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褐藻细胞壁酸性多糖的超微结构

Ultrastructure of acidic polysaccharides from the cell walls of brown algae.

作者信息

Andrade Leonardo R, Salgado Leonardo T, Farina Marcos, Pereira Mariana S, Mourão Paulo A S, Amado Filho Gilberto M

机构信息

Laboratório de Biomineralização, Departamento de Histologia e Embriologia, Instituto de Ciências Biomédicas, CCS, Universidade Federal do Rio de Janeiro, Cidade Universitária, Rio de Janeiro, RJ 21941-590, Brazil.

出版信息

J Struct Biol. 2004 Mar;145(3):216-25. doi: 10.1016/j.jsb.2003.11.011.

Abstract

We have studied the ultrastructure of acidic polysaccharides from the cell walls of brown algae using a variety of electron microscopy techniques. Polysaccharides from Padina gymnospora present self assembled structures, forming trabecular patterns. Purified fractions constituted by alginic acid and sulfated fucan also form well-organized ultrastructures, but the pattern of organization varies depending on the polysaccharide species. Alginic acid presents sponge-like structures. Sulfated fucan exhibits particles with polygonal forms with a polycrystalline structure. These particles are in fact constituted by sulfated fucan molecules since they are recognized by a lectin specific for alpha-l-fucosyl residues. X-ray microanalysis reveal that S is a constituent element, as expected for sulfated groups. Finally, an exhaustive purified sulfated fucan shows the same ultrastructure formed by polygonal forms. Furthermore, elemental analyses of acidic polysaccharides indicate that they retain Zn, when algae were collected from a contaminated area. This observation is supported by direct quantification of heavy metal in the biomass and also in the solubilized polysaccharides compared with the algae from a non-contaminated site. We conclude that these molecules have specific ultrastructure and elemental composition; and act as metal binder for the nucleation and precipitation of heavy metals when the algae are exposed to a metal contaminated environment.

摘要

我们使用多种电子显微镜技术研究了褐藻细胞壁酸性多糖的超微结构。裸叶藻属的多糖呈现出自组装结构,形成小梁状图案。由海藻酸和硫酸化岩藻聚糖构成的纯化组分也形成了组织良好的超微结构,但组织结构模式因多糖种类而异。海藻酸呈现出海绵状结构。硫酸化岩藻聚糖表现出具有多晶结构的多边形颗粒。这些颗粒实际上由硫酸化岩藻聚糖分子构成,因为它们能被一种对α-L-岩藻糖基残基具有特异性的凝集素识别。X射线微分析表明,正如硫酸化基团所预期的那样,硫是一种组成元素。最后,一种经过彻底纯化的硫酸化岩藻聚糖呈现出由多边形构成的相同超微结构。此外,酸性多糖的元素分析表明,当从污染区域采集藻类时,它们会保留锌。与来自未受污染地点的藻类相比,对生物量以及溶解的多糖中重金属的直接定量分析支持了这一观察结果。我们得出结论,这些分子具有特定的超微结构和元素组成;并且当藻类暴露于金属污染环境时,它们作为金属结合剂参与重金属的成核和沉淀。

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