Flavonoids Act as Negative Regulators of Auxin Transport in Vivo in Arabidopsis
Флавоноиды действуют как отрицательные регуляторы транспорта ауксина in vivo у Arabidopsis
2001-06-01
SCID: 54.1/32cmhuuu
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Arabidopsisauxin transportchalcone synthaseflavonoidsnaringenin
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Abstract (AI)
Polar transport of the plant hormone auxin controls many aspects of plant growth and development. A number of synthetic compounds have been shown to block the process of auxin transport by inhibition of the auxin efflux carrier complex. These synthetic auxin transport inhibitors may act by mimicking endogenous molecules. Flavonoids, a class of secondary plant metabolic compounds, have been suggested to be auxin transport inhibitors based on their in vitro activity. The hypothesis that flavonoids regulate auxin transport in vivo was tested in Arabidopsis by comparing wild-type (WT) and transparent testa (tt4) plants with a mutation in the gene encoding the first enzyme in flavonoid biosynthesis, chalcone synthase. In a comparison between tt4 and WT plants, phenotypic differences were observed, including three times as many secondary inflorescence stems, reduced plant height, decreased stem diameter, and increased secondary root development. Growth of WT Arabidopsis plants on naringenin, a biosynthetic precursor to those flavonoids with auxin transport inhibitor activity in vitro, leads to a reduction in root growth and gravitropism, similar to the effects of synthetic auxin transport inhibitors. Analyses of auxin transport in the inflorescence and hypocotyl of independent tt4 alleles indicate that auxin transport is elevated in plants with a tt4 mutation. In hypocotyls of tt4, this elevated transport is reversed when flavonoids are synthesized by growth of plants on the flavonoid precursor, naringenin. These results are consistent with a role for flavonoids as endogenous regulators of auxin transport.
Key Findings
1
Arabidopsis tt4 mutants lacking chalcone synthase and flavonoid biosynthesis exhibit altered architecture, including more secondary inflorescences, reduced height and stem diameter, and increased secondary roots.
2
Auxin transport is elevated in the inflorescence and hypocotyl of independent tt4 mutant alleles compared with wild type.
3
Naringenin-mediated restoration of flavonoid synthesis reverses elevated hypocotyl auxin transport in tt4 plants.
4
The findings support flavonoids functioning as endogenous negative regulators of auxin transport in vivo.
5
Wild-type Arabidopsis exposed to naringenin shows reduced root growth and gravitropism, resembling the effects of synthetic auxin transport inhibitors.
Research Object
Arabidopsis thaliana plants with altered flavonoid biosynthesis, including tt4 mutants and naringenin-treated wild-type plants
Research Subject
The in vivo regulation of polar auxin transport by endogenous flavonoids and its effects on plant growth and development
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2001-06-01
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