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Chalcone Synthase and Flavonol Accumulation in Stigmas and Anthers of Petunia hybrida

P. E. Pollak, T. Vogt, Y. Mo, L. P. Taylor
P. E. Pollak
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T. Vogt
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Y. Mo
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L. P. Taylor
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Published July 1993. DOI: https://doi.org/10.1104/pp.102.3.925

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Abstract

Flavonol aglycones are required for pollen germination in petunia (Petunia hybrida L.). Mutant plants lacking chalcone synthase (CHS), which catalyzes the first committed step in flavonoid synthesis, do not accumulate flavonols and are self-sterile. The mutant pollen can be induced to germinate by supplementing it with kaempferol, a flavonol aglycone, either at the time of pollination or by addition to an in vitro germination system. Biochemical complementation occurs naturally when the mutant, flavonol-deficient pollen is crossed to wild-type, flavonoid-producing stigmas. We found that successful pollination depends on stigma maturity, indicating that flavonol aglycone accumulation may be developmentally regulated. Quantitative immunoblotting, in vitro and in vivo pollen germination, and high-performance liquid chromatographic analyses of stigma and anther extracts were used to determine the relationship between CHS levels and flavonol aglycone accumulation in developing petunia flowers. Although substantial levels of CHS were measured, we detected no flavonol aglycones in wild-type stigma or anther extracts. Instead, the occurrence of a conjugated form (flavonol glycoside) suggests that a mechanism may operate to convert glycosides to the active aglycone form.

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Chalcone Synthase and Flavonol Accumulation in Stigmas and Anthers of Petunia hybrida
P. E. Pollak, T. Vogt, Y. Mo, L. P. Taylor
Plant Physiology Jul 1993, 102 (3) 925-932; DOI: 10.1104/pp.102.3.925

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Chalcone Synthase and Flavonol Accumulation in Stigmas and Anthers of Petunia hybrida
P. E. Pollak, T. Vogt, Y. Mo, L. P. Taylor
Plant Physiology Jul 1993, 102 (3) 925-932; DOI: 10.1104/pp.102.3.925
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Plant Physiology
Vol. 102, Issue 3
Jul 1993
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  • Gibberellin Dose-Response Regulation of GA4 Gene Transcript Levels in Arabidopsis
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