The transition from the juvenile to the adult phase of shoot development in plants is accompanied by changes in vegetative morphology and an increase in reproductive potential. Here, we describe the regulatory mechanism of this transition. We show that miR156 is necessary and sufficient for the expression of the juvenile phase, and regulates the timing of the juvenile-to-adult transition by coordinating the expression of several pathways that control different aspects of this process. miR156 acts by repressing the expression of functionally distinct SPL transcription factors. miR172 acts downstream of miR156 to promote adult epidermal identity. miR156 regulates the expression of miR172 via SPL9 which, redundantly with SPL10, directly promot...
During vegetative growth plants pass from a juvenile to an adult phase causing changes in shoot morp...
The development of multicellular organisms relies on interconnected genetic programs that control pr...
<div><p>Correct developmental timing is essential for plant fitness and reproductive success. Two im...
SummaryThe transition from the juvenile to the adult phase of shoot development in plants is accompa...
The transition from the juvenile to the adult phase of shoot development in plants is accompanied by...
Leaves produced at different times of shoot development are often morphologically distinct. Some of ...
The timing of the transitions between the juvenile and adult vegetative stages (vegetative phase cha...
SPL3, SPL4 and SPL5 (SPL3/4/5) are closely related members of the SQUAMOSA PROMOTER BINDING PROTEIN-...
Plant development progresses through distinct phases: vegetative growth, followed by a reproductive ...
After germination, plants enter juvenile vegetative phase and then transition to an adult vegetative...
Evolutionarily conserved microRNAs (miRNAs) usually have high copy numbers in the genome. The redund...
Vegetative phase change is regulated by a decrease in the abundance of the miRNAs, miR156 and miR157...
MicroRNAs (miRNAs) are involved in developmental programmes of plants, including seed germination an...
<div><p>Vegetative phase change is regulated by a decrease in the abundance of the miRNAs, miR156 an...
Plant development progresses through distinct phases: vegetative growth, followed by a reproductive ...
During vegetative growth plants pass from a juvenile to an adult phase causing changes in shoot morp...
The development of multicellular organisms relies on interconnected genetic programs that control pr...
<div><p>Correct developmental timing is essential for plant fitness and reproductive success. Two im...
SummaryThe transition from the juvenile to the adult phase of shoot development in plants is accompa...
The transition from the juvenile to the adult phase of shoot development in plants is accompanied by...
Leaves produced at different times of shoot development are often morphologically distinct. Some of ...
The timing of the transitions between the juvenile and adult vegetative stages (vegetative phase cha...
SPL3, SPL4 and SPL5 (SPL3/4/5) are closely related members of the SQUAMOSA PROMOTER BINDING PROTEIN-...
Plant development progresses through distinct phases: vegetative growth, followed by a reproductive ...
After germination, plants enter juvenile vegetative phase and then transition to an adult vegetative...
Evolutionarily conserved microRNAs (miRNAs) usually have high copy numbers in the genome. The redund...
Vegetative phase change is regulated by a decrease in the abundance of the miRNAs, miR156 and miR157...
MicroRNAs (miRNAs) are involved in developmental programmes of plants, including seed germination an...
<div><p>Vegetative phase change is regulated by a decrease in the abundance of the miRNAs, miR156 an...
Plant development progresses through distinct phases: vegetative growth, followed by a reproductive ...
During vegetative growth plants pass from a juvenile to an adult phase causing changes in shoot morp...
The development of multicellular organisms relies on interconnected genetic programs that control pr...
<div><p>Correct developmental timing is essential for plant fitness and reproductive success. Two im...