CLASS C GENE THE ABC MODEL OF FLOWER DEVELOPMENT
18.3. Class C gene
Class C genes encoded one gene AGAMOUS (AG), whose product act as a transcription factor and responsible for the formation of stamens and carpel within whorls 3 and 4 respectively. Genes also act in the floral meristem. the AG mutants show the conversion of androecium or stamen and gynoecium or carpel into petals and sepals, in their places.
The functional proteins class A inhibit C gene expression in the first two whorls and functional protein of C inhibit class A gene expression in the third and fourth whorl. Thus, mutually antagonistic relationship between class A and class C gene, the remaining gene get extend due to the mutation in class A or class C gene.
When chemical signal florigen produces by leaves, it is passed to the apical vegetative meristem and turn on the Flowering Locus T gene, as a result, the expression of LEAFY gene takes place. Leafy act as a transcription factor for ABC gene and binds to the promoter of ABC genes as the dimer, It switches on the ABC gene expression and causes undifferentiated cells in the meristem to change fate and develop as flowers.
A leafy plant result due to the mutation in LEAFY because the developmental ground state of a floral organ is a leaf. If there are no ABC transcription factors to switch on floral genes then vegetative meristem carries on making leaves, as a result, no transition from vegetative growth to flowering.
Short terminal flower formation takes place due to overexpression of LEAFY. Terminal Flower 1 (TFL1) cause repression of LEAFY activity. A single flower development takes place due to mutation of TFL1 and here LEAFY is no longer repressed. Conversely, flowering is delayed, if TFL1 is constitutively expressed.
ABC mutant genes plant produce homeotic mutant flowers.
Class A Mutants
Sepals and petals get transformed into stamens and carpels. This type of mutant called APETALA-1 and APETALA-2. Class A gene does not cause inhibition of Class C genes activity, consequently, it gets spread into the other whorls.
Class B Mutants
Petals and stamens get transformed into sepals and carpels respectively. This type of mutant called APETALA 3. ABC genes cannot work together in the absence of class B gene, thus petal and stamen development take place.
Class C Mutants
Stamens and carpels get transformed into petals and sepals. Class C gene does not cause inhibition of Class A gene activity consequently it gets spread into the other whorls. This type of mutant called agamous.
Only sepals formation takes place in all four whorls if the mutation occurs in both class B gene and class C gene.
Only carpels formation takes place in all four whorls if the mutation occurs in both classes A gene and class B gene.
Class A gene and class C gene mutant: leaves formation takes place in whorls first and fourth along with petal and stamen intermediates formation takes place in whorls second and third if the mutation occurs in both classes A gene and class C gene.
- CLEAVAGE AND AXIS FORMATION IN C. ELEGANS
- ANTERIOR POSTERIOR AXIS DIFFERENTIATION IN DROSOPHILA
- SEA URCHIN GASTRULATION
- XENOPUS GASTRULATION
- MATING SWITCH
- MORPHOGENESIS AND ORGANOGENESIS IN AMINALS
- CELL AGGREGATION AND DIFFERENTIATION IN DICTYOSTELIUM
- LIMB DEVELOPMENT AND REGENERATION
- DEVELOPMENT OF NEURONS
- LARVAE FORMATION
- SEX DETERMINATION
- EYE LENS INDUCTION
- THE ABC MODEL OF FLOWER DEVELOPMENT