Patterning of inflorescences and flowers by the F-Box protein DOUBLE TOP and the LEAFY homolog ABERRANT LEAF AND FLOWER of petunia.
نویسندگان
چکیده
Angiosperms display a wide variety of inflorescence architectures differing in the positions where flowers or branches arise. The expression of floral meristem identity (FMI) genes determines when and where flowers are formed. In Arabidopsis thaliana, this is regulated via transcription of LEAFY (LFY), which encodes a transcription factor that promotes FMI. We found that this is regulated in petunia (Petunia hybrida) via transcription of a distinct gene, DOUBLE TOP (DOT), a homolog of UNUSUAL FLORAL ORGANS (UFO) from Arabidopsis. Mutation of DOT or its tomato (Solanum lycopersicum) homolog ANANTHA abolishes FMI. Ubiquitous expression of DOT or UFO in petunia causes very early flowering and transforms the inflorescence into a solitary flower and leaves into petals. Ectopic expression of DOT or UFO together with LFY or its homolog ABERRANT LEAF AND FLOWER (ALF) in petunia seedlings activates genes required for identity or outgrowth of organ primordia. DOT interacts physically with ALF, suggesting that it activates ALF by a posttranslational mechanism. Our findings suggest a wider role than previously thought for DOT and UFO in the patterning of flowers and indicate that the different roles of LFY and UFO homologs in the spatiotemporal control of floral identity in distinct species result from their divergent expression patterns.
منابع مشابه
Dev121905 2822..2831
Higher plant species diverged extensively with regard to the moment (flowering time) and position (inflorescence architecture) at which flowers are formed. This seems largely caused by variation in the expression patterns of conserved genes that specify floral meristem identity (FMI), rather than changes in the encoded proteins. Here, we report a functional comparison of the promoters of homolo...
متن کاملChanges in cis-regulatory elements of a key floral regulator are associated with divergence of inflorescence architectures.
Higher plant species diverged extensively with regard to the moment (flowering time) and position (inflorescence architecture) at which flowers are formed. This seems largely caused by variation in the expression patterns of conserved genes that specify floral meristem identity (FMI), rather than changes in the encoded proteins. Here, we report a functional comparison of the promoters of homolo...
متن کاملThe petunia floral pathway: target genes of ALF, DOT and EVG
The specification of floral identity of meristems in petunia requires floral meristem identity genes, ABERRANT LEAF AND FLOWER (ALF), DOUBLE TOP (DOT) and EVERGREEN (EVG). In order to further characterize the role of these genes in inflorescence and flower development, we employed two complementary approaches to find their early target genes. We compared the gene expression profiles of single, ...
متن کاملStamina pistilloida, the Pea ortholog of Fim and UFO, is required for normal development of flowers, inflorescences, and leaves.
Isolation and characterization of two severe alleles at the Stamina pistilloida (Stp) locus reveals that Stp is involved in a wide range of developmental processes in the garden pea. The most severe allele, stp-4, results in flowers consisting almost entirely of sepals and carpels. Production of ectopic secondary flowers in stp-4 plants suggests that Stp is involved in specifying floral meriste...
متن کاملThe role of the APETALA1-like gene PIE07 in petunia
In Arabidopsis the floral identity of meristems is specified by the expression of a handful of genes that are activated upon the cues from several pathways leading to flowering. One of these genes is LEAFY (LFY) from Arabidopsis, which encodes a transcription factor that directly activates the expression of the floral identity MADS-box gene APETALA1 (AP1). In petunia, LFY ortholog ABERRANT LEAF...
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ورودعنوان ژورنال:
- The Plant cell
دوره 20 8 شماره
صفحات -
تاریخ انتشار 2008