Department of Plant Pathology, The Ohio State University, 201 Kottman Hall, Columbus, Ohio 43210.
Plant Physiol. 1991 Feb;95(2):584-93. doi: 10.1104/pp.95.2.584.
High performance liquid chromatography protocols have been developed to allow the simultaneous analysis of a very wide range of soluble aromatic secondary metabolites in unfractionated biological extracts. The methods are simple, sensitive, and highly reproducible. They are applicable to a wide variety of natural product investigations in both plants and microorganisms. High resolution of metabolites is achieved in 25 minutes by chromatography on a reverse phase C18 column in a gradient of 0 to 55% acetonitrile in water at pH 3. For example, near-baseline resolution of over 20 phenylpropanoid metabolites and 18 naturally occurring metabolites of indole-3-acetic acid can be obtained. The methods can be applied directly to whole tissue extracts without prepurification or enrichment. Moreover, the simplicity and sensitivity of the protocols allow their application to a large number of very small tissue samples, such as those encountered in research on host-microbe interactions. Such profiles allow one to monitor simultaneously the various alternative metabolic fates of a complex array of molecules. Examination of the profiles over time thus provides one with a powerful tool to correlate many concurrent molecular events that may relate to a given biological phenomenon. The final protocol requires as little as 1 milligram of tissue, which is extracted directly in a microfuge tube in 80% ethanol. With a variable wavelength detector, as little as 100 femtomoles of a given metabolite can be analyzed. Examples of the application of the protocols to a number of plant and microbial secondary product investigations and to screening for flavonoid mutants of Arabidopsis thaliana (L.) Heynh. are given.
已经开发出高效液相色谱法方案,以允许同时分析未分级生物提取物中非常广泛的可溶性芳香性次生代谢物。该方法简单、灵敏且重现性高。它们适用于植物和微生物中各种天然产物的研究。通过在 pH 3 的水中以 0 至 55%乙腈的梯度在反相 C18 柱上进行色谱分离,可以在 25 分钟内实现代谢物的高分辨率。例如,可以实现 20 多种苯丙烷代谢物和 18 种吲哚-3-乙酸天然代谢物的近基线分离。该方法可以直接应用于整个组织提取物,而无需预纯化或富集。此外,该方法的简单性和灵敏度允许将其应用于大量非常小的组织样品,例如在宿主-微生物相互作用研究中遇到的那些。这些图谱可以同时监测复杂分子的各种替代代谢途径。随着时间的推移检查图谱,因此为人们提供了一种强大的工具,以关联许多可能与特定生物学现象相关的并发分子事件。最终方案仅需 1 毫克组织,该组织直接在微离心机管中用 80%乙醇提取。使用可变波长检测器,仅需 100 飞摩尔的给定代谢物即可进行分析。给出了该方案在一些植物和微生物次生产物研究中的应用实例,以及拟南芥(L.)Heynh.黄酮类突变体的筛选。