/7/1315
most recent![]()
Alert me when this article is cited
![]()
Alert me if a correction is posted
![]()
Services ![]()
![]()
Email this article to a friend
![]()
Similar articles in this journal
![]()
Similar articles in PubMed
![]()
Alert me to new issues of the journal
![]()
Download to citation manager
![]()
![]()
Citing Articles ![]()
![]()
Citing Articles via HighWire
![]()
Citing Articles via Google Scholar
![]()
Google Scholar ![]()
![]()
Articles by Pinon, V. ![]()
Articles by Byrne, M. E. ![]()
Search for Related Content
![]()
PubMed ![]()
![]()
PubMed Citation
![]()
Articles by Pinon, V.
![]()
Articles by Byrne, M. E.
![]()
Social Bookmarking ![]()
![]()
What's this?
Research article
Three PIGGYBACK genes that specifically influence leaf patterning encode ribosomal proteins
* Author for correspondence (e-mail: mary.byrne{at}bbsrc.ac.uk)
![]()
CiteULike
Complore
Connotea
Del.icio.us
Digg
Reddit
Technorati
Twitter What's this?
![]()
![]()

![]()
![]()
![]()
A. Y. Husbands, D. H. Chitwood, Y. Plavskin, and M. C.P. Timmermans
Signals and prepatterns: new insights into organ polarity in plants
Genes & Dev.,
September 1, 2009;
23(17):
1986 - 1997.
[Abstract]
[Full Text]
[PDF]
![]()
![]()
![]()

![]()
![]()
![]()
M. Vandenbussche, A. Horstman, J. Zethof, R. Koes, A. S. Rijpkema, and T. Gerats
Differential Recruitment of WOX Transcription Factors for Lateral Development and Organ Fusion in Petunia and Arabidopsis
PLANT CELL,
August 1, 2009;
21(8):
2269 - 2283.
[Abstract]
[Full Text]
[PDF]
![]()
© The Company of Biologists Ltd 2008