首页> 外文期刊>Journal of Microscopy >LOCALIZATION OF CHEMICAL ELEMENTS AND ISOTOPES IN THE LEAF OF SOYBEAN (GLYCINE MAX) BY SECONDARY ION MASS SPECTROMETRY MICROSCOPY - CRITICAL CHOICE OF SAMPLE PREPARATION PROCEDURE
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LOCALIZATION OF CHEMICAL ELEMENTS AND ISOTOPES IN THE LEAF OF SOYBEAN (GLYCINE MAX) BY SECONDARY ION MASS SPECTROMETRY MICROSCOPY - CRITICAL CHOICE OF SAMPLE PREPARATION PROCEDURE

机译:二次离子质谱法在大豆叶中化学元素和同位素的定位-样品制备过程的关键选择

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摘要

Secondary ion mass spectrometry (SIMS) is one of the few microscopical methods that potentially can detect and in situ localize the various isotopes of virtually all elements. Recent work with SIMS has demonstrated the possibility of imaging the distribution of various elements in plant cell and tissues. However, in these studies, the elements were incorporated in cell macromolecules or associated with structural polymers, precipitated or immobilized in dry seeds. The localization of mineral ions is of particular significance for the physiology of higher plants owing to their quantitative importance and the impact of their cellular distribution on metabolic regulation. Here we analyse the possibility of mapping different elements (K, Ca, Mg, P, S, N-15 and N-14) present as soluble and/or bound forms in highly vacuolated leaf cells. Cryoprocedures to prepare samples for SIMS detection are described and discussed. The quality of the results is assessed at each step of the sample preparation and analysis. Various methodologies are used, including photonic and electronic microscopies, and the agreement of the observed ion distribution with current knowledge of ion compartmentalization in plant cells. The K/Ca emission ratio is proposed as an index of the degree of preservation of the natural ion distribution to critically evaluate the results and identify where artefacts are likely to occur. [References: 56]
机译:二次离子质谱(SIMS)是为数不多的微观方法之一,可以潜在地检测并就地定位几乎所有元素的各种同位素。 SIMS的最新研究表明,可以对植物细胞和组织中各种元素的分布进行成像。然而,在这些研究中,这些元素被掺入细胞大分子中或与结构聚合物结合,沉淀或固定在干种子中。矿物离子的定位由于其定量重要性以及其细胞分布对代谢调节的影响,对高等植物的生理学具有特别重要的意义。在这里,我们分析了在高度空泡的叶细胞中以可溶性和/或结合形式存在的不同元素(K,Ca,Mg,P,S,N-15和N-14)作图的可能性。描述和讨论了准备用于SIMS检测的样品的冷冻程序。在样品制备和分析的每个步骤中评估结果的质量。使用了各种方法,包括光子显微镜和电子显微镜,以及观察到的离子分布与植物细胞中离子区分开的最新知识的一致性。提出将K / Ca发射比作为自然离子分布的保留程度的指标,以严格评估结果并确定可能发生伪影的位置。 [参考:56]

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