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Phytochemistry of heather (Calluna vulgaris (L.) Hull) and its altitudinal alteration

机译:Heatherchemistry(Calluna寻常(L.)Hull)及其高度改变

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Calluna vulgaris (L.) Hull (heather) is the only species within the genus Calluna (Ericaceae). It is a dominant species of heather communities and can be found in most parts of Europe and Northern America from lowland up to alpine regions. Common heather is traditionally used to treat urinary tract disturbances and inflammatory related disorders. This review covers the current knowledge on phytochem-ical investigations of C. vulgaris which revealed a complex pattern of flavonoid glycosides including acetylated compounds as well as other classes of phenolics (chromones, procyanidins and simple phenols). Recently, an acetophenone (rodiolinozide) was identified. C. vulgaris occurs in habitats comprising several altitudinal zones which makes it an attractive species to study the variation of its metabolic profiles in wild populations growing under different climatic conditions. Within phenolic compounds, flavonols showed significant differences in samples collected at different altitudes with increased levels of quercetin glycosides at higher altitudes whereas no significant correlation could be found for caffeoyl quinic acids and the dihydroflavonol glycoside callunin. Expanding such investigations to different species and different geographical areas should give a more accurate picture of suitable marker compounds within the group of phenolics in order to detect adaptive processes in high altitude plants. Furthermore, investigations on the specific patterns of phenolics at cellular and subcellular level and their variation due to factors like enhanced solar radiation and low temperature should be expanded.
机译:Calluna寻常(L.)Hull(希瑟)是Calluna(Eriicaceae)中唯一的物种。它是一种主要的石门社区种类,可以在欧洲大部分地区和美国北部的地区发现,从低地到高山地区。常见的希瑟传统上用于治疗泌尿道干扰和炎症相关疾病。本综述涵盖了目前关于vytuchem-ICE调查的知识,旨在揭示了一种复杂的类黄酮糖苷,包括乙酰化化合物以及其他类别的酚类(铬,原霉素和单纯酚)。最近,鉴定了一种苯乙酮(rociolinozide)。 C.寻常的栖息地发生,包括几种完美的区域,这使其成为一种有吸引力的物种,以研究在不同气候条件下生长的野生种群中其代谢谱的变化。在酚醛化合物中,黄酮醇显示出在不同高度收集的样品中的样品差异,其在较高海拔地区的槲皮素糖苷水平增加,而可以针对咖啡酰基氨基酸和二氢酰酚糖苷糖苷Callunin发现显着的相关性。扩大对不同物种和不同地理区域的这种调查应在酚类组中提供更准确的合适标记化合物,以便检测高海拔植物中的自适应过程。此外,应扩大对细胞和亚细胞水平的酚类特异性模式的研究及其由于增强的太阳辐射和低温等因素而导致的变化。

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