Natural Chemistry Research Group, Department of Chemistry, University of Turku, 20014 Turku, Finland.
Production Systems, Natural Resources Institute Finland (Luke), Myllytie 1, 31600 Jokioinen, Finland.
Molecules. 2022 Aug 31;27(17):5629. doi: 10.3390/molecules27175629.
Quinoa ( Willd.) has a high nutritional value and it contains a high number and high amounts of specialized metabolites. These metabolites include, for example, phenolic acids, flavonoids, terpenoids and steroids. In addition, it is known to contain N-containing metabolites, such as betalains. Here, we report the presence and identification of 14 new oxindoleacetate conjugates in quinoa by high-resolution ultrahigh-performance liquid chromatography quadrupole-time-of-flight tandem mass spectrometry (UHPLC-QTOF-MS/MS) and ultrahigh-resolution UHPLC-QOrbitrap-MS/MS. The oxindoleacetate conjugates were extracted from dried and ground quinoa seeds using either methanol/water or acetone/water (4:1, /) and were further concentrated into aqueous phase and analyzed by UHPLC with reverse-phase chromatography using acetonitrile and 0.1% aqueous formic acid as eluents. High-resolution hybrid LC-MS/MS techniques, including full scan MS with in-source collision, induced dissociation, and data dependent-MS(TopN) with stepped normalized collision energies using N as collision gas and data-independent acquisition (MS) using ramped collision energies and argon as collision gas enabled their analysis directly from the crude quinoa seed extract. The oxindoleacetate conjugates were found to be present in both conventional and organic farmed seeds. According to our best knowledge, this is the first time hydroxy-oxindoles have been reported in quinoa.
藜麦(Willd.)具有很高的营养价值,它含有大量和高浓度的特殊代谢产物。这些代谢产物包括例如酚酸、类黄酮、萜类化合物和甾体化合物。此外,已知它还含有含氮代谢产物,如甜菜碱。在这里,我们通过高分辨率超高效液相色谱四极杆飞行时间串联质谱(UHPLC-QTOF-MS/MS)和超高分辨率 UHPLC-QOrbitrap-MS/MS 报告了藜麦中 14 种新的吲哚乙酸酯缀合物的存在和鉴定。通过甲醇/水或丙酮/水(4:1,/)从干燥和研磨的藜麦种子中提取吲哚乙酸酯缀合物,并进一步浓缩到水相,然后通过反相色谱的超高效液相色谱进行分析,使用乙腈和 0.1%甲酸水溶液作为洗脱剂。高分辨率混合 LC-MS/MS 技术,包括带有源内碰撞的全扫描 MS、诱导解离和数据相关-MS(TopN),使用 N 作为碰撞气体和使用 ramped 碰撞能量和氩气作为碰撞气体的非依赖性采集(MS),使其能够直接从粗藜麦种子提取物中进行分析。发现吲哚乙酸酯缀合物存在于常规和有机农场种植的种子中。据我们所知,这是首次在藜麦中报道羟基吲哚。