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Flagella of Pyrococcus furiosus: multifunctional organelles, made for swimming, adhesion to various surfaces, and cell-cell contacts

机译:激烈热球菌鞭毛:多功能细胞器,用于游泳,粘附于各种表面以及细胞间接触

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摘要

Pyrococcus furiosus ("rushing fireball") was named for the ability of this archaeal coccus to rapidly swim at its optimal growth temperature, around 100 degrees C. Early electron microscopic studies identified up to 50 cell surface appendages originating from one pole of the coccus, which have been called flagella. We have analyzed these putative motility organelles and found them to be composed primarily (>95%) of a glycoprotein that is homologous to flagellins from other archaea. Using various electron microscopic techniques, we found that these flagella can aggregate into cable-like structures, forming cell-cell connections between ca. 5% of all cells during stationary growth phase. P. furiosus cells could adhere via their flagella to carbon-coated gold grids used for electron microscopic analyses, to sand grains collected from the original habitat (Porto di Levante, Vulcano, Italy), and to various other surfaces. P. furiosus grew on surfaces in biofilm-like structures, forming microcolonies with cells interconnected by flagella and adhering to the solid supports. Therefore, we concluded that P. furiosus probably uses flagella for swimming but that the cell surface appendages also enable this archaeon to form cable-like cell-cell connections and to adhere to solid surfaces.
机译:激烈热球菌(Pyrococcus furiosus)(“火球”)以这种古菌在最佳生长温度(约100摄氏度)下快速游动的能力而得名。早期的电子显微镜研究发现,多达50个细胞表面附肢起源于球菌的一个极,被称为鞭毛。我们分析了这些推定的运动细胞器,发现它们主要(> 95%)由与其他古细菌鞭毛蛋白同源的糖蛋白组成。使用各种电子显微镜技术,我们发现这些鞭毛可以聚集成电缆状结构,从而在ca之间形成细胞连接。固定生长阶段所有细胞的5%。弯曲假单胞菌细胞可以通过鞭毛附着在碳涂层的金网上,该金网用于电子显微镜分析,从原始栖息地(Porto di Levante,Vulcano,意大利)收集的沙粒以及其他各种表面。激烈假单胞菌生长在生物膜状结构的表面上,形成微菌落,细胞由鞭毛相互连接并粘附在固体支持物上。因此,我们得出的结论是,P。furiosus可能使用鞭毛游泳,但是细胞表面附肢也使这种古细菌能够形成电缆状细胞-细胞连接并粘附在固体表面上。

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