The regular arrangement of leaves around a plant's stem, called phyllotaxis, has for centuries attracted the attention of philosophers, mathematicians and natural scientists; however, to date, studies of phyllotaxis have been largely theoretical. Leaves and flowers are formed from the shoot apical meristem, triggered by the plant hormone auxin. Auxin is transported through plant tissues by specific cellular influx and efflux carrier proteins. Here we show that proteins involved in auxin transport regulate phyllotaxis. Our data indicate that auxin is transported upwards into the meristem through the epidermis and the outermost meristem cell layer. Existing leaf primordia act as sinks, redistributing auxin and creating its heterogeneous distr...
International audiencePlants continuously generate new organs through the activity of populations of...
Plants continuously generate new organs through the activity of populations of stem cells called mer...
International audiencePlants continuously generate new organs through the activity of populations of...
Phyllotaxis, the regular arrangement of leaves and flowers around the stem, is one of the most fasci...
Polar auxin transport lies at the core of many self-organizing phenomena sustaining continuous plant...
Polar auxin transport lies at the core of many self-organizing phenomena sustaining continuous plant...
Polar auxin transport lies at the core of many self-organizing phenomena sustaining continuous plant...
Polar auxin transport lies at the core of many self-organizing phenomena sustaining continuous plant...
Polar auxin transport lies at the core of many self-organizing phenomena sustaining continuous plant...
The plant hormone auxin plays a critical role in plant development. Central to its function is its d...
Polar auxin transport lies at the core of many self-organizing phenomena sustaining continuous plant...
The spatial arrangement of leaves and flowers around the stem, known as phyllotaxis, is controlled b...
The spatial arrangement of leaves and flowers around the stem, known as phyllotaxis, is controlled b...
Polar auxin transport lies at the core of many self-organizing phenomena sustaining continuous plant...
Polar auxin transport lies at the core of many self-organizing phenomena sustaining continuous plant...
International audiencePlants continuously generate new organs through the activity of populations of...
Plants continuously generate new organs through the activity of populations of stem cells called mer...
International audiencePlants continuously generate new organs through the activity of populations of...
Phyllotaxis, the regular arrangement of leaves and flowers around the stem, is one of the most fasci...
Polar auxin transport lies at the core of many self-organizing phenomena sustaining continuous plant...
Polar auxin transport lies at the core of many self-organizing phenomena sustaining continuous plant...
Polar auxin transport lies at the core of many self-organizing phenomena sustaining continuous plant...
Polar auxin transport lies at the core of many self-organizing phenomena sustaining continuous plant...
Polar auxin transport lies at the core of many self-organizing phenomena sustaining continuous plant...
The plant hormone auxin plays a critical role in plant development. Central to its function is its d...
Polar auxin transport lies at the core of many self-organizing phenomena sustaining continuous plant...
The spatial arrangement of leaves and flowers around the stem, known as phyllotaxis, is controlled b...
The spatial arrangement of leaves and flowers around the stem, known as phyllotaxis, is controlled b...
Polar auxin transport lies at the core of many self-organizing phenomena sustaining continuous plant...
Polar auxin transport lies at the core of many self-organizing phenomena sustaining continuous plant...
International audiencePlants continuously generate new organs through the activity of populations of...
Plants continuously generate new organs through the activity of populations of stem cells called mer...
International audiencePlants continuously generate new organs through the activity of populations of...