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首页> 外文期刊>Analytical and bioanalytical chemistry >Spatial chemo-profiling of hypericin and related phytochemicals in Hypericum species using MALDI-HRMS imaging
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Spatial chemo-profiling of hypericin and related phytochemicals in Hypericum species using MALDI-HRMS imaging

机译:利用MALDI-HRMS成像技术对金丝桃属植物中金丝桃素及相关植物化学物质的空间化学分析

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Advanced analytical imaging techniques, including matrix-assisted laser desorption/ionization high-resolution mass spectrometry (MALDI-HRMS) imaging, can be used to visualize the distribution, localization, and dynamics of target compounds and their precursors with limited sample preparation. Herein we report an application of MALDI-HRMS imaging to map, in high spatial resolution, the accumulation of the medicinally important naphthodianthrone hypericin, its structural analogues and proposed precursors, and other crucial phytochemical constituents in the leaves of two hypericin-containing species, Hypericum perforatum and Hypericum olympicum. We also investigated Hypericum patulum, which does not contain hypericin or its protoforms. We focused on both the secretory (dark glands, translucent glands, secretory canals, laminar glands, and ventral glands) and the surrounding non-secretory tissues to clarify the site of biosynthesis and localization of hypericin, its possible precursors, and patterns of localization of other related compounds concomitant to the presence or absence of hypericin. Hypericin, pseudohypericin, and protohypericin accumulate in the dark glands. However, the precursor emodin not only accumulates in the dark glands but is also present outside the glands in both hypericin-containing species. In hypericin-lacking H. patulum, however, emodin typically accumulates only in the glands, thereby providing evidence that hypericin is possibly biosynthesized outside the dark glands and thereafter stored in them. The distribution and localization of related compounds were also evaluated and are discussed concomitant to the occurrence of hypericin. Our study provides the basis for further detailed investigation of hypericin biosynthesis by gene discovery and expression studies.
机译:先进的分析成像技术,包括基质辅助激光解吸/电离高分辨率质谱(MALDI-HRMS)成像,可用于以有限的样品制备可视化目标化合物及其前体的分布,定位和动力学。本文中,我们报告了MALDI-HRMS成像技术在高空间分辨率下绘制药用的重要萘二酮金丝桃素,其结构类似物和拟议的前体以及其他两个含金丝桃属物种金丝桃属植物叶片中重要植物化学成分的积累的图贯叶连翘和金丝桃。我们还研究了不含有金丝桃素或其原型的金丝桃属植物。我们集中于分泌物(深色腺体,半透明腺体,分泌管,层状腺体和腹侧腺体)和周围的非分泌性组织,以阐明金丝桃素的生物合成和定位部位,其可能的前体,以及金丝桃素的定位方式与金丝桃素存在或不存在相关的其他相关化合物。金丝桃素,假高丝菌素和原高丝菌素积聚在黑暗的腺体中。然而,前体大黄素不仅聚集在黑暗的腺体中,而且还存在于两种含有金丝桃素的物种的腺体之外。然而,在缺乏金丝桃素的H. patulum中,大黄素通常仅在腺体中积聚,从而提供证据表明金丝桃素可能是在暗腺外生物合成的,然后再储存在其中。还评估了相关化合物的分布和定位,并讨论了金丝桃素的出现。我们的研究为通过基因发现和表达研究进一步详细研究金丝桃素的生物合成提供了基础。

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