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Biosynthesis of Erythrina alkaloids in Erythrina crista-galli

机译:Erythrina crista-galli中赤藓生物碱的生物合成

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摘要

A precursor application system was developed to allow the study of Erythrina alkaloid formation in Erythrina crista-galli. Fruit wall tissue of this species was recognized as the major site of alkaloid biosynthesis. The application of radioactively and superior 1 superior 3C-labelled potential precursors showed that the hitherto assumed precursor (S)-norprotosinomenine was not incorporated into the Erythrina alkaloids. In contrast, (S)-coclaurine as well as (S)-norreticuline were metabolized to erythraline and erythrinine, respectively, suggesting that a coclaurine-norreticuline pathway is operative in Erythrina alkaloid formation. Feeding of [1- superior 1 superior 3C]labelled (S)- norreticuline with subsequent NMR spectroscopy demonstrated that the resulting erythraline was exclusively labelled at position C-10. Therefore, the participation of a symmetrical intermediate of the diphenoquinone type in Erythrina alkaloid biosynthesis can be excluded.
机译:开发了一种前体施用系统,以研究Erythrina crista-galli中Erythrina生物碱的形成。该物种的果壁组织被认为是生物碱生物合成的主要部位。放射性和高级1 3C标记的潜在前体的应用表明,迄今假定的前体(S)-去甲前青藤烯碱未掺入赤连生物碱中。相反,(S)-coclaurine以及(S)-norreticuline分别代谢为赤藓碱和赤藓碱,表明coclaurine-norreticuline途径在赤藓生物碱的形成中起作用。用随后的NMR光谱分析[1-高级1高级3C]标记的(S)-去甲肾上腺素的进料表明,所得的赤藓啉仅在位置C-10处被标记。因此,可以排除联苯醌型对称中间体参与赤藓生物碱生物合成的过程。

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