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Cellular level in planta analysis of radial movement of artificially injected caesium in Cryptomeria japonica xylem

机译:PlantAtmeria japonica Xylem中人工注射铯的径向运动的Planta分析细胞水平

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Key messageRay parenchyma cells represent the main pathway for mineral radial movement from sapwood towards intermediate wood, based on direct cryo-scanning electron microscopy/energy dispersive X-ray spectroscopy analysis.AbstractRay parenchyma cells are considered to be associated with the radial movement of some elements from sapwood to heartwood in tree trunks. However, this function has not yet been experimentally confirmed. In this study, we analysed the radial movement of caesium (Cs), as a tracer of minerals, through the xylem at the cellular level in standing trees. A solution containing a stable Cs isotope diluted in aqueous acid fuchsin was injected into the outer sapwood of Japanese cedar trees for 3h, 1, or 4 days. After the injection, the trunk (including the injection points) was freeze-fixed with liquid nitrogen. Subsequently, the trees were felled. The red colour from acid fuchsin was detected in the outer sapwood and did not move passively in the radial direction with free water. For detailed analysis of the Cs distribution in the radial direction (from the red-coloured sapwood towards the pith), we performed cryo-scanning electron microscopy/energy-dispersive X-ray spectroscopy point analysis of the frozen-hydrated samples to analyse the Cs distribution by detecting the characteristic Cs-L X-ray peak. In the outer sapwood, Cs was detected in all cell structures at all injection periods. In the inner xylem tissue, Cs was detected in the cell wall and lumen of ray parenchyma cells at 4-day injection, but not at 3-h and 1-day injection. These results suggest that ray parenchyma cells represent the main pathway whereby Cs can move radially from sapwood towards intermediate wood in standing Japanese cedar trees.
机译:Key Messageray薄壁细胞代表了从Sapwood朝中间木材的矿物质径向运动的主要途径,基于直接冷冻扫描电子显微镜/能量分散X射线光谱分析.Abstractray薄壁细胞被认为与某些元素的径向运动相关联从sapwood到树干的心木。但是,此功能尚未经过实验证实。在这项研究中,我们分析了铯(Cs)的径向运动,作为矿物质的矿物质的示踪剂,在常设树木中的蜂窝水平。将含有稳定的CS同位素在酸紫素水溶液中稀释的溶液注入日本雪松树的外部Sapwood 3小时,1或4天。注射后,用液氮冻结躯干(包括注射点)。随后,树木被砍伐了。在外层垫层中检测来自酸紫素的红色,并没有被动地在径向方向上与自由水移动。为了详细分析径向上的CS分布(从红彩色Sapwood朝向髓),我们对冷冻水合样品进行了冷冻扫描电子显微镜/能量分散X射线光谱点分析以分析CS通过检测特征CS-L X射线峰值的分布。在外部皂状物中,在所有喷射期的所有细胞结构中检测到Cs。在内部木质组织中,在4天注射时在射线实质细胞的细胞壁和内腔中检测到Cs,但不是3小时和1天注射。这些结果表明,射线实质细胞代表了主要途径,由此CS可以从SAPWOOD朝向中间木材径向移动,常设日本雪松树。

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