• 中文核心期刊
  • CSCD来源期刊
  • 中国科技核心期刊
  • CA、CABI、ZR收录期刊

基于代谢组学分析不同栽培模式对霍山石斛苦味物质的影响

Metabolomic Analysis of the Effects of Different Cultivation Modes on Bitter Compounds in Dendrobium huoshanense

  • 摘要:
    目的 探究霍山石斛(Dendrobium huoshanense C. Z. Tang & S. J. Cheng)关键苦味物质的组成,解析林下仿野生与温室大棚栽培对霍山石斛苦味物质的影响。
    方法 以安徽霍山、天柱山产区的霍山石斛样品为材料,采用电子舌技术检测苦味响应值;结合非靶向代谢组学(LC-MS/MS)与靶向代谢组学(UHPLC-Q Exactive HFX)技术筛选温室大棚栽培(GC)和林下遮阴仿野生栽培(UWC)两种栽培模式下霍山石斛的差异代谢物,并通过Pearson相关性分析确定与苦味相关的物质。
    结果 温室大棚组(GC)苦味响应值为(17.92±0.59),林下仿野生组(UWC)为(7.46±0.59)。非靶向代谢组学从两种栽培模式霍山石斛中共鉴定出2101种代谢物,其中795个存在显著差异,主要为黄酮类成分。靶向代谢组学检测到87个黄酮类物质,其中8个存在显著差异,均被预测为苦味物质。相关性分析中,异夏佛塔苷、维采宁2、山奈酚-3-新橙皮糖苷、忍冬苷及牡荆素-4''-O-葡萄糖苷等均与苦味值呈显著正相关(P<0.001),可作为霍山石斛苦味的关键标志物。
    结论 异夏佛塔苷与忍冬苷是霍山石斛的核心苦味标志物,二者与苦味响应值呈极显著正相关(P<0.001),且在温室大棚栽培样品中含量显著高于林下仿野生样品,是造成两种栽培模式下霍山石斛苦味差异的主要黄酮类物质。本研究阐明了霍山石斛苦味形成的物质基础及栽培模式的调控效应,为霍山石斛的品质定向培育与规范化栽培提供了理论支撑。

     

    Abstract:
    Objective Effect of Dendrobium huoshanense cultivation in greenhouse or under simulated wild conditions on bitter taste of the herbal material was analyzed.
    Methods D. huoshanense plants from Huoshan and Tianzhushan producing areas in Anhui Province were sampled and tested on an e-tongue device for bitterness. In addition to the e-tongue bitterness measurement, untargeted metabolomics (LC-MS/MS) and targeted metabolomics (UHPLC-Q Exactive HFX) were employed to determine differential metabolites of the plants grown in a greenhouse (GC) and under simulated wild, tree-shaded conditions (UWC). Pearson correlation analysis was conducted on the sets of data to identify substances that contributed to the bitter taste of the medicinal material.
    Results The bitterness signal response readings obtained by the e-tongue on the plants grown in GC were 17.92±0.59, and those in UWC 7.46±0.59. Of the 2,101 metabolites detected by the untargeted metabolomics, 795 differentiated significantly between the two groups and were largely flavonoids. The targeted metabolomics identified 87 flavonoids, of which, 8 differed significantly and were presumably bitter-tasting substances. Isoschaftoside, vitexin 2, kaempferol-3-neohesperidoside, lonicerin, and vitexin-4''-O-glucoside significantly correlated with the e-tongue bitterness reading (P<0.001) and could conceivably serve as biomarkers for the sensory quality.
    Conclusion By correlating the e-tongue readings with the non-targeted and targeted metabolomics determinations on isoschaftoside and lonicerin, the bitter taste of D. huoshanense grown under GC and UWC was distinctively differentiated to suggest superiority of the wild cultivation for the herbal plants.

     

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