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首页> 外文期刊>Trees. Structure and Function >Hierarchical structure of juvenile hybrid aspen xylem revealed using X-ray scattering and microtomography.
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Hierarchical structure of juvenile hybrid aspen xylem revealed using X-ray scattering and microtomography.

机译:利用X射线散射和显微断层扫描揭示了幼年杂种白杨木质部的层级结构。

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摘要

X-ray scattering and microtomography ( micro CT) are useful techniques to reveal the structure of wood at the nano- and micrometer scales. The nanostructure of xylem in greenhouse-grown 2.5- to 3.5-month-old Populus tremula L. x tremuloides Michx. trees was characterized using wide-angle X-ray scattering (WAXS), and the cellular structure was investigated using micro CT. For comparison, the nanostructure of wood in 2-year-old silver birch, Norway spruce and Scots pine saplings was determined. Based on the micro CT results, the lengths of fiber lumina of the hybrid aspen saplings were shorter than any previous results on the lengths of wood fibers. The mean microfibril angles of the hybrid aspen saplings were significantly lower (8 degrees -14 degrees ) than those of the birch, spruce and pine saplings (27 degrees -35 degrees ) implicating that cellulose microfibrils were oriented nearly parallel to the cell axis in the young hybrid aspen saplings. Hybrid aspen saplings were found to contain tension wood based on the histochemical analysis and micro CT images. However, typical tension wood properties, i.e. larger crystallite width and higher crystallinity than in normal wood, were detected only in a few hybrid aspen samples, while in most of the hybrid aspen saplings, the crystallite widths (3.0+or-0.1 nm) and the crystallinities (30+or-5%) corresponded to those of normal wood. The deformations of cellulose crystallites were determined using WAXS in situ upon dehydration of the never-dried samples. In all the species studied, the cellulose unit cell dimension decreased and disorder of cellulose chains increased parallel to the chains upon drying. Also, the transverse disorder of chains increased in birch, spruce and pine, while no changes were detected in this direction in hybrid aspen. The crystallite widths and drying deformation results might indicate that the gelatinous layer has not fully developed in the young hybrid aspen saplings.
机译:X射线散射和显微断层照相术(micro CT)是有用的技术,可以揭示纳米级和微米级的木材结构。温室生长的2.5到3.5个月大的Populus tremula L. x tremuloides Michx木质部的纳米结构。使用广角X射线散射(WAXS)表征树木,并使用micro CT研究细胞结构。为了进行比较,测定了2岁的白桦,挪威云杉和苏格兰松树树苗中木材的纳米结构。基于显微CT结果,杂种杨木幼树的纤维腔长度比以前的木纤维长度要短。杂种杨木树苗的平均微纤丝角(8度-14度)比桦木,云杉和松树树苗的平均微纤丝角(27度-35度)低,这表明纤维素微纤维的取向几乎平行于细胞轴。年轻的杂交白杨树苗。根据组织化学分析和显微CT图像,发现杂种白杨幼树含有张力木材。但是,仅在一些杂种白杨样品中检测到典型的拉伸木材性能,即比普通木材更大的微晶宽度和更高的结晶度,而在大多数杂种白杨树苗中,微晶宽度(3.0+或-0.1 nm)和结晶度(30±5%)与普通木材的结晶度相对应。在从未干燥的样品脱水后,使用WAXS原位测定纤维素微晶的变形。在所有研究的物种中,纤维素单位细胞的尺寸减小,并且纤维素链在干燥时的平行于链的紊乱增加。此外,桦木,云杉和松树的链横向障碍增加,而杂种白杨在该方向上未发现变化。晶体宽度和干燥变形结果可能表明在年轻的杂种杨木幼树中胶凝层尚未完全发育。

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