Terauchi Makoto, Nagasato Chikako, Inoue Akira, Ito Toshiaki, Motomura Taizo
Graduate School of Environmental Science, Hokkaido University, Sapporo, 060-0810, Japan.
Research Center for Inland Seas, Kobe University, Kobe, 657-8501, Japan.
Planta. 2016 Aug;244(2):361-77. doi: 10.1007/s00425-016-2516-4. Epub 2016 Apr 12.
This work investigated a correlation between the three-dimensional architecture and compound-components of the brown algal cell wall. Calcium greatly contributes to the cell wall integrity. Brown algae have a unique cell wall consisting of alginate, cellulose, and sulfated polysaccharides. However, the relationship between the architecture and the composition of the cell wall is poorly understood. Here, we investigated the architecture of the cell wall and the effect of extracellular calcium in the sporophyte and gametophyte of the model brown alga, Ectocarpus siliculosus (Dillwyn) Lyngbye, using transmission electron microscopy, histochemical, and immunohistochemical studies. The lateral cell wall of vegetative cells of the sporophyte thalli had multilayered architecture containing electron-dense and negatively stained fibrils. Electron tomographic analysis showed that the amount of the electron-dense fibrils and the junctions was different between inner and outer layers, and between the perpendicular and tangential directions of the cell wall. By immersing the gametophyte thalli in the low-calcium (one-eighth of the normal concentration) artificial seawater medium, the fibrous layers of the lateral cell wall of vegetative cells became swollen. Destruction of cell wall integrity was also induced by the addition of sorbitol. The results demonstrated that electron-dense fibrils were composed of alginate-calcium fibrous gels, and electron negatively stained fibrils were crystalline cellulose microfibrils. It was concluded that the spatial arrangement of electron-dense fibrils was different between the layers and between the directions of the cell wall, and calcium was necessary for maintaining the fibrous layers in the cell wall. This study provides insights into the design principle of the brown algal cell wall.
本研究调查了褐藻细胞壁的三维结构与复合成分之间的相关性。钙对细胞壁的完整性有很大贡献。褐藻具有由藻酸盐、纤维素和硫酸化多糖组成的独特细胞壁。然而,细胞壁结构与组成之间的关系尚不清楚。在这里,我们使用透射电子显微镜、组织化学和免疫组织化学研究,研究了模式褐藻——硅藻(Ectocarpus siliculosus (Dillwyn) Lyngbye)的孢子体和配子体中细胞壁的结构以及细胞外钙的作用。孢子体藻体营养细胞的侧细胞壁具有多层结构,包含电子致密且负染色的纤维。电子断层扫描分析表明,电子致密纤维的数量和连接在细胞壁的内层和外层之间以及垂直方向和切向方向之间存在差异。通过将配子体藻体浸入低钙(正常浓度的八分之一)人工海水培养基中,营养细胞侧细胞壁的纤维层会肿胀。添加山梨醇也会诱导细胞壁完整性的破坏。结果表明,电子致密纤维由藻酸盐 - 钙纤维凝胶组成,电子负染色纤维是结晶纤维素微纤维。得出的结论是,电子致密纤维在细胞壁的各层之间以及不同方向上的空间排列不同,并且钙对于维持细胞壁中的纤维层是必需的。这项研究为褐藻细胞壁的设计原理提供了见解。