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首页> 外文期刊>Plant methods >Concurrent profiling of indole-3-acetic acid, abscisic acid, and cytokinins and structurally related purines by high-performance-liquid-chromatography tandem electrospray mass spectrometry
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Concurrent profiling of indole-3-acetic acid, abscisic acid, and cytokinins and structurally related purines by high-performance-liquid-chromatography tandem electrospray mass spectrometry

机译:高效液相色谱串联电喷雾质谱同时分析吲哚-3-乙酸,脱落酸和细胞分裂素及结构相关嘌呤

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Background Cytokinins (CKs) are a group of plant growth regulators that are involved in several plant developmental processes. Despite the breadth of knowledge surrounding CKs and their diverse functions, much remains to be discovered about the full potential of CKs, including their relationship with the purine salvage pathway, and other phytohormones. The most widely used approach to query unknown facets of CK biology utilized functional genomics coupled with CK metabolite assays and screening of CK associated phenotypes. There are numerous different types of assays for determining CK quantity, however, none of these methods screen for the compendium of metabolites that are necessary for elucidating all roles, including purine salvage pathway enzymes in CK metabolism, and CK cross-talk with other phytohormones. Furthermore, all published analytical methods have drawbacks ranging from the required use of radiolabelled compounds, or hazardous derivatization reagents, poor sensitivity, lack of resolution between CK isomers and lengthy run times. Results In this paper, a method is described for the concurrent extraction, purification and analysis of several CKs (freebases, ribosides, glucosides, nucleotides), purines (adenosine monophosphate, inosine, adenosine, and adenine), indole-3-acetic acid, and abscisic acid from hundred-milligram (mg) quantities of Arabidopsis thaliana leaf tissue. This method utilizes conventional Bieleski solvents extraction, solid phase purification, and is unique because of its diverse range of detectable analytes, and implementation of a conventional HPLC system with a fused core column that enables good sensitivity without the requirement of a UHPLC system. Using this method we were able to resolve CKs about twice as fast as our previous method. Similarly, analysis of adenosine, indole-3-acetic acid, and abscisic acid, was comparatively rapid. A further enhancement of the method was the utilization of a QTRAP 5500 mass analyzer, which improved upon several aspects of our previous analytical method carried out on a Quattro mass analyzer. Notable improvements included much superior sensitivity, and number of analytes detectable within a single run. Limits of detection ranged from 2 pM for (9G)Z to almost 750 pM for indole-3-acetic acid. Conclusions This method is well suited for functional genomics platforms tailored to understanding CK metabolism, CK interrelationships with purine recycling and associated hormonal cross-talk.
机译:背景细胞分裂素(CKs)是一组植物生长调节剂,参与多个植物发育过程。尽管有关CK及其功能的知识广博,但关于CK的全部潜力,包括它们与嘌呤挽救途径及其他植物激素的关系,仍有很多待发现。查询CK生物学未知面的最广泛使用的方法是将功能基因组学与CK代谢物检测结合使用,并筛选CK相关表型。有许多不同类型的测定CK含量的测定方法,但是,这些方法都没有筛选出阐明所有作用所必需的代谢物纲要,包括CK代谢中的嘌呤挽救途径酶以及CK与其他植物激素的串扰。此外,所有公开的分析方法均具有缺点,包括需要使用放射性标记的化合物或危险的衍生试剂,灵敏度低,CK异构体之间缺乏分离度以及运行时间长。结果本文描述了一种同时提取,纯化和分析几种CK(游离碱,核糖苷,葡萄糖苷,核苷酸),嘌呤(单磷酸腺苷,肌苷,腺苷和腺嘌呤),吲哚-3-乙酸,百毫克拟南芥叶组织中的脱落酸和脱落酸。该方法利用常规的Bieleski溶剂萃取,固相纯化,并且由于其可检测的分析物种类繁多而独树一帜,并且采用带有熔芯柱的常规HPLC系统,无需UHPLC系统即可实现良好的灵敏度。使用此方法,我们能够以比以前方法快两倍的速度解决CK。同样,腺苷,吲哚-3-乙酸和脱落酸的分析也相对较快。该方法的进一步增强是QTRAP 5500质量分析仪的利用,它改进了我们先前在Quattro质量分析仪上进行的分析方法的几个方面。显着的改进包括出色的灵敏度,以及一次运行即可检测到的分析物数量。检测限范围从(9G)Z的2 pM到吲哚-3-乙酸的几乎750 pM。结论该方法非常适合用于了解CK代谢,CK与嘌呤再循环和相关激素相互作用的相互关系的功能基因组学平台。

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