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Application of Quantitative Fluorescence and Absorption-Edge Computed Microtomography to Image Metal Compartmentalization in Alyssum murale

机译:定量荧光和吸收边缘计算机断层扫描技术在香雪球图像金属隔室中的应用

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摘要

This paper shows that synchrotron-based fluorescence and absorption-edge computed microtomographies(CMT)are well-suited for determining the Compartmentalization and concentration of metals in hyperaccumulating plant tissues.Fluorescence CMT of intact leaf,stem,and root samples revealed that Ni concentrated in stem and leaf dermal tissues and,together with Mn,in distinct regions associated with the Ca-rich trichomes on the leaf surface of the nickel hyperaccumulator Alyssommorale "Kotodesh".Metal enrichment was also observed within the vascular system of the finer roots,stem,and leaves but absent from the coarser root,which had a well-correlated metal coating.Absorption-edge CMT showed the three-dimensional distribution of the highest metal concentrations and verified that epidermal localization and Ni and Mn co-localization atthetrichome base are phenomena that occurred throughout the entire leaf and may contribute significantly to metal detoxification and storage.Ni was also observed in the leaf tips,possibly resulting from release of excess Ni with guttation fluids.These results are consistent with a transport model where Ni is removed from the soil by the finer roots,carried to the leaves through the stem xylem,and distributed throughout the leaf by the veins to the dermal tissues,trichome bases,and in some cases the leaf tips.
机译:本文表明,基于同步加速器的荧光和吸收边缘计算机断层摄影术(CMT)非常适合用于确定过度富集的植物组织中金属的分区和浓度。完整叶,茎和根样品的荧光CMT表明Ni富集在茎和叶的真皮组织,以及与Mn一起在镍超富集者Alyssommorale“ Kotodesh”叶表面上与富含Ca的毛状体相关的不同区域。在较细的根,茎,吸收边缘CMT显示了最高金属浓度的三维分布,并证明表皮位和镍和锰共定位是在角线虫基部的现象发生在整片叶子上,可能对金属的解毒和贮藏有很大贡献。在叶尖中,可能是由于带有胶状液体的过量镍释放所致。这些结果与一种运输模型相一致,在运输模型中,较细的根部将镍从土壤中去除,通过茎木质部运送到叶片,并分布在整个叶片中通过静脉到达真皮组织,毛状体基部,在某些情况下还包括叶尖。

著录项

  • 来源
    《Environmental Science & Technology》 |2005年第7期|p.2210-2218|共9页
  • 作者单位

    Environmental Soil Chemistry Research Group,Department of Plant and Soil Sciences,152 Townsend Hall,University of Delaware,Newark,Delaware 19717-13O_3,USDA-ARS,Animal Manure and Biproducts Laboratory,Beltesville,Maryland 20705,University of Chicago,C;

    Environmental Soil Chemistry Research Group,Department of Plant and Soil Sciences,152 Townsend Hall,University of Delaware,Newark,Delaware 19717-13O_3,USDA-ARS,Animal Manure and Biproducts Laboratory,Beltesville,Maryland 20705,University of Chicago,C;

    Environmental Soil Chemistry Research Group,Department of Plant and Soil Sciences,152 Townsend Hall,University of Delaware,Newark,Delaware 19717-13O_3,USDA-ARS,Animal Manure and Biproducts Laboratory,Beltesville,Maryland 20705,University of Chicago,C;

    Environmental Soil Chemistry Research Group,Department of Plant and Soil Sciences,152 Townsend Hall,University of Delaware,Newark,Delaware 19717-13O_3,USDA-ARS,Animal Manure and Biproducts Laboratory,Beltesville,Maryland 20705,University of Chicago,C;

    Environmental Soil Chemistry Research Group,Department of Plant and Soil Sciences,152 Townsend Hall,University of Delaware,Newark,Delaware 19717-13O_3,USDA-ARS,Animal Manure and Biproducts Laboratory,Beltesville,Maryland 20705,University of Chicago,C;

    Environmental Soil Chemistry Research Group,Department of Plant and Soil Sciences,152 Townsend Hall,University of Delaware,Newark,Delaware 19717-13O_3,USDA-ARS,Animal Manure and Biproducts Laboratory,Beltesville,Maryland 20705,University of Chicago,C;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境化学;
  • 关键词

  • 入库时间 2022-08-17 14:07:55

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