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Using SRμCT to define water transport capacity in Picea abies

机译:使用SRμCT定义云杉冷杉的输水能力

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摘要

Water transport from roots to shoots is a vital necessity in trees in order to sustain their photosynthetic activity and, hence, their physiological activity. The vascular tissue in charge is the woody body of root, stem and branches. In gymnosperm trees, like spruce trees (Picea abies (L.) Karst.), vascular tissue consists of tracheids: elongated, protoplast-free cells with a rigid cell wall that allow for axial water transport via their lumina. In order to analyze the over-all water transport capacity within one growth ring, time-consuming light microscopy analysis of the woody sample still is the conventional approach for calculating tracheid lumen area. In our investigations at the Imaging Beamline (IBL) operated by the Helmholtz-Zentrum Geesthacht (HZG) at PETRA Ⅲ storage ring of the Deutsches Elektronen-Synchrotron DESY, Hamburg, we applied SRμCT on small wood samples of spruce trees in order to visualize and analyze size and formation of xylem elements and their respective lumina. The selected high-resolution phase-contrast technique makes full use of the novel 20 MPixel CMOS area detector developed within the cooperation of HZG and the Karlsruhe Institute of Technology. Our results correspond well with data by light microscopy analysis and, hence, prove, that μCT is a most appropriate method to gain valid information on xylem cell structure and tree water transport capacity.
机译:从根到芽的水运输是树木中维持其光合作用并因此维持其生理活性的必不可少的条件。负责的血管组织是根,茎和分支的木本植物。在裸子植物树中,像云杉树(Picea abies(L.)Karst。)一样,维管组织由气管组成:细长的无原生质细胞,细胞壁坚硬,可通过其腔管进行轴向水传输。为了分析一个生长环内的总体水输送能力,对木质样品进行费时的光学显微镜分析仍然是计算气管腔面积的常规方法。在我们对位于汉堡德意志电子同步同步技术公司PETRAⅢ存储环的Helmholtz-Zentrum Geesthacht(HZG)操纵的成像光束线(IBL)进行的研究中,我们将SRμCT应用于云杉树木的小木样上,以便可视化和分析木质部元素及其各自腔的大小和形成。选定的高分辨率相衬技术充分利用了由HZG和卡尔斯鲁厄技术学院合作开发的新型20 MPixel CMOS区域检测器。我们的结果与通过光学显微镜分析得到的数据非常吻合,因此证明,μCT是获得木质部细胞结构和树木水运输能力的有效信息的最合适方法。

著录项

  • 来源
    《Developments in X-ray tomography XI》|2017年|1039118.1-1039118.7|共7页
  • 会议地点 San Diego(US)
  • 作者单位

    Eberswalde University for Sustainable Development, Faculty of Wood Engineering, Department Applied Wood Biology, Schicklerstr. 5, 16225 Eberswalde, Germany;

    Eberswalde University for Sustainable Development, Faculty of Wood Engineering, Department Applied Wood Biology, Schicklerstr. 5, 16225 Eberswalde, Germany;

    Helmholtz-Zentrum Geesthacht, Institute of Materials Research, Max-Planck-Str. 1, 21502 Geesthacht, Germany;

    Helmholtz-Zentrum Geesthacht, Institute of Materials Research, Max-Planck-Str. 1, 21502 Geesthacht, Germany;

    Eberswalde University for Sustainable Development, Faculty of Wood Engineering, Department Applied Wood Biology, Schicklerstr. 5, 16225 Eberswalde, Germany;

    Institute for Data Processing and Electronics, Karlsruhe Institute of Technology, Hermann-v.-Helmholtz-Platz 1, 76344 Eggenstein-Leopoldshafen, Germany;

    Institute for Data Processing and Electronics, Karlsruhe Institute of Technology, Hermann-v.-Helmholtz-Platz 1, 76344 Eggenstein-Leopoldshafen, Germany;

    Institute for Data Processing and Electronics, Karlsruhe Institute of Technology, Hermann-v.-Helmholtz-Platz 1, 76344 Eggenstein-Leopoldshafen, Germany;

    Helmholtz-Zentrum Geesthacht, Institute of Materials Research, Max-Planck-Str. 1, 21502 Geesthacht, Germany;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Synchrotron radiation; microtomography; absorption contrast; phase contrast; wood; spruce; tracheid;

    机译:同步辐射显微断层扫描吸收对比相衬木;云杉气管;
  • 入库时间 2022-08-26 14:31:15

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