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代谢组学分析表明,光可以控制狭叶松果菊细胞在体外培养时特定次生代谢物的积累。

Metabolomic analysis reveals that the accumulation of specific secondary metabolites in Echinacea angustifolia cells cultured in vitro can be controlled by light.

机构信息

Department of Biotechnology, University of Verona, Strada Le Grazie 15, 37134, Verona, Italy.

出版信息

Plant Cell Rep. 2012 Feb;31(2):361-7. doi: 10.1007/s00299-011-1171-2. Epub 2011 Oct 19.

Abstract

Echinacea angustifolia cell suspension cultures are usually grown and maintained in the dark, but we also exposed cells to light for one culture cycle (14 days) and then compared the metabolomes of dark-grown and illuminated cells by liquid chromatography-mass spectrometry. Among 256 signals, we putatively identified 159 molecules corresponding to 56 different metabolites plus their fragments, adducts and isotopologs. The E. angustifolia metabolome consisted mainly of caffeic acid derivatives, comprising (a) caffeic acid conjugated with tartaric, quinic and hexaric acids; and (b) caffeic acid conjugated with hydroxytyrosol glycosides (e.g., echinacoside, verbascoside and related molecules). Many of these metabolites have not been previously described in E. angustifolia, which currently lacks detailed metabolic profiles. Exposure to light significantly increased the levels of certain caffeic acid derivatives (particularly caffeoylquinic acids and hydroxytyrosol derivatives lacking rhamnose residues) and reduced the level of hydroxytyrosol derivatives with rhamnose residues, revealing that light specifically inhibits the rhamnosylation of caffeoyl phenylethanoid glycosides. These results are significant because they suggest that the metabolic profile of cell cultures can be manipulated by controlling simple environmental variables such as illumination to modulate the levels of potentially therapeutic compounds.

摘要

狭叶紫锥菊细胞悬浮培养通常在黑暗中进行和维持,但我们也将细胞暴露在光下一个培养周期(14 天),然后通过液相色谱-质谱法比较暗培养和光照细胞的代谢组。在 256 个信号中,我们推测鉴定了 159 个分子,对应 56 种不同的代谢物及其片段、加合物和同位素。狭叶紫锥菊的代谢组主要由咖啡酸衍生物组成,包括:(a)与酒石酸、奎尼酸和己二酸共轭的咖啡酸;和(b)与羟基酪醇糖苷(如,毛蕊花糖苷、松果菊苷和相关分子)共轭的咖啡酸。这些代谢物中有许多以前没有在狭叶紫锥菊中描述过,目前缺乏详细的代谢谱。光照显著增加了某些咖啡酸衍生物(特别是咖啡酰奎宁酸和缺乏鼠李糖残基的羟基酪醇衍生物)的水平,降低了具有鼠李糖残基的羟基酪醇衍生物的水平,表明光照特异性抑制了咖啡酰苯乙醇苷的鼠李糖基化。这些结果意义重大,因为它们表明可以通过控制简单的环境变量(如光照)来操纵细胞培养物的代谢谱,以调节潜在治疗化合物的水平。

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