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首页> 外文期刊>Journal of synchrotron radiation >Examining a synchrotron-based approach for in situ analyses of Al speciation in plant roots
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Examining a synchrotron-based approach for in situ analyses of Al speciation in plant roots

机译:检查基于同步的植物根系原位分析方法

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Aluminium (Al) K- and L-edge X-ray absorption near-edge structure (XANES) has been used to examine Al speciation in minerals but it remains unclear whether it is suitable for in situ analyses of Al speciation within plants. The XANES analyses for nine standard compounds and root tissues from soybean (Glycine max), buckwheat (Fagopyrum tataricum), and Arabidopsis (Arabidopsis thaliana) were conducted in situ. It was found that K-edge XANES is suitable for differentiating between tetrahedral coordination (peak of 1566 eV) and octahedral coordination (peak of 1568 to 1571 eV) Al, but not suitable for separating Al binding to some of the common physiologically relevant compounds in plant tissues. The Al L-edge XANES, which is more sensitive to changes in the chemical environment, was then examined. However, the poorer detection limit for analyses prevented differentiation of the Al forms in the plant tissues because of their comparatively low Al concentration. Where forms of Al differ markedly, K-edge analyses are likely to be of value for the examination of Al speciation in plant tissues. However, the apparent inability of Al K-edge XANES to differentiate between some of the physiologically relevant forms of Al may potentially limit its application within plant tissues, as does the poorer sensitivity at the L-edge.
机译:铝(Al)K-和L边缘X射线吸收近边缘结构(Xanes)用于检查矿物质的Al形状,但仍然不清楚是否适合于植物内的AL形态的原位分析。从大豆(甘氨酸Max),荞麦(Fagopyrum Tataricum)和拟南芥(拟南芥)的XANES分析了九种标准化合物和根组织,原位进行了拟南芥。结果发现k边缘Xanes适用于区分四面体协调(峰值1566EV)和八面体配位(峰值为1568至1571eV),但不适合将Al结合与一些常见的生理学相关化合物分离植物组织。然后检查了对化学环境变化更敏感的Al L边缘Xanes。然而,由于它们相对低的Al浓度,分析的较差的检测限防止了植物组织中的Al形式的分化。如果Al的形式显着不同,k边缘分析可能对植物组织中的Al形态进行检查。然而,Al K-Edge Xanes在某些生理学相关形式的Al之间分化的明显不能区分Al可能会限制其在植物组织内的应用,因此L边缘的较差敏感性。

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