Your browser doesn't support javascript.
loading
Show: 20 | 50 | 100
Results 1 - 2 de 2
Filter
Add more filters










Database
Language
Publication year range
1.
Nat Genet ; 44(12): 1393-8, 2012 Dec.
Article in English | MEDLINE | ID: mdl-23143603

ABSTRACT

The transition to flowering is a major determinant of plant architecture, and variation in the timing of flowering can have profound effects on inflorescence architecture, flower production and yield. Here, we show that the tomato mutant terminating flower (tmf) flowers early and converts the multiflowered inflorescence into a solitary flower as a result of precocious activation of a conserved floral specification complex encoded by ANANTHA (AN) and FALSIFLORA (FA). Without TMF, the coordinated flowering process is disrupted, causing floral identity genes, such as AN and members of the SEPALLATA (SEP) family, to activate precociously, while the expression of flowering transition genes, such as FRUITFULL (FUL), is delayed. Indeed, driving AN expression precociously is sufficient to cause early flowering, and this expression transforms multiflowered inflorescences into normal solitary flowers resembling those of the Solanaceae species petunia and tobacco. Thus, by timing AN activation, TMF synchronizes flower formation with the gradual reproductive transition, which, in turn, has a key role in determining simple versus complex inflorescences.


Subject(s)
Flowers/genetics , Plant Proteins/genetics , Solanum lycopersicum/genetics , Transcription Factors/genetics , Flowers/growth & development , Gene Expression Regulation, Plant , Solanum lycopersicum/growth & development , Meristem/genetics , Mutation , Reproduction/genetics
2.
Plant Cell ; 22(6): 1977-97, 2010 Jun.
Article in English | MEDLINE | ID: mdl-20571113

ABSTRACT

In higher plants, the plastidial NADH dehydrogenase (Ndh) complex supports nonphotochemical electron fluxes from stromal electron donors to plastoquinones. Ndh functions in chloroplasts are not clearly established; however, its activity was linked to the prevention of the overreduction of stroma, especially under stress conditions. Here, we show by the characterization of Orr(Ds), a dominant transposon-tagged tomato (Solanum lycopersicum) mutant deficient in the NDH-M subunit, that this complex is also essential for the fruit ripening process. Alteration to the NDH complex in fruit changed the climacteric, ripening-associated metabolites and transcripts as well as fruit shelf life. Metabolic processes in chromoplasts of ripening tomato fruit were affected in Orr(Ds), as mutant fruit were yellow-orange and accumulated substantially less total carotenoids, mainly beta-carotene and lutein. The changes in carotenoids were largely influenced by environmental conditions and accompanied by modifications in levels of other fruit antioxidants, namely, flavonoids and tocopherols. In contrast with the pigmentation phenotype in mature mutant fruit, Orr(Ds) leaves and green fruits did not display a visible phenotype but exhibited reduced Ndh complex quantity and activity. This study therefore paves the way for further studies on the role of electron transport and redox reactions in the regulation of fruit ripening and its associated metabolism.


Subject(s)
Fruit/enzymology , NADH Dehydrogenase/metabolism , Plant Proteins/metabolism , Solanum lycopersicum/genetics , Carotenoids/metabolism , DNA Transposable Elements , DNA, Plant/genetics , Flavonoids/metabolism , Fruit/genetics , Gene Expression Profiling , Gene Expression Regulation, Developmental , Gene Expression Regulation, Plant , Genotype , Solanum lycopersicum/enzymology , Mutagenesis, Insertional , Mutation , NADH Dehydrogenase/genetics , Phenotype , Plant Proteins/genetics , Tocopherols/metabolism
SELECTION OF CITATIONS
SEARCH DETAIL
...