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Swimming Behavior of Selected Species of Archaea

机译:某些古生菌的游泳行为

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The swimming behavior of Bacteria has been studied extensively, at least for some species like Escherichia coli . In contrast, almost no data have been published for Archaea on this topic. In a systematic study we asked how the archaeal model organisms Halobacterium salinarum , Methanococcus voltae , Methanococcus maripaludis , Methanocaldococcus jannaschii , Methanocaldococcus villosus , Pyrococcus furiosus , and Sulfolobus acidocaldarius swim and which swimming behavior they exhibit. The two Euryarchaeota M. jannaschii and M. villosus were found to be, by far, the fastest organisms reported up to now, if speed is measured in bodies per second (bps). Their swimming speeds, at close to 400 and 500 bps, are much higher than the speed of the bacterium E. coli or of a very fast animal, like the cheetah, each with a speed of ca. 20 bps. In addition, we observed that two different swimming modes are used by some Archaea . They either swim very rapidly, in a more or less straight line, or they exhibit a slower kind of zigzag swimming behavior if cells are in close proximity to the surface of the glass capillary used for observation. We argue that such a “relocate-and-seek” behavior enables the organisms to stay in their natural habitat.
机译:至少对于某些物种,例如大肠杆菌,已经对细菌的游泳行为进行了广泛的研究。相比之下,关于该主题的古细菌几乎没有数据发表。在一项系统的研究中,我们询问了古细菌模型盐藻,伏地甲烷球菌,马氏甲烷球菌,詹氏甲烷球菌,绒毛甲烷球菌,激烈热球菌和嗜酸硫磺球菌如何游泳以及它们表现出哪种游泳行为。如果以秒/秒(bps)为单位测量速度,那么迄今为止发现的两个Euryarchaeota M. jannaschii和M. villosus是最快的生物。它们的游泳速度接近400和500 bps,远高于大肠杆菌或非常快速的动物(如猎豹)的速度,每个动物的速度约为。 20个基点此外,我们观察到某些古细菌使用了两种不同的游泳模式。它们要么以非常快的速度(或多或少的直线)游动,要么在细胞靠近用于观察的玻璃毛细管表面时表现出较慢的曲折游动行为。我们认为,这种“迁移和寻求”行为使生物体能够留在其自然栖息地中。

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