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Comparative structural profiling of trichome specialized metabolites in tomato (Solanumlycopersicum) and S. habrochaites: acylsugar profiles revealed by UHPLC/MS and NMR

机译:番茄(Solanumlycopersicum)和盐生沙门氏菌中毛状体专门代谢物的比较结构分析:UHPLC / MS和NMR显示的酰基糖特征

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摘要

Many plants accumulate large quantities of specialized metabolites in secretory glandular trichomes (SGTs), which are specialized epidermal cells. In the genus Solanum, SGTs store a diverse collection of glucose and sucrose esters. Profiling of extracts from two accessions (LA1777 and LA1392) of Solanum habrochaites using ultra-high performance liquid chromatography–mass spectrometry (UHPLC/MS) revealed wide acylsugar diversity, with up to 11 isomers annotated for each individual elemental formula. These isomers arise from differences in ester chain lengths and their positions of substitution or branching. Since fragment ion masses were not sufficient to distinguish all isomers, 24 acylsucroses were purified from S. habrochaites accessions and cultivated tomato (Solanum lycopersicum M82) and characterized using NMR spectroscopy. Two-dimensional NMR spectra yielded assignments of positions of substitution of specific acyl groups, and locations of branching. The range of substitution was wider than reported earlier, and in contrast to previous reports, tetra- and penta-acylsucroses were substituted at position 2 with acyl groups other than acetate. Because UHPLC/MS fails to yield sufficient information about structure diversity, and quantitative NMR of acylsugar mixtures is confounded by structural redundancy, the strategic combination of NMR and UHPLC/MS provides a powerful approach for profiling a class of metabolites with great structural diversity across genotypes.Electronic supplementary materialThe online version of this article (doi:10.1007/s11306-013-0585-y) contains supplementary material, which is available to authorized users.
机译:许多植物在分泌性腺毛(SGTs)中积累了大量专门的代谢产物,这些分泌的腺毛是特异的表皮细胞。在茄属植物中,SGTs存储了各种葡萄糖和蔗糖酯。使用超高效液相色谱-质谱法(UHPLC / MS)对茄形茄属植物茄子的两个登录号(LA1777和LA1392)的提取物进行分析,结果显示出很宽的酰基糖多样性,每个单独的分子式最多可标注11个异构体。这些异构体是由酯链长度及其取代或支化位置的差异引起的。由于碎片离子质量不足以区分所有异构体,因此从菱形沙门氏菌种质和栽培番茄(茄属茄属M82)中纯化了24种酰基蔗糖,并使用NMR光谱进行了表征。二维NMR光谱可确定特定酰基的取代位置和分支位置。取代的范围比先前报道的要宽,并且与先前的报道相反,四和五酰基蔗糖在2位被乙酸盐以外的酰基取代。由于UHPLC / MS无法获得足够的有关结构多样性的信息,并且酰基糖混合物的定量NMR被结构冗余所混淆,因此NMR和UHPLC / MS的战略性结合提供了一种强大的方法,可对一类具有不同基因型结构多样性的代谢产物进行分析电子补充材料本文的在线版本(doi:10.1007 / s11306-013-0585-y)包含补充材料,授权用户可以使用。

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