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锂离子对副溶血性弧菌生长所需钠离子的特定需求的 sparing 效应 。 注:“sparing”在这里可能是“节省、 sparing effect 可理解为‘节省效应’等,但结合专业内容准确意思需更多背景知识,这里按要求直接翻译。

Sparing effect of lithium ion on the specific requirement for sodium ion for growth of Vibrio parahaemolyticus.

作者信息

Morishita H, Takada H

出版信息

Can J Microbiol. 1976 Sep;22(9):1263-8. doi: 10.1139/m76-187.

Abstract

The role of NaCl in the growth of Vibrio parahaemolyticus strain A-55 was investigated. Maximal growth was obtained at 0.5 M NaCl in a synthetic medium. Na+ could not be replaced for growth by any other cations or substances. When the medium was kept isotonic with 0.5 M NaCl by the addition of sucrose, good growth was obtained with 0.1 M NaCl. By reducing the osmotic pressure and decreasing the NaCl concentration from 0.5 M to 0.1 M, the same growth yield was obtained as when using a medium containing 0.02 M NaCl and 0.08 M LiCl. This was not the case with sucrose. Therefore, it is concluded that ionic strength and osmotic pressure are important environmental factors affecting growth. The minimal essential requirement for Na+ for growth of V. parahaemolyticus was 0.003 M, because this was never replaced with any other cations and agents. Hence, requirement for Na+ for growth involves a specific requirement for Na+, ionic strength, and osmotic pressure, respective concentrations being 0.003 M, 0.047 M, and 0.45 M. Osmotic support was required for growth when the concentration of NaCl was decreased to 0.05 M. The effect of ionic strength of monovalent cations other than Na+ on growth was examined at 0.003 M NaCl. Among LiCl, NH4Cl, KCl, and RbCl, Li+ was the most accelerative for growth in the synthetic medium.

摘要

研究了氯化钠在副溶血性弧菌A-55菌株生长中的作用。在合成培养基中,0.5M氯化钠时可获得最大生长量。生长过程中,钠离子不能被任何其他阳离子或物质替代。当通过添加蔗糖使培养基与0.5M氯化钠保持等渗时,在0.1M氯化钠条件下可实现良好生长。通过降低渗透压并将氯化钠浓度从0.5M降至0.1M,可获得与使用含有0.02M氯化钠和0.08M氯化锂的培养基时相同的生长产量。蔗糖则不然。因此,得出结论,离子强度和渗透压是影响生长的重要环境因素。副溶血性弧菌生长对钠离子的最低基本需求为0.003M,因为从未有任何其他阳离子和试剂能替代它。所以,生长对钠离子的需求涉及对钠离子、离子强度和渗透压的特定需求,各自的浓度分别为0.003M、0.047M和0.45M。当氯化钠浓度降至0.05M时,生长需要渗透支持。在0.003M氯化钠条件下,研究了除钠离子外的单价阳离子的离子强度对生长的影响。在氯化锂、氯化铵、氯化钾和氯化铷中,锂离子对合成培养基中的生长促进作用最大。

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