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首页> 外文期刊>Journal of Microbiological Methods >Development of a chemically-defined minimal medium for studies on growth and protein uptake of ce:italic>Gemmata obscuriglobus/ce:italic>
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Development of a chemically-defined minimal medium for studies on growth and protein uptake of ce:italic>Gemmata obscuriglobus/ce:italic>

机译:开发化学定义的最小培养基,用于研究生长和蛋白质摄取的研究:斜体> Gemmata Obsoliglobus& / ce:斜体>

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摘要

We experimentally determined minimal media requirements forGemmata obscuriglobus, a Gram-negative Planctomycete bacteria with several unusual physiological features. We find that supplementing media with the usual vitamins solution does not improve viability, but does result in an increased growth rate in liquid cultures and a larger colony size on agar plates. By systematically including individual vitamins, or omitting individual vitamins, from media we find that the addition of only two vitamins, biotin and cyanocobalamin, are sufficient to restore colony growth to comparable rates as other commonly used media. Overall, our findings define minimal media requirements for the culturing of this low-nutrient organism. One ofG. obscuriglobusunusual physiological features is the ability to internalize fully-folded proteins. Using fluorescence microscopy and flow cytometery we show that this physiological behavior is dependent on media state and composition. The percentage of cells exhibiting internalization of GFP when grown on a particular, solid minimal medium is far greater than cells grown in liquid medium of similar composition or other solid media with different compositions.
机译:我们通过实验确定最小的媒体要求Formemmata Obsoliglobus,一种具有若干异常生理特征的革兰阴性平面症细菌。我们发现,用常规维生素溶液的补充介质不会改善活力,但确实导致液体培养物中的生长速度增加和琼脂平板上的含有更大的菌落大小。通过系统地包括个体维生素或省略个体维生素,从培养基中发现只有两个维生素,生物素和氰基胺,足以将菌落生长恢复为与其他常用介质的相当速率。总体而言,我们的研究结果定义了培养这种低营养生物的最小媒体要求。一个OWG。 Obsoliglobusunusual的生理特征是将完全折叠的蛋白质内化的能力。使用荧光显微镜和流式细胞化,我们表明这种生理行为依赖于媒体状态和组成。当在特定的固体最小介质上生长时,表现出GFP内化的细胞的百分比远远大于在与不同组合物的类似组成或其他固体介质的液体培养基中生长的细胞。

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