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Intraspecific differences in bacterial responses to modelled reduced gravity

机译:细菌对模拟重力降低的种内差异

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Aims: Bacteria are important residents of water systems, including those of space stations which feature specific environmental conditions, such as lowered effects of gravity. The purpose of this study was to compare responses with modelled reduced gravity of space station, water system bacterial isolates with other isolates of the same species.Methods and Results: Bacterial isolates, Stenotrophomonas paucimobilis and Acinetobacter radioresistens, originally recovered from the water supply aboard the International Space Station (ISS) were grown in nutrient broth under modelled reduced gravity. Their growth was compared with type strains S. paucimobilis ATCC 10829 and A. radioresistens ATCC 49000. Acinetobacter radioresistens ATCC 49000 and the two ISS isolates showed similar growth profiles under modelled reduced gravity compared with normal gravity, whereas S. paucimobilis ATCC 10829 was negatively affected by modelled reduced gravity.Conclusions: These results suggest that microgravity might have selected for bacteria that were able to thrive under this unusual condition. These responses, coupled with impacts of other features (such as radiation resistance and ability to persist under very oligotrophic conditions), may contribute to the success of these water system bacteria.Significance and Impact of the Study: Water quality is a significant factor in many environments including the ISS. Efforts to remove microbial contaminants are likely to be complicated by the features of these bacteria which allow them to persist under the extreme conditions of the systems.
机译:目的:细菌是水系统的重要居民,包括那些具有特定环境条件(如重力降低)的空间站。本研究的目的是比较模拟的空间站重力降低,水系统细菌分离株与相同物种的其他分离株的反应。方法与结果:细菌分离株,嗜盐单核嗜单胞菌和不动杆菌,最初从供水系统的供水中回收。国际空间站(ISS)在模拟重力降低的条件下在营养肉汤中生长。将它们的生长与典型菌株S. paucimobilis ATCC 10829和A. radioresistens ATCC 49000进行了比较。不动杆菌属抗辐射ATCC 49000和两个ISS分离株在模拟重力作用下与正常重力相比具有相似的生长特征,而p。paucimobilis ATCC 10829受负面影响结论:这些结果表明,微重力可能已经选择了能够在这种异常条件下生长的细菌。这些反应,再加上其他特征的影响(例如抗辐射性和在极贫营养条件下的持久能力),可能有助于这些水系统细菌的成功。研究的意义和影响:水质是许多环境中的重要因素。环境,包括国际空间站。这些细菌的特征使去除微生物污染物的努力可能变得复杂,这些特征使它们能够在系统的极端条件下持续存在。

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