首页> 外文期刊>Journal of Marine Science: Research & Development >Assemblage of Bacterial Saccharic Microfibrils in Sheath Skeleton Formed by Cultured Leptothrix sp. Strain OUMS1
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Assemblage of Bacterial Saccharic Microfibrils in Sheath Skeleton Formed by Cultured Leptothrix sp. Strain OUMS1

机译:培养的 Leptothrix sp。形成的鞘膜骨骼中细菌糖微纤维的组装。应变OUMS1

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Leptothrix spp., a type of Fe- and Mn-oxidizing bacteria, is characterized by the formation of extracellular Fe- or Mn-encrusted microtubular sheaths in aquatic environments. The sheath matrix is known to be a hybrid of bacterial polymers and aquatic metals and minerals. This study describes the initial phase of assemblage of saccharic microfi- brils in the sheath skeleton formed by Leptothrix sp. strain OUMS1 in 1-3 day culture investigated using various light and electron microscopic techniques. The negative staining of OUMS1 cells demonstrated a monotrichous polar flagellum and fibrous materials being secreted from the entire cell surface. Specific staining at light microscopic level revealed that viable bacterial cells were involved in the initial development phase of the immature sheath that con- tained saccharic polymers comprising various sugars. Transmission electron microscopy proved that secretion oc- curred from the entire cell surface to form membrane-unbound globules within 1 day of culture. After being released from the cell surface, these globules assembled to form the immature fibrous sheath layer away from the cell, result- ing in the intervening space between the cell and the layer. It seems likely that secreted globules continuously moved toward the initial immature sheath layer through the intervening space and contributed to thickening of the layer. Alkaline bismuth staining revealed that the globules and the immature sheath materials contain saccharic polymers. By the second day of culture, electron-dense materials containing metals began depositing on fibrous components of the immature sheath layer. Results led us to conclude that the assembly of bacterial saccharic polymers to form the fibrous layer and the subsequent deposition of aquatic metals on the layer constructed the initial frame of the sheath. This new knowledge of the successive steps of sheath development provides deeper insights into the significance of bacterial saccharic polymers in the initial phase of sheath skeleton assembly.
机译:Leptothrix spp。是一种铁和锰氧化细菌,其特征是在水生环境中形成胞外铁或锰包裹的微管鞘。已知鞘基质是细菌聚合物与水生金属和矿物质的混合物。这项研究描述了糖微纤维在Leptothrix sp。形成的鞘骨架中组装的初始阶段。使用各种光学和电子显微镜技术研究1-3天培养物中的OUMS1菌株。 OUMS1细胞的阴性染色表明单线极鞭毛和纤维材料从整个细胞表面分泌。在光学显微镜下的特异性染色显示,活细菌细胞参与了未成熟鞘的初始发育阶段,该鞘含有包含多种糖的糖聚合物。透射电子显微镜证明,在培养的1天之内,分泌物从整个细胞表面发生,形成未结合膜的小球。从细胞表面释放出来后,这些小球组装成远离细胞的未成熟纤维鞘层,从而形成细胞与细胞层之间的中间空间。分泌的小球似乎有可能通过中间空间连续移向最初的未成熟鞘层,并有助于该层的增厚。碱性铋染色表明,小球和未成熟的鞘材料均含有糖聚合物。培养的第二天,含有金属的电子致密材料开始沉积在未成熟鞘层的纤维成分上。结果使我们得出结论,细菌糖性聚合物的组装形成纤维层,随后水生金属在该层上的沉积构成了鞘的初始框架。鞘发展的后续步骤的这一新知识提供了更深入的了解细菌糖聚合物在鞘骨架组装初始阶段的重要性。

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