Effects of Auxin and Phenobarbital on Morphogenesis and Production of Digitoxin in Digitalis Callus : PROTEINS, ENZYMES AND METABOLISM : NATURAL PRODUCTS
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概要
- 論文の詳細を見る
Pieces of callus obtained from seedlings of Digitalis purpurea were grown on solid Murashige-Skoog's medium supplemented with 1 mg liter^<-1> BA and 0.1 mg liter^<-1> IAA or NAA, with or without phenobarbital (40 mg liter^<-1>). The replacement of the natural auxin IAA by the synthetic auxin NAA increased callus growth and inhibited organogenesis, whereas the addition of phenobarbital had the opposite effect. Morphometric measurements revealed a high ratio of vacuole to cytoplasm (v/v) in callus cells. This ratio was affected by the different treatments in the same way as the fresh weight. The activity of mitochondrial cytochrome P450scc (the enzyme that provides the precursor, pregnenolone, for the biosynthesis of cardenolide in foxglove plants) was detected in the relevant fraction of callus grown under all experimental conditions, and its activity was increased by the addition of phenobarbital. The different treatments tested increased the cardenolide content and quantifiable amounts of digitoxin were detected in all callus tissues. It is of special interest that phenobarbital added to the culture medium increased the accumulation of digitoxin. The mechanism affecting the development and production of cardenolide in callus tissues of D. purpurea by phenobarbital and the replacement of IAA by NAA is discussed.
- 日本植物生理学会の論文
著者
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Palazon Javier
Laboratori De Fisiologia Vegetal Facultat De Farmacia Universitat De Barcelona
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Morales Carmen
Laboratori De Fisiologia Vegetal Facultat De Farmacia Universitat De Barcelona
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Cusid6 Rosa
Laboratori De Fisiologia Vegetal Facultat De Farmacia Universitat De Barcelona
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BONFILL Mercedes
Laboratori de Fisiologia Vegetal, Facultat de Farmacia, Universitat de Barcelona
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PINOL M.T.
Laboratori de Fisiologia Vegetal, Facultat de Farmacia, Universitat de Barcelona
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Pinol M
Laboratori De Fisiologia Vegetal Facultat De Farmacia Universitat De Barcelona
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Bonfill Mercedes
Laboratori De Fisiologia Vegetal Facultat De Farmacia Universitat De Barcelona