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柑橘汁的非靶向代谢物谱分析作为品种鉴别和代谢物流分析的工具

Non-targeted metabolite profiling of citrus juices as a tool for variety discrimination and metabolite flow analysis.

作者信息

Arbona Vicent, Iglesias Domingo J, Gómez-Cadenas Aurelio

机构信息

Laboratori d'Ecofisiologia i Biotecnologia, Departament de Ciències Agràries i del Medi Natural, Universitat Jaume I, E-12071, Castelló de la Plana, Spain.

Institut Valencià d'Investigacions Agràries (IVIA), Moncada, Spain.

出版信息

BMC Plant Biol. 2015 Feb 5;15:38. doi: 10.1186/s12870-015-0430-8.

Abstract

BACKGROUND

Genetic diversity of citrus includes intrageneric hybrids, cultivars arising from cross-pollination and/or somatic mutations with particular biochemical compounds such as sugar, acids and secondary metabolite composition.

RESULTS

Secondary metabolite profiles of juices from 12 commercial varieties grouped into blonde and navel types, mandarins, lemons and grapefruits were analyzed by LC/ESI-QTOF-MS. HCA on metabolite profiling data revealed the existence of natural groups demarcating fruit types and varieties associated to specific composition patterns. The unbiased classification provided by HCA was used for PLS-DA to find the potential variables (mass chromatographic features) responsible for the classification. Abscisic acid and derivatives, several flavonoids and limonoids were identified by analysis of mass spectra. To facilitate interpretation, metabolites were represented as flow charts depicting biosynthetic pathways. Mandarins 'Fortune' and 'Hernandina' along with oranges showed higher ABA contents and ABA degradation products were present as glycosylated forms in oranges and certain mandarins. All orange and grapefruit varieties showed high limonin contents and its glycosylated form, that was only absent in lemons. The rest of identified limonoids were highly abundant in oranges. Particularly, Sucrenya cultivar showed a specific accumulation of obacunone and limonoate A-ring lactone. Polymethoxylated flavanones (tangeritin and isomers) were absolutely absent from lemons and grapefruits whereas kaempferol deoxyhexose hexose isomer #2, naringin and neohesperidin were only present in these cultivars.

CONCLUSIONS

Analysis of relative metabolite build-up in closely-related genotypes allowed the efficient demarcation of cultivars and suggested the existence of genotype-specific regulatory mechanisms underlying the differential metabolite accumulation.

摘要

背景

柑橘的遗传多样性包括属内杂种、异花授粉产生的栽培品种和/或具有特定生化成分(如糖、酸和次生代谢物组成)的体细胞突变体。

结果

通过液相色谱/电喷雾电离-四极杆飞行时间质谱(LC/ESI-QTOF-MS)分析了12个商业品种果汁的次生代谢物谱,这些品种分为金色和脐橙类型、柑橘、柠檬和葡萄柚。对代谢物谱数据进行的层次聚类分析(HCA)揭示了存在区分果实类型和与特定组成模式相关的品种的自然分组。HCA提供的无偏分类用于偏最小二乘判别分析(PLS-DA),以找到负责分类的潜在变量(质量色谱特征)。通过质谱分析鉴定出脱落酸及其衍生物、几种黄酮类化合物和柠檬苦素类化合物。为便于解释,代谢物以描绘生物合成途径的流程图表示。柑橘品种“福琼”和“埃尔南迪纳”以及橙子显示出较高的脱落酸含量,脱落酸降解产物以糖基化形式存在于橙子和某些柑橘中。所有橙子和葡萄柚品种都显示出高含量的柠檬苦素及其糖基化形式,而柠檬中仅不存在这种形式。其余鉴定出的柠檬苦素类化合物在橙子中含量极高。特别是,“苏克雷尼亚”品种显示出奥巴库酮和柠檬苦素A环内酯的特定积累。柠檬和葡萄柚中完全不存在多甲氧基黄酮(橘红素及其异构体),而山奈酚脱氧己糖己糖异构体#2、柚皮苷和新橙皮苷仅存在于这些品种中。

结论

对密切相关基因型中相对代谢物积累的分析允许对品种进行有效划分,并表明存在差异代谢物积累背后的基因型特异性调控机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4c7c/4329192/ee3d9022b6cc/12870_2015_430_Fig1_HTML.jpg

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