Savić Aleksandar, Mitrović Aleksandra, Donaldson Lloyd, Simonović Radosavljević Jasna, Bogdanović Pristov Jelena, Steinbach Gabor, Garab Győző, Radotić Ksenija
1Institute for Multidisciplinary Research,University of Belgrade,Kneza Višeslava 1,11000 Belgrade,Serbia.
3Scion,Private Bag 3020,Rotorua 3010,New Zealand.
Microsc Microanal. 2016 Apr;22(2):361-7. doi: 10.1017/S143192761600009X. Epub 2016 Feb 9.
Fluorescence-detected linear dichroism (FDLD) microscopy provides observation of structural order in a microscopic sample and its expression in numerical terms, enabling both quantitative and qualitative comparison among different samples. We applied FDLD microscopy to compare the distribution and alignment of cellulose fibrils in cell walls of compression wood (CW) and normal wood (NW) on stem cross-sections of juvenile Picea omorika trees. Our data indicate a decrease in cellulose fibril order in CW compared with NW. Radial and tangential walls differ considerably in both NW and CW. In radial walls, cellulose fibril order shows a gradual decrease from NW to severe CW, in line with the increase in CW severity. This indicates that FDLD analysis of cellulose fibril order in radial cell walls is a valuable method for estimation of CW severity.
荧光检测线性二色性(FDLD)显微镜可观察微观样品中的结构有序性及其数值表达,从而能够对不同样品进行定量和定性比较。我们应用FDLD显微镜比较了幼年塞尔维亚云杉树茎横切面上压缩木(CW)和正常木(NW)细胞壁中纤维素微纤丝的分布和排列。我们的数据表明,与NW相比,CW中纤维素微纤丝的有序性降低。NW和CW的径向壁和切向壁均存在显著差异。在径向壁中,纤维素微纤丝的有序性从NW到严重CW呈逐渐下降趋势,这与CW严重程度的增加一致。这表明对径向细胞壁中纤维素微纤丝有序性进行FDLD分析是估计CW严重程度的一种有价值的方法。