Radotić K, Djikanović D, Bogdanović J, Vasiljević-Radović D
Department of Biophysics, Institute for Multidisciplinary Research, Bulevar Despota Stefana 142, 11000 Beograd, Serbia.
J Microsc. 2008 Dec;232(3):508-10. doi: 10.1111/j.1365-2818.2008.02149.x.
We used an atomic force microscope to image cell wall isolated from needles of Serbian spruce tree and that synthesized from cell wall components. We also observed the structure of lignin model polymer (DHP), as a best substitute for the natural lignin. A tendency of aggregate formation was observed in all samples. Cell wall was revealed as a laminated fibrous structure. General organization is similar in both isolated and synthesized cell wall samples, with dominating globular motifs arranged regularly as rods and forming cavities. The synthesized cell wall has a more regular structural organization than isolated cell wall. The dimensions of individual globular aggregates and pores differed between the two samples. DHP showed a similar, regular organization, with globular aggregates and holes. Globules and pores are smaller in size than the corresponding structures in both the isolated and synthesized cell walls. Such modular organization of cell walls may have a physiological role in response to the external mechanical stress caused to plant cells.
我们使用原子力显微镜对从塞尔维亚云杉针叶中分离出的细胞壁以及由细胞壁成分合成的细胞壁进行成像。我们还观察了木质素模型聚合物(DHP)的结构,它是天然木质素的最佳替代物。在所有样品中均观察到聚集体形成的趋势。细胞壁呈现为层状纤维结构。分离的和合成的细胞壁样品中的总体组织结构相似,主要的球状基序规则地排列成棒状并形成空洞。合成细胞壁的结构组织比分离细胞壁更规则。两个样品中单个球状聚集体和孔隙的尺寸不同。DHP呈现出类似的规则组织,有球状聚集体和孔洞。球状体和孔隙的尺寸比分离的和合成的细胞壁中的相应结构更小。细胞壁的这种模块化组织可能在响应施加于植物细胞的外部机械应力方面具有生理作用。