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Determination of Arabidopsis floral meristem identity by AGAMOUS
- Source :
- The Plant Cell. 9:393-408
- Publication Year :
- 1997
- Publisher :
- Oxford University Press (OUP), 1997.
-
Abstract
- Determinate growth of floral meristems in Arabidopsis requires the function of the floral regulatory gene AGAMOUS (AG). Expression of AG mRNA in the central region of floral meristems relies on the partially overlapping functions of the LEAFY (LFY) and APETALA1 (AP1) genes, which promote initial floral meristem identity. Here, we provide evidence that AG function is required for the final definition of floral meristem identity and that constitutive AG function can promote, independent of LFY and AP1 functions, the determinate floral state in the center of reproductive meristems. Loss-of-function analysis showed that the indeterminate central region of the ag mutant floral meristem undergoes conversion to an inflorescence meristem when long-day-dependent flowering stimulus is removed. Furthermore, gain-of-function analysis demonstrated that ectopic AG function results in precocious flowering and the formation of terminal flowers at apices of both the primary inflorescence and axillary branches of transgenic Arabidopsis plants in which AG expression is under the control of the 35S promoter from cauliflower mosaic virus. Similar phenotypes were also observed in lfy ap1 double mutants carrying a 35S-AG transgene. Together, these results indicate that AG is a principal developmental switch that controls the transition of meristem activity from indeterminate to determinate.
- Subjects :
- Transcription, Genetic
Meristem
Arabidopsis
Plant Science
Genes, Plant
AGAMOUS Protein, Arabidopsis
Gene Expression Regulation, Plant
Genes, Regulator
RNA, Messenger
Leafy
Plant Proteins
Genetics
biology
Agamous
fungi
food and beverages
Cell Biology
biology.organism_classification
Indeterminate growth
DNA-Binding Proteins
ABC model of flower development
Phenotype
Inflorescence
Mutation
Microscopy, Electron, Scanning
Cauliflower mosaic virus
Research Article
Subjects
Details
- ISSN :
- 1532298X and 10404651
- Volume :
- 9
- Database :
- OpenAIRE
- Journal :
- The Plant Cell
- Accession number :
- edsair.doi.dedup.....2031f1188538512fcb1204cad49ffb00
- Full Text :
- https://doi.org/10.1105/tpc.9.3.393