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各种幼苗对 Umbelliferone 的吸收和修饰。

Uptake and modification of umbelliferone by various seedlings.

机构信息

TU Braunschweig Institute for Plant Biology, Mendelssohnstr. 4, 38106, Braunschweig, Germany; Biology Department, Faculty of Science, Mutah University, P.O. Box7, Mutah, 61710, Al-Karak, Jordan.

TU Braunschweig Institute for Plant Biology, Mendelssohnstr. 4, 38106, Braunschweig, Germany; Agriculture Genetic Engineering Research Institute, AGERI- ARC, Giza, Egypt.

出版信息

Phytochemistry. 2019 Jan;157:194-199. doi: 10.1016/j.phytochem.2018.10.032. Epub 2018 Nov 12.

Abstract

Inspired by the recently discovered phenomenon of "horizontal natural product transfer" we investigated the putative uptake of phenolic specialized metabolites. Umbelliferone was chosen for this case study, since this coumarin as well as its derivatives can easily be determined by HPLC analyses. Barley (Hordeum vulgare L.), radish (Raphanus sativus L.), pea (Pisum sativum L.), flax (Linum usitatissimum L.), and garden cress (Lepidium sativum L.) were cultivated in hydroponic media, to which the coumarin was applied. Uptake of umbelliferone was verified by corresponding HPLC analyses of extracts obtained from the aerial parts of the seedlings. In all cases, a tremendous uptake of umbelliferone was observed. In plants that genuinely contain coumarins, the umbelliferone taken up was modified: in garden cress, it was hydroxylated and glucosylated to yield esculin, while in barley seedlings, the imported umbelliferone was modified by methoxylation to yield scopoletin. Corresponding reactions are known from modifications of xenobiotics to be catalyzed by cytochrome P450 enzymes. Accordingly, in an additional approach, umbelliferone was applied together with naproxen, which is reported to reduce enzyme activity of P450 enzymes. As predicted, the conversion of umbelliferone to scopoletin in barley as well as the modification to esculin in garden cress was strongly reduced by the addition of naproxen. These data for the first time demonstrate that - in addition to alkaloids - also phenolic compounds are taken up by various acceptor plants. Apart from the leaching of rotting plants, coumarins are known to be exuded by many plants. Accordingly, these compounds are frequently present in soils and will be taken up. These coherences imply that the horizontal natural product transfer might represent a more general phenomenon in plant ecology. Moreover, this study outlines that - in analogy to the modification of xenobiotics - also natural products taken up are modified in the acceptor plants.

摘要

受最近发现的“水平天然产物转移”现象的启发,我们研究了酚类特殊代谢物的假定摄取。由于这种香豆素及其衍生物很容易通过 HPLC 分析来确定,因此选择伞形酮作为本案例研究的对象。大麦(Hordeum vulgare L.)、萝卜(Raphanus sativus L.)、豌豆(Pisum sativum L.)、亚麻(Linum usitatissimum L.)和芝麻菜(Lepidium sativum L.)在水培介质中培养,并在其中添加香豆素。通过对幼苗地上部分提取液的相应 HPLC 分析,验证了伞形酮的摄取。在所有情况下,都观察到了伞形酮的大量摄取。在真正含有香豆素的植物中,所摄取的伞形酮发生了修饰:在芝麻菜中,它被羟化和糖化生成七叶苷,而在大麦幼苗中,导入的伞形酮被甲氧基化修饰生成斯皮诺素。相应的反应已知是由细胞色素 P450 酶催化的异生素修饰。因此,在另一种方法中,将伞形酮与萘普生一起应用,萘普生据报道可降低 P450 酶的酶活性。正如预测的那样,大麦中伞形酮转化为斯皮诺素以及芝麻菜中伞形酮修饰为七叶苷的反应,因添加萘普生而强烈减少。这些数据首次表明,除了生物碱外,酚类化合物也被各种接受植物吸收。除了腐烂植物的浸出物外,许多植物还分泌香豆素。因此,这些化合物经常存在于土壤中并被吸收。这些一致性意味着水平天然产物转移可能是植物生态学中更为普遍的现象。此外,本研究表明,与异生素的修饰类似,被吸收的天然产物也在接受植物中被修饰。

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