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Prospects for in vivo NMR methods in xenobiotic research in plants

机译:体内NMR方法在植物异生物研究中的前景

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The application of non-invasive nuclear magnetic resonance (NMR) methods in xenobiotic research is reviewed in relation to: (i) the characterisation of the effects of xenobiotics on the metabolism of plants and plant cell suspensions; (ii) the direct detection of xenobiotics and their degradation products in vivo; and (iii) the spatial localisation of xenobiotics and their derivatives at the subcellular and tissue levels. Novel information has been generated by in vivo NMR studies of both agrochemicals and heavy metals, but a lack of generality in the methods makes it difficult to extrapolate from one successful application to the next. In vivo NMR spectroscopy is shown to be informative when a xenobiotic perturbs metabolic pathways that are accessible to the technique, and it is useful for probing the partitioning of paramagnetic metal ions between the cytoplasm and the vacuole. The successful application of 19F NMR to the analysis of plant tissue extracts also suggests that in vivo 19F NMR spectroscopy may have a role in biotransformation studies of fluorinated xenobiotics. In contrast NMR imaging techniques have been little used for xenobiotic research in plants, and while the method has been shown to be capable of monitoring the uptake and translocation of paramagnetic ions in plants, the potential use of high resolution ~1H and ~(19)F NMR imaging for mapping agrochemicals in tissues is still in its infancy.
机译:综述了非侵入性核磁共振(NMR)方法在异源生物研究中的应用:(i)异源生物对植物和植物细胞悬浮液代谢的影响的表征; (ii)在体内直接检测异种生物及其降解产物; (iii)异生物素及其衍生物在亚细胞和组织水平的空间定位。通过农用化学物质和重金属的体内NMR研究已经获得了新的信息,但是这些方法缺乏通用性,因此很难从一个成功的应用程序推断出另一个成功的应用程序。当异种生物干扰该技术可利用的代谢途径时,体内NMR光谱显示出了丰富的信息,它对于探测细胞质和液泡之间的顺磁性金属离子的分配很有用。 19 F NMR在植物组织提取物分析中的成功应用还表明,体内19 F NMR光谱可能在氟化异源生物的生物转化研究中发挥作用。相比之下,NMR成像技术很少用于植物中的异生素研究,尽管已表明该方法能够监测植物中顺磁性离子的吸收和转运,但高分辨率〜1H和〜(19)的潜在用途用于组织中农用化学物质作图的F NMR成像仍处于起步阶段。

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