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H-Aquil:一种用于弧菌和其他海洋异养细菌痕量金属研究的化学成分确定的细胞培养基。

H-Aquil: a chemically defined cell culture medium for trace metal studies in Vibrios and other marine heterotrophic bacteria.

机构信息

Department of Geosciences, Princeton University, Princeton, NJ, 08544, USA.

Department of Marine Chemistry and Geochemistry, Woods Hole Oceanographic Institution, Woods Hole, MA, 02543, USA.

出版信息

Biometals. 2019 Dec;32(6):819-828. doi: 10.1007/s10534-019-00215-2. Epub 2019 Sep 21.

Abstract

A variety of trace metals, including prominently iron (Fe) are necessary for marine microorganisms. Chemically defined medium recipes have been used for several decades to study phytoplankton, but similar methods have not been adopted as widely in studies of marine heterotrophic bacteria. Medium recipes for these organisms frequently include tryptone, casamino acids, as well as yeast and animal extracts. These components introduce unknown concentrations of trace elements and organic compounds, complicating metal speciation. Minimal medium recipes utilizing known carbon and nitrogen sources do exist but often have high background trace metal concentrations. Here we present H-Aquil, a version of the phytoplankton medium Aquil adapted for marine heterotrophic bacteria. This medium consists of artificial seawater supplemented with a carbon source, phosphate, amino acids, and vitamins. As in Aquil, trace metals are controlled using the synthetic chelator EDTA. We also address concerns of EDTA toxicity, showing that concentrations up to 100 µM EDTA do not lead to growth defects in the copiotrophic bacterium Vibrio harveyi or the oligotrophic bacterium Candidatus Pelagibacter ubique HTCC1062, a member of the SAR11 clade. H-Aquil is used successfully to culture species of Vibrio, Phaeobacter, and Silicibacter, as well as several environmental isolates. We report a substantial decrease in growth rate between cultures grown with or without added Fe, making the medium suitable for conducting Fe-limitation studies in a variety of marine heterotrophic bacteria.

摘要

多种痕量金属,包括铁(Fe),是海洋微生物所必需的。几十年来,化学定义的培养基配方一直被用于研究浮游植物,但类似的方法在海洋异养细菌的研究中并没有被广泛采用。这些生物体的培养基配方经常包括蛋白胨、氨基酸,以及酵母和动物提取物。这些成分引入了未知浓度的痕量元素和有机化合物,使金属形态复杂化。虽然存在利用已知碳源和氮源的最小培养基配方,但它们通常具有较高的背景痕量金属浓度。在这里,我们介绍了 H-Aquil,这是一种经过改良的适用于海洋异养细菌的浮游植物培养基 Aquil。这种培养基由人工海水补充碳源、磷酸盐、氨基酸和维生素组成。与 Aquil 一样,痕量金属是通过使用合成螯合剂 EDTA 来控制的。我们还解决了 EDTA 毒性的问题,表明高达 100µM EDTA 的浓度不会导致富营养细菌 Vibrio harveyi 或贫营养细菌 Candidatus Pelagibacter ubique HTCC1062(SAR11 类群的一个成员)出现生长缺陷。H-Aquil 成功地用于培养 Vibrio、Phaeobacter 和 Silicibacter 等物种,以及一些环境分离株。我们报告了在有无添加 Fe 的情况下培养物生长率的显著下降,这使得该培养基适合在各种海洋异养细菌中进行 Fe 限制研究。

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