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A Rapid and High Throughput MIC Determination Method to Screen Uranium Resistant Microorganisms

机译:快速高通量MIC测定方法筛选抗铀微生物

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摘要

The assessment of minimum inhibitory concentration (MIC) is a conventional technique used for the screening of microbial resistance against antibiotics, biocides, and contaminants such as heavy metals. However, as part of our ongoing work, we have observed biases associated with using traditional liquid MIC method to screen microbial heavy metal resistance, including both bacterial and fungal strains. Specifically, the addition of uranium into synthetic media causes immediate precipitation prior to the initiation of microbial growth, thus hampering the optical density measurements, and the obtained MIC values are thus flawed and inaccurate. To address this discrepancy, we report the optimization and development of a serial-dilution-based MIC method conducted on solid growth media supplemented with uranium, which is more accurate, relative to the testing of MICs performed in liquid cultures. Notably, we report on the efficacy of this method to screen not only bacteria that are resistant to uranium but also demonstrate the successful application to yeast and fungal isolates, for their ability to resist uranium, is more accurate and sensitive relative to the liquid method. We believe that this newly developed method to screen heavy metal resistance, such as uranium, is far superior to the existing liquid MIC method and propose replacing the liquid assay with the solid plate MIC reported herein.
机译:最低抑菌浓度(MIC)的评估是用于筛选微生物对抗生素,杀生物剂和污染物(例如重金属)的抗药性的常规技术。但是,作为我们正在进行的工作的一部分,我们已经观察到与使用传统液体MIC方法筛查微生物重金属抗性(包括细菌和真菌菌株)相关的偏差。具体而言,将铀添加到合成介质中会导致微生物开始生长之前立即沉淀,从而妨碍了光密度测量,因此获得的MIC值有缺陷且不准确。为了解决这一差异,我们报告了在基于铀的固体生长培养基上进行基于系列稀释的MIC方法的优化和开发,相对于在液体培养物中进行的MIC测试,该方法更为准确。值得注意的是,我们报道了这种方法不仅可以筛选出对铀具有抗性的细菌,而且还证明了其相对于液体方法更准确,更灵敏,因此可以成功应用于酵母和真菌分离株,因为它们具有抗铀的能力。我们相信,这种用于筛选重金属抗性(例如铀)的新开发方法远远优于现有的液体MIC方法,并建议用本文报道的固体平板MIC代替液体测定法。

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