Naturally Occurring Auxin Transport Regulators

Природные регуляторы транспорта ауксина
Mark Jacobs, Philip H. Rubery
1988-07-15

NPA receptorflavonoidsnatural auxin transport regulatorspolar auxin transportquercetin
The process of polar auxin transport, central to a plant's auxin relations, can be inhibited by a group of synthetic compounds that apparently act by binding to a plasma membrane protein known as the naphthylphthalamic acid (NPA) receptor. No endogenous ligand to the NPA receptor, capable of affecting polar auxin transport in plants, has yet been found. It is now shown that a group of flavonoids-including quercetin, apigenin, and kaempferol-can specifically compete with [(3)H]NPA for binding to its receptor and can perturb auxin transport in a variety of plant tissues and transport systems in a manner closely paralleling the action of synthetic transport inhibitors. Because the active flavonoids are widely distributed in the plant kingdom and exert their effects at micromolar concentrations approximating likely endogenous levels, they may act as natural auxin transport regulators in plants.
1
Because active flavonoids are widespread in plants and effective at micromolar concentrations near likely endogenous levels, they may naturally regulate auxin transport.
2
The findings identify candidate endogenous ligands for the NPA receptor, addressing the previously unresolved absence of naturally occurring auxin transport regulators.
3
The flavonoids quercetin, apigenin, and kaempferol specifically compete with [³H]NPA for binding to the NPA receptor.
4
These flavonoids perturb polar auxin transport across diverse plant tissues and transport systems, closely resembling synthetic transport inhibitors.

Plant polar auxin transport systems and their NPA receptors

The ability of endogenous flavonoids, including quercetin, apigenin, and kaempferol, to bind NPA receptors and regulate polar auxin transport

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1988-07-15
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Mark Jacobs
Philip H. Rubery
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