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UHPLC-ESI/TOFMS Determination of Salicylate-like Phenolic Gycosides in Populus tremula Leaves

机译:UHPLC-ESI / TOFMS测定白杨叶片中水杨酸酯样酚类糖苷的含量

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摘要

Associations of salicylate-like phenolic glycosides (PGs) with biological activity have been reported in Salix and Populus trees, but only for a few compounds, and in relation to a limited number of herbivores. By considering the full diversity of PGs, we may improve our ability to recognize genotypes or chemotype groups and enhance our understanding of their ecological function. Here, we present a fast and efficient general method for salicylate determination in leaves of Eurasian aspen that uses ultra-high performance liquid chromatography-electrospray ionization/time-of-flight mass spectrometry (UHPLC-ESI/TOFMS). The time required for the liquid chromatography separations was 13.5 min per sample, compared to around 60 min per sample for most HPLC protocols. In leaf samples from identical P. tremula genotypes with diverse propagation and treatment histories, we identified nine PGs. We found the compound-specific mass chromatograms to be more informative than the UV-visible chromatograms for compound identification and when quantitating samples with large variability in PG content. Signature compounds previously reported for P. tremoloides (tremulacin, tremuloidin, salicin, and salicortin) always were present, and five PGs (2'-O-cinnamoyl-salicortin, 2'-O-acetyl-salicortin, 2'-O-acetyl-salicin, acetyl-tremulacin, and salicyloyl-salicin) were detected for the first time in P. tremula. By using information about the formic acid adduct that appeared for PGs in the LTQ-Orbitrap MS environment, novel compounds like acetyl-tremulacin could be tentatively identified without the use of standards. The novel PGs were consistently either present in genotypes regardless of propagation and damage treatment or were not detectable. In some genotypes, concentrations of 2'-O-acetyl-salicortin and 2'-O-cinnamoyl-salicortin were similar to levels of biologically active PGs in other Salicaceous trees. Our study suggests that we may expect a wide variation in PG content in aspen populations which is of interest both for studies of interactions with herbivores and for mapping population structure.Electronic supplementary materialThe online version of this article (doi:10.1007/s10886-011-9991-7) contains supplementary material, which is available to authorized users.
机译:在柳柳和胡杨树中已经报道了水杨酸酯样酚类糖苷(PGs)与生物活性的关联,但仅针对少数化合物,并且涉及数量有限的草食动物。通过考虑PG的完全多样性,我们可以提高识别基因型或化学型组的能力,并增强我们对它们的生态功能的了解。在这里,我们提出了一种快速高效的欧亚白杨叶片中水杨酸盐测定的通用方法,该方法使用超高效液相色谱-电喷雾电离/飞行时间质谱(UHPLC-ESI / TOFMS)。液相色谱分离所需的时间为每个样品13.5分钟,而大多数HPLC方案每个样品约60分钟。在具有不同繁殖和处理历史的相同银杏种质基因型的叶片样品中,我们鉴定出九种PG。我们发现,化合物特异性质谱图比UV可见色谱图更有用,可用于化合物鉴定和定量PG含量变化较大的样品。以前报告过的P.类二倍体的标志性化合物(tremulacin,tremuloidin,salicin和salicortin)始终存在,并且存在五种PG(2'-O-肉桂酰基-沙利可汀,2'-O-乙酰基-沙利可汀,2'-O-乙酰基) -Salicin,乙酰基-tremulacin和水杨酰-salicin)首次在颤栗中检出。通过使用有关在LTQ-Orbitrap MS环境中PGs出现的甲酸加合物的信息,无需使用标准就可以初步鉴定出新的化合物,如乙酰基-海藻糖素。不论繁殖和破坏处理如何,新型PGs始终以基因型存在或无法检测到。在某些基因型中,2'-O-乙酰基-水杨抑素和2'-O-肉桂酰基-水杨抑素的浓度与其他水杨树中具有生物活性的PG的水平相似。我们的研究表明,我们可能预期白杨种群中PG含量会有很大变化,这对于研究与草食动物的相互作用以及绘制种群结构都非常有意义。电子补充材料本文的在线版本(doi:10.1007 / s10886-011- 9991-7)包含补充材料,授权用户可以使用。

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