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3D-analysis of plant microstructures: advantages and limitations of synchrotron X-ray microtomography

机译:植物微观结构的3D分析:同步X射线显微镜监测的优点和局限性

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摘要

Synchrotron X-ray computer microtomography was used to analyze the microstructure of rose peduncles. Samples from three rose cultivars, differing in anatomy, were scanned to study the relation between tissue structure and peduncles mechanical strength. Additionally, chlorophyll fluorescence imaging and conventional light microscopy was applied to quantify possible irradiation-induced damage to plant physiology and tissue structure. The spatial resolution of synchrotron X-ray computer microtomography was sufficiently high to investigate the complex tissues of intact rose peduncles without the necessity of any preparation. However, synchrotron X-radiation induces two different types of damage on irradiated tissues. First, within a few hours after first X-ray exposure, there is a direct physical destruction of cell walls. In addition, a slow and delayed destruction of chlorophyll and, consequently, of photosynthetic activity occurred within hours/days after the exposure. The results indicate that synchrotron X-ray computer microtomography is well suited for three-dimensional visualization of the microstructure of rose peduncles. However, in its current technique, synchrotron X-ray computer microtomography is not really non-destructive but induce tissue damage. Hence, this technique needs further optimization before it can be applied for time-series investigations of living plant materials.
机译:Synchrotron X射线计算机MICROROMACTOM用于分析玫瑰花序的微观结构。扫描来自三朵玫瑰品种的样品,不同的解剖学,以研究组织结构与机械强度的关系。另外,应用叶绿素荧光成像和常规光学显微镜,以量化可能的辐射诱导的植物生理学和组织结构损伤。同步X射线计算机微微映射的空间分辨率足够高,以研究完整玫瑰花序的复杂组织,而无需任何制备。然而,同步rotron X-辐射在辐照组织上引起两种不同类型的损伤。首先,在第一个X射线暴露后的几个小时内,细胞壁存在直接物理破坏。此外,叶绿素的缓慢和延迟破坏,因此在暴露后的小时/天内发生光合活性。结果表明,同步X射线计算机微观图非常适合于玫瑰花序圈的微观结构的三维可视化。然而,在目前的技术中,同步X射线计算机微观图并不是真正无损,但诱导组织损伤。因此,该技术需要进一步优化,然后才能应用于生物植物材料的时间序列调查。

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