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蝴蝶花(鸢尾科)的生物活性成分:加工效应。

Bioactive constituents of Iris hybrida (Iridaceae): Processing effect.

机构信息

Department of Pharmaceutical Chemistry, National University of Pharmacy of the Ministry of Health of Ukraine, Kharkiv, Ukraine.

M.M. Hryshko National Botanical Garden of the National Academy of Sciences of Ukraine, Kyiv, Ukraine.

出版信息

Biomed Chromatogr. 2022 Jul;36(7):e5369. doi: 10.1002/bmc.5369. Epub 2022 Mar 22.

Abstract

Iris genus plants are a valuable source of bioactive compounds, which are an important component for pharmaceutical development. The present article shows the potential for mineral nutrition with application of magnesium sulfate, iron chelates and potassium oxide affecting the phenolic compound contents in Iris hybrida 'Tsikavynka', I. hybrida 'Tambo' and I. hybridа 'Widecombe Fire'. The effect of mineral processing was specific to plant organs and varied in the component composition. The Iris rhizomes had an increased total phenolic compound content after treatment (up to 10% of the total isoflavonoid content, up to 8% of phenolic acids, up to 5% of γ-pyrones and up to 13% of flavonoids), determined using UV-vis spectroscopy. A positive effect of nutrition on the biosynthesis and content of individual isoflavonoids (tectoridin, nigricin d-glucoside, genistin, iristectorigenin B, nigricin, irigenin and irisolidone) and xanthone mangiferin in Iris rhizomes by HPLC was established. In addition, an increase in the chlorogenic acid amount in Iris leaves was noted. The results demonstrate the sensitivity of Iris phenylpropanoid metabolism to mineral nutrition and can be used to predict medical plant cultivation with increased content of bioactive constituents.

摘要

虹膜属植物是生物活性化合物的重要来源,这些化合物是药物开发的重要组成部分。本文展示了应用硫酸镁、铁螯合物和氧化钾对矿质营养的潜在影响,以影响鸢尾属杂种‘Tsikavynka’、鸢尾属杂种‘Tambo’和鸢尾属杂种‘Widecombe Fire’中酚类化合物的含量。矿质处理的效果因植物器官而异,成分组成也有所不同。用紫外可见光谱法测定,处理后鸢尾根茎的总酚类化合物含量增加(总异黄酮含量增加 10%,酚酸增加 8%,γ-吡喃酮增加 5%,类黄酮增加 13%)。通过 HPLC 还确定了营养对鸢尾根茎中个别异黄酮(刺槐素、黑芥子苷 d-葡萄糖苷、染料木苷、鸢尾异黄酮 B、黑芥子苷、鸢尾苷和鸢尾苷元)和藤黄酚的生物合成和含量的积极影响。此外,还注意到鸢尾叶中绿原酸的含量增加。这些结果表明,鸢尾苯丙素代谢对矿质营养很敏感,可以用来预测具有更高生物活性成分含量的药用植物的栽培。

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