Auxin transport routes in plant development

Пути транспорта ауксина в развитии растений
Jiřı́ Friml, Jan Petrášek
2009-07-24

auxin gradientsauxin influx and effluxauxin transportdirectional cell-to-cell transportplant development
The differential distribution of the plant signaling molecule auxin is required for many aspects of plant development. Local auxin maxima and gradients arise as a result of local auxin metabolism and, predominantly, from directional cell-to-cell transport. In this primer, we discuss how the coordinated activity of several auxin influx and efflux systems, which transport auxin across the plasma membrane, mediates directional auxin flow. This activity crucially contributes to the correct setting of developmental cues in embryogenesis, organogenesis, vascular tissue formation and directional growth in response to environmental stimuli.
1
Coordinated auxin influx and efflux systems transport auxin across plasma membranes and establish directional auxin flow.
2
Differential auxin distribution is essential for multiple aspects of plant development.
3
Directional auxin transport helps set developmental cues during embryogenesis, organogenesis, vascular tissue formation, and environmentally responsive growth.
4
Local auxin maxima and gradients arise primarily through directional cell-to-cell transport, alongside local auxin metabolism.

Auxin transport routes and influx/efflux systems in plants

Directional auxin flow and its role in establishing developmental cues during embryogenesis, organogenesis, vascular tissue formation, and environmentally responsive directional growth

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2009-07-24
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Jiřı́ Friml
Jan Petrášek
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