Environmental and Biochemical Sciences Group, Enhancing Crop Production and Utilisation Theme, The James Hutton Institute, Invergowrie, Dundee, DD2 5DA, Scotland.
J Agric Food Chem. 2011 Oct 26;59(20):10860-8. doi: 10.1021/jf202083b. Epub 2011 Sep 29.
A high-throughput abbreviated liquid chromatography mass spectrometric (ACMS) method was used to assess the relative influence of genotype and temperature on polyphenol composition in cloudberries. Principal component analysis (PCA) plots of the collated ACMS data showed a separation between crosses based on their female parents (Nyby or Fjellgull). Crosses with Nyby as the female parent had higher relative levels of masses assignable to certain ellagitannin derivatives. Crosses with Fjellgull had higher levels of distinctive masses assignable to quercetin derivatives (including a hydroxy-3-methylglutaroyl hexose derivative not previously identified in cloudberry) and anthocyanin derivatives. There was also a separation between samples grown at lower and higher temperatures, which was driven by m/z signals associated with ellagitannins and notably a major component, sanguiin H-6. Therefore, abbreviated MS techniques can discern genetic and/or environmental influences in polyphenol composition and can quickly assess quality in breeding programmes or in response to environmental changes.
一种高通量的简化液相色谱-质谱(ACMS)方法被用于评估基因型和温度对越橘多酚组成的相对影响。整理后的 ACMS 数据的主成分分析(PCA)图显示,根据其母本(Nyby 或 Fjellgull)对杂交种进行了分离。以 Nyby 为母本的杂交种具有更高的相对质量水平,可归因于某些鞣花单宁衍生物。以 Fjellgull 为母本的杂交种具有更高水平的可归因于槲皮素衍生物(包括以前在越橘中未鉴定出的羟基-3-甲基戊二酰基己糖苷)和花青素衍生物的特征质量。在较低和较高温度下生长的样品之间也存在分离,这是由与鞣花单宁相关的 m/z 信号驱动的,特别是一个主要成分, sanguiin H-6。因此,简化的 MS 技术可以辨别多酚组成中的遗传和/或环境影响,并可以在育种计划中或响应环境变化时快速评估质量。