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Liquid chromatography/time-of-flight mass spectrometry for the analysis of plant samples: A method for simultaneous screening of common cofactors or nucleotides and application to an engineered plant line

机译:用于植物样品分析的液相色谱/飞行时间质谱:一种同时筛选常见辅因子或核苷酸的方法,并应用于工程化植物系

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摘要

Intense efforts are currently devoted to improve plant metabolomic analyses so as to describe more accurately the whole picture of metabolic pathways. Analyses based on liquid chromatography/time-of-flight mass spectrometry (LC-TOF) are now widely distributed among plant science laboratories. However, the use of reliable, sensitive LC-TOF methods to identify and quantify micromolar or inframicromolar key metabolites is often impeded by the sensitivity of the technique to sample preparation or chromatographic conditions. Typically, the sample matrix has a substantial influence on ionization efficiency and therefore, on the detectability of such compounds. Here, we describe a new method to analyze simultaneously 23 nucleotides and cofactors from plant extracts, taking advantage of solid-phase extraction (SPE) prior to injection. The influence of common m/z fragments in several metabolites and adducts is considered. We applied this method to characterise metabolic intermediates of NAD biosynthesis in Arabidopsis thaliana, using a wild-type and an engineered transgenic plant line that produces bacterial quinolinate phosphoribosyl transferase (nadc). We show that sample pre-purification with SPE is strictly required not only for compound quantification and identification but also to allow ionization of matrix-sensitive compounds (e.g. nicotinamide) or alleviate fragmentation of others (e.g. NAD). When exogenous substrate quinolinate was infiltrated into Arabidopsis leaves to increase the natural content in downstream metabolites, a clear correlation between intermediates of NAD biosynthesis was seen, showing the accuracy of our method for quantification in biological samples. Nadc plants only showed very modest changes in NAD-related metabolites and furthermore, they were associated with slightly lower photosynthetic performance and ATP production.
机译:当前,人们正致力于改进植物代谢组学分析,以便更准确地描述代谢途径的全貌。基于液相色谱/飞行时间质谱(LC-TOF)的分析现已广泛分布于植物科学实验室之间。然而,该技术对样品制备或色谱条件的敏感性常常阻碍了使用可靠,灵敏的LC-TOF方法来鉴定和定量微摩尔或亚微摩尔的关键代谢物。通常,样品基质对电离效率具有实质性影响,因此对此类化合物的可检测性具有重大影响。在这里,我们描述了一种新方法,可以同时分析植物提取物中的23个核苷酸和辅因子,并在注射前利用固相提取(SPE)的优势。考虑了常见的m / z片段在几种代谢物和加合物中的影响。我们应用此方法来表征拟南芥中NAD生物合成的代谢中间体,使用一种野生型和经过工程改造的转基因植物系,产生细菌喹啉酸酯磷酸核糖基转移酶(nadc)。我们表明,使用SPE进行样品预纯化不仅是化合物定量和鉴定的严格要求,而且还允许基质敏感化合物(例如烟酰胺)的电离或减轻其他化合物的裂解(例如NAD)。当外源底物喹啉酸酯浸入拟南芥叶中以增加下游代谢产物的天然含量时,NAD生物合成中间体之间存在明显的相关性,这表明我们定量方法在生物样品中的准确性。 Nadc植物在NAD相关代谢产物中仅表现出非常适度的变化,此外,它们与光合性能和ATP产量略低有关。

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