首页> 美国卫生研究院文献>Plants >Dimensional Changes of Tracheids during Drying of Radiata Pine (Pinus radiata D. Don) Compression Woods: A Study Using Variable-Pressure Scanning Electron Microscopy (VP-SEM)
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Dimensional Changes of Tracheids during Drying of Radiata Pine (Pinus radiata D. Don) Compression Woods: A Study Using Variable-Pressure Scanning Electron Microscopy (VP-SEM)

机译:辐射松(Pinus radiata D. Don)压缩木材干燥过程中气管的尺寸变化:使用可变压力扫描电子显微镜(VP-SEM)的研究

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摘要

Variable-pressure scanning electron microscopy was used to investigate the dimensional changes in longitudinal, tangential and radial directions, on wetting and drying, of tracheids of opposite wood (OW) and three grades of compression woods (CWs), including severe CW (SCW) and two grades of mild compression wood (MCW) (MCW1 and MCW2) in corewood of radiata pine (Pinus radiata) saplings. The CW was formed on the underside and OW on the upper side of slightly tilted stems. In the longitudinal direction, the shrinkage of SCW tracheids was ~300% greater than that of OW tracheids, with the shrinkage of the MCW1 and MCW2 tracheids being intermediate. Longitudinal swelling was also investigated and hysteresis was demonstrated for the tracheids of all corewood types, with the extent of hysteresis increasing with CW severity. A statistical association was found between longitudinal shrinkage and the content of lignin and galactosyl residues in the cell-wall matrix. The galactosyl residues are present mostly as (1→4)-β-galactans, which are known to have a high capacity for binding water and swell on hydration. The small proportions of (1→3)-β-glucans in the CWs have similar properties. These polysaccharides may play a functional role in the longitudinal shrinking and swelling of CW tracheids. Tangential shrinkage of tracheids was greater than radial shrinkage but both were greatest for OW and least for SCW, with the MCW1 and MCW2 being intermediate.
机译:变压扫描电子显微镜用于研究相对木材(OW)和三种等级的压缩木材(CW),包括重度CW(SCW)的气孔在纵向,切向和径向方向在润湿和干燥时的尺寸变化。辐射松(Pinus radiata)树苗的芯材中有两个等级的轻质压缩木材(MCW1和MCW2)。 CW形成在稍微倾斜的茎的下侧,OW形成在上侧。在纵向方向上,SCW管的收缩比OW管的收缩大300%,其中MCW1和MCW2管的收缩处于中间。还研究了纵向膨胀,并证明了所有芯材类型的气管的滞后现象,其滞后程度随CW严重程度的增加而增加。在纵向收缩与细胞壁基质中木质素和半乳糖基残基的含量之间发现统计关联。半乳糖基残基主要以(1→4)-β-半乳聚糖形式存在,已知其具有高结合水的能力并在水合作用时溶胀。连续波中的一小部分(1→3)-β-葡聚糖具有相似的特性。这些多糖可能在CW管胞的纵向收缩和溶胀中发挥功能性作用。管胞的切向收缩率大于径向收缩率,但OW值最大,SCW值最小,MCW1和MCW2处于中间。

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