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共聚焦体积 μXRF 和荧光计算 μ-断层扫描揭示了完整羽叶中砷的三维分布。

Confocal Volumetric μXRF and Fluorescence Computed μ-Tomography Reveals Arsenic Three-Dimensional Distribution within Intact Fronds.

机构信息

Centre for Mined Land Rehabilitation, Sustainable Minerals Institute , The University of Queensland , St. Lucia , QLD 4072 , Australia.

Laboratoire Sols et Environnement, UMR 1120 , Université de Lorraine , Nancy 54000 , France.

出版信息

Environ Sci Technol. 2020 Jan 21;54(2):745-757. doi: 10.1021/acs.est.9b03878. Epub 2019 Dec 31.

Abstract

The fern has been the subject of numerous studies because of its extreme arsenic hyperaccumulation characteristics. However, information on the arsenic chemical speciation and distribution across cell types within intact frozen-hydrated fronds is necessary to better understand the arsenic biotransformation pathways in this unusual fern. While 2D X-ray absorption spectroscopy imaging studies show that different chemical forms of arsenic, As(III) and As(V), occur across the plant organs, depth-resolved information on arsenic distribution and chemical speciation in different cell types within tissues of have not been reported. By using a combination of planar and confocal μ-X-ray fluorescence imaging and fluorescence computed μ-tomography, we reveal, in this study, the localization of arsenic in the endodermis and pericycle surrounding the vascular bundles in the rachis and the pinnules of the fern. Arsenic is also accumulated in the vascular bundles connecting into each sporangium, and in some mature sori. The use of 2D X-ray absorption near edge structure imaging allows for deciphering arsenic speciation across the tissues, revealing arsenate in the vascular bundles and arsenite in the endodermis and pericycle. This study demonstrates how different advanced synchrotron X-ray microscopy techniques can be complementary in revealing, at tissue and cellular levels, elemental distribution and chemical speciation in hyperaccumulator plants.

摘要

由于其极强的砷超积累特性,蕨类植物一直是众多研究的主题。然而,为了更好地了解这种不寻常蕨类植物中的砷生物转化途径,需要了解完整冷冻水合蕨类叶片细胞内砷的化学形态和分布情况。虽然二维 X 射线吸收光谱成像研究表明,不同化学形态的砷,砷(III)和砷(V),存在于植物器官中,但尚未报道关于组织内不同细胞类型中砷的分布和化学形态的深度分辨信息。本研究通过组合平面和共焦 μ-X 射线荧光成像和荧光计算 μ-断层扫描,揭示了砷在蕨类植物羽片和羽轴维管束周围的内皮层和中皮层中的定位。砷也在连接到每个孢子囊的维管束中积累,并且在一些成熟的孢子囊中积累。使用二维 X 射线吸收近边结构成像可以在组织中解析砷的形态,揭示维管束中的砷酸盐和内皮层和中皮层中的亚砷酸盐。这项研究表明,不同的同步加速器 X 射线显微镜技术如何在组织和细胞水平上互补,揭示超积累植物中的元素分布和化学形态。

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