首页> 外文期刊>Applied and Environmental Microbiology >Solid-Phase Contact Assay That Uses a lux-Marked Nitrosomonas europaea Reporter Strain To Estimate Toxicity of Bioavailable Linear Alkylbenzene Sulfonate in Soil
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Solid-Phase Contact Assay That Uses a lux-Marked Nitrosomonas europaea Reporter Strain To Estimate Toxicity of Bioavailable Linear Alkylbenzene Sulfonate in Soil

机译:固相接触测定,使用lux标记的欧洲硝化单胞菌记者菌株估计土壤中生物可利用的线性烷基苯磺酸盐的毒性

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Information about in situ toxicity of the bioavailable pools of adsorptive soil pollutants is a prerequisite for proper ecological risk assessment in contaminated soils. Such toxicity data may be obtained by assays allowing for direct exposure of introduced test microorganisms to the toxicants, as they appear in solid solution equilibria in the natural soil. We describe a novel sensitive solid-phase contact assay for in situ toxicity testing of soil pollutants based on a recombinant bioluminescent reporter strain of Nitrosomonas europaea. A slurry of the reporter strain and soil sample was shaken for 1 h, after which bioluminescence was measured either directly (soil slurry protocol) or in the supernatant obtained after centrifugation (soil extract protocol). The assay was validated for both protocols by using linear alkylbenzene sulfonate (LAS) as a toxic and adsorptive model compound in the soil samples. Interestingly, LAS showed the same toxicity to the reporter strain with either soil incubation (both protocols) or pure culture, suggesting that adsorbed LAS pools contributed to the observed toxicity. The solid-phase contact assay that used the reporter strain of lux-marked N. europaea was slightly more sensitive for the detection of LAS toxicity in soil than activity-based assays targeting indigenous nitrifiers and much more sensitive than assays targeting indigenous heterotrophic microbes. We conclude that the new solid-phase contact assay, which is based on direct interaction of the test microorganisms with bioavailable pools of the toxicants in soil, provides a most sensitive and relevant method for evaluating the in situ toxicity and assessing the risks of soil contaminants.
机译:关于吸附性土壤污染物的生物利用度库的原位毒性信息,是对受污染土壤进行适当生态风险评估的前提。这样的毒性数据可以通过允许引入的测试微生物直接暴露于有毒物质的试验来获得,因为它们出现在天然土壤的固溶体平衡中。我们描述了一种新的灵敏的固相接触测定法,用于对欧洲污染物亚硝化单胞菌的重组生物发光报告菌株进行土壤污染物的原位毒性测试。将报告菌株和土壤样品的浆液振摇1 h,然后直接测量生物发光(土壤浆液规程)或离心后获得的上清液(土壤提取液规程)。通过使用线性烷基苯磺酸盐(LAS)作为土壤样品中的有毒和吸附性模型化合物,对该方法进行了两种方法的验证。有趣的是,在土壤培养(两种方案)或纯培养物中,LAS对报告菌株都显示出相同的毒性,这表明吸附的LAS池有助于观察到的毒性。固相接触测定法使用勒克斯标记的欧洲猪笼草的报告株,对土壤中LAS毒性的检测比针对基于本地化硝化酶的基于活性的测定法灵敏,并且比针对本地异养微生物的测定法灵敏得多。我们得出结论,基于测试微生物与土壤中毒物的生物利用度的直接相互作用的新固相接触测定法,提供了一种最灵敏,最相关的方法,用于评估原位毒性和评估土壤污染物的风险。

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