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Growth of Non-Halophilic Bacteria in the Sodium-Magnesium-Sulfate-Chloride Ion System: Unravelling the Complexities of Ion Interactions in Terrestrial and Extraterrestrial Aqueous Environments

机译:硫酸钠 - 硫酸钠 - 氯离子系统中非嗜嗜酸性细菌的生长:解开陆地和外星水环境中离子相互作用的复杂性

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摘要

Motivated by an interest in understanding the habitability of aqueous environments on Earth and in extraterrestrial settings, this study investigated the influence of ions in an artificial sodium-magnesium-sulfate-chloride ion system on the growth parameters (lag phase, growth rate, and final cell concentration) of bacteria. These four ions, in different combinations, are key components of many aqueous environments on Earth and elsewhere. We investigated non-halophilic bacteria deliberately to remove the bias of prior adaptations to high concentrations of selected ions so that we could compare the effects of different ions. We tested the hypothesis that water activity determined the growth parameters independent of the ion types. Neither water activity or ionic strength alone could predict growth. However, when ionic strengths were matched, many differences in growth parameters could be explained by the water activity. We suggest that species-specific effects (caused by differences in biochemical and physiological influences), the role of individual ions in cellular processes, and potentially the chaotropicity and kosmotropicity of solutions influenced the growth. Our data show that although extreme combinations of these ions allow for general predictions on the habitability of extraterrestrial aqueous environments, a complex interplay of ionic effects influences the growth and thus the adaptations required for given ion combinations. The data also show that an accurate quantification of the habitability of ocean worlds, such as Europa and Enceladus, can only be made when samples are obtained from these water bodies and the ion combinations are determined.
机译:令人兴趣地理解地球和外星环境中的水环境的居住性,本研究研究了离子对人工钠 - 硫酸钠 - 氯离子系统对生长参数的影响(滞后阶段,生长速度和最终的影响细胞浓度)细菌。这四个离子以不同的组合是地球和其他地方的许多水环境的关键组成部分。我们调查了非嗜嗜盐细菌,以消除以前适应的偏差,以高浓度的选定离子,以便比较不同离子的影响。我们测试了水性活性确定了独立于离子类型的生长参数的假设。单独的水活动或离子强度都无法预测生长。然而,当离子强度匹配时,可以通过水活动来解释许多生长参数的差异。我们建议物种特异性效果(由生物化学和生理影响差异),单个离子在细胞过程中的作用,以及潜在的溶液的畸形和脑病性影响了生长。我们的数据表明,尽管这些离子的极端组合允许对外星物质环境的居住性进行一般预测,但是离子效应的复杂相互作用影响了生长,从而影响给定离子组合所需的适应性。数据还表明,只有在从这些水体获得样品的情况下,只能在从这些水体获得样品并且确定离子组合时,精确地量化了海洋世界的居住性,例如欧罗巴和烯库。

著录项

  • 来源
    《Astrobiology》 |2020年第8期|944-955|共12页
  • 作者单位

    Univ Edinburgh Sch Phys & Astron UK Ctr Astrobiol Edinburgh Midlothian Scotland;

    Univ Edinburgh Sch Phys & Astron UK Ctr Astrobiol Edinburgh Midlothian Scotland;

    Univ Edinburgh Sch Phys & Astron UK Ctr Astrobiol Edinburgh Midlothian Scotland;

    Univ Edinburgh Sch Phys & Astron UK Ctr Astrobiol Edinburgh Midlothian Scotland;

    Univ Edinburgh Sch Phys & Astron UK Ctr Astrobiol Edinburgh Midlothian Scotland;

    Univ Edinburgh Sch Phys & Astron UK Ctr Astrobiol Edinburgh Midlothian Scotland;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Icy moons; Ion interactions; Water activity; Ionic strength;

    机译:冰冷的月亮;离子相互作用;水活动;离子强度;
  • 入库时间 2022-08-18 21:47:46

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