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On-line mass spectrometry: membrane inlet sampling

机译:在线质谱:膜入口采样

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摘要

Significant insights into plant photosynthesis and respiration have been achieved using membrane inlet mass spectrometry (MIMS) for the analysis of stable isotope distribution of gases. The MIMS approach is based on using a gas permeable membrane to enable the entry of gas molecules into the mass spectrometer source. This is a simple yet durable approach for the analysis of volatile gases, particularly atmospheric gases. The MIMS technique strongly lends itself to the study of reaction flux where isotopic labeling is employed to differentiate two competing processes; i.e., O2 evolution versus O2 uptake reactions from PSII or terminal oxidase/rubisco reactions. Such investigations have been used for in vitro studies of whole leaves and isolated cells. The MIMS approach is also able to follow rates of isotopic exchange, which is useful for obtaining chemical exchange rates. These types of measurements have been employed for oxygen ligand exchange in PSII and to discern reaction rates of the carbonic anhydrase reactions. Recent developments have also engaged MIMS for online isotopic fractionation and for the study of reactions in inorganic systems that are capable of water splitting or H2 generation. The simplicity of the sampling approach coupled to the high sensitivity of modern instrumentation is a reason for the growing applicability of this technique for a range of problems in plant photosynthesis and respiration. This review offers some insights into the sampling approaches and the experiments that have been conducted with MIMS.
机译:使用膜入口质谱(MIMS)分析稳定的气体同位素分布,已经获得了对植物光合作用和呼吸作用的重要见解。 MIMS方法基于使用透气膜使气体分子进入质谱仪源。这是一种用于分析挥发性气体(特别是大气气体)的简单而耐用的方法。 MIMS技术非常适合于反应通量的研究,其中使用同位素标记来区分两个竞争过程。即PSII的O2放出与O2吸收反应或末端氧化酶/ rubisco反应之间的关系。此类研究已用于全叶和分离细胞的体外研究。 MIMS方法还能够跟踪同位素交换速率,这对于获得化学交换速率很有用。这些类型的测量已用于PSII中的氧配体交换和辨别碳酸酐酶反应的反应速率。最近的发展也使MIMS用于在线同位素分馏和研究能够水分解或生成H2的无机系统中的反应。采样方法的简单性加上现代仪器的高灵敏度,是该技术越来越适用于植物光合作用和呼吸作用问题的原因。这篇评论提供了一些有关采样方法和使用MIMS进行的实验的见解。

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