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首页> 外文期刊>Plant Biosystems >Chemical composition and antifungal activity of Hypericum perforatum subsp. angustifolium roots from wild plants and plants grown under controlled conditions.
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Chemical composition and antifungal activity of Hypericum perforatum subsp. angustifolium roots from wild plants and plants grown under controlled conditions.

机译:贯叶连翘的化学成分和抗真菌活性桔梗的根源来自野生植物和在受控条件下生长的植物。

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摘要

The medicinal properties of the aerial parts of Hypericum perforatum subsp. angustifolium have been extensively investigated, yet little is known about the chemical composition or potential uses of the root extracts. In this study, xanthone production in wild plants and plants grown under controlled conditions was investigated. Chemical analyses carried out on wild plants revealed that xanthones were mainly accumulated in the roots. We mainly detected 1,7-dihydroxyxanthone, paxanthone, 5-O-methyl-2-deprenylrheediaxanthone B, kielcorin. The roots of wild plants showed low xanthone accumulation. In the roots of plants grown under controlled conditions, xanthone accumulation was 27 times greater than that in the roots of wild-grown plants. Kielcorin was not detected in the roots of plants grown under controlled conditions. As xanthones are known for their antifungal activity, the extracts from both samples were tested against the human fungal pathogens Candida albicans, non-albicans Candida species, Cryptococcus neoformans, and dermatophytes. The root extracts from plants grown under controlled conditions showed greater antifungal activity, probably correlated with higher xanthone accumulation.
机译:贯叶连翘亚种气生部位的药用特性。桔梗已被广泛研究,但对根提取物的化学组成或潜在用途知之甚少。在这项研究中,研究了在野生植物和在受控条件下生长的植物中黄酮的生产。对野生植物进行的化学分析表明,氧杂蒽酮主要积累在根中。我们主要检测到1,7-二羟基黄酮,paxanthone,5-O-甲基-2-deprenylrheediaxanthanthone B,kielcorin。野生植物的根显示出较低的黄酮积累。在受控条件下生长的植物根部,x吨酮的积累量是野生植物根部的27倍。在受控条件下生长的植物根部未检测到Kielcorin。由于氧杂蒽酮以其抗真菌活性而闻名,因此对两种样品的提取物进行了抗人真菌病原体白色念珠菌,非白色念珠菌念珠菌,新隐球菌和皮肤真菌的测试。在受控条件下生长的植物的根提取物显示出更高的抗真菌活性,可能与更高的黄酮积累有关。

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