Control of leaf vascular patterning by polar auxin transport
Контроль формирования сосудистого рисунка листа посредством полярного транспорта ауксина
2006-04-15
SCID: 54.1/2nbtpfss
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AtPIN1auxin convergence pointsleaf vascular patterningpolar auxin transportprocambium formation
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Abstract (AI)
The formation of the leaf vascular pattern has fascinated biologists for centuries. In the early leaf primordium, complex networks of procambial cells emerge from homogeneous subepidermal tissue. The molecular nature of the underlying positional information is unknown, but various lines of evidence implicate gradually restricted transport routes of the plant hormone auxin in defining sites of procambium formation. Here we show that a crucial member of the AtPIN family of auxin-efflux-associated proteins, AtPIN1, is expressed prior to pre-procambial and procambial cell fate markers in domains that become restricted toward sites of procambium formation. Subcellular AtPIN1 polarity indicates that auxin is directed to distinct "convergence points" in the epidermis, from where it defines the positions of major veins. Integrated polarities in all emerging veins indicate auxin drainage toward pre-existing veins, but veins display divergent polarities as they become connected at both ends. Auxin application and transport inhibition reveal that convergence point positioning and AtPIN1 expression domain dynamics are self-organizing, auxin-transport-dependent processes. We derive a model for self-regulated, reiterative patterning of all vein orders and postulate at its onset a common epidermal auxin-focusing mechanism for major-vein positioning and phyllotactic patterning.
Key Findings
1
AtPIN1 expression precedes pre-procambial and procambial fate markers, with domains becoming restricted toward future procambium sites.
2
AtPIN1 polarity directs auxin toward epidermal convergence points that define the positions of major leaf veins.
3
Auxin application and transport inhibition show that convergence-point positioning and AtPIN1 domain dynamics are self-organizing and auxin-transport-dependent.
4
Emerging veins drain auxin toward pre-existing veins, whereas veins connected at both ends exhibit divergent auxin polarities.
5
The authors propose a self-regulated, reiterative mechanism for patterning all vein orders, beginning with a shared epidermal auxin-focusing process linked to major-vein positioning and phyllotaxis.
Research Object
leaf vascular patterning and emerging veins in early leaf primordia
Research Subject
the role of polar auxin transport and AtPIN1 polarity in self-organizing procambium and vein positioning
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2006-04-15
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