首页> 外文期刊>Mutation Research: International Journal on Mutagenesis, Chromosome Breakage and Related Subjects >A flow cytometry-optimized assay using an SOS-green fluorescent protein (SOS-GFP) whole-cell biosensor for the detection of genotoxins in complex environments.
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A flow cytometry-optimized assay using an SOS-green fluorescent protein (SOS-GFP) whole-cell biosensor for the detection of genotoxins in complex environments.

机译:使用SOS绿色荧光蛋白(SOS-GFP)全细胞生物传感器的流式细胞仪优化测定法,用于检测复杂环境中的基因毒素。

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Whole-cell biosensors have become popular tools for detection of ecotoxic compounds in environmental samples. We have developed an assay optimized for flow cytometry with detection of genotoxic compounds in mind. The assay features extended pre-incubation and a cell density of only 10(6)-10(7) cells/mL, and proved far more sensitive than a previously published assay using the same biosensor strain. By applying the SOS-green fluorescent protein (GFP) whole-cell biosensor directly to soil microcosms we were also able to evaluate both the applicability and sensitivity of a biosensor based on SOS-induction in whole soil samples. Soil microcosms were spiked with a dilution-series of crude broth extract from the mitomycin C-producing streptomycete Streptomyces caespitosus. Biosensors extracted from these microcosms after 1 day of incubation at 30 degrees C were easily distinguished from extracts of non-contaminated soil particles when using flow cytometry, and induction of the biosensor by mitomycin C was detectable at concentrations as low as 2.5 ng/g of soil.
机译:全细胞生物传感器已成为检测环境样品中生态毒性化合物的流行工具。我们已经开发出一种针对流式细胞仪优化的检测方法,并考虑了遗传毒性化合物的检测。该测定法具有延长的预孵育和仅10(6)-10(7)个细胞/ mL的细胞密度,并且证明比使用相同生物传感器菌株的以前发表的测定法灵敏度更高。通过将SOS绿色荧光蛋白(GFP)全细胞生物传感器直接应用于土壤微观世界,我们还能够基于SOS诱导在整个土壤样品中评估生物传感器的适用性和敏感性。土壤稀释液中掺入了一系列稀释液,这些稀释液来自产丝裂霉素C的链霉菌Streptomyces caespitosus。使用流式细胞仪在30摄氏度下孵育1天后,从这些微观世界提取的生物传感器很容易与未污染的土壤颗粒的提取物区分开来,丝裂霉素C诱导的生物传感器的浓度低至2.5 ng / g。泥。

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