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首页> 外文期刊>Applied and Environmental Microbiology >Kinetics and Yields of Pesticide Biodegradation at Low Substrate Concentrations and under Conditions Restricting Assimilable Organic Carbon
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Kinetics and Yields of Pesticide Biodegradation at Low Substrate Concentrations and under Conditions Restricting Assimilable Organic Carbon

机译:低底物浓度和限制可同化有机碳的条件下农药生物降解的动力学和产率

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The fundamentals of growth-linked biodegradation occurring at low substrate concentrations are poorly understood. Substrate utilization kinetics and microbial growth yields are two critically important process parameters that can be influenced by low substrate concentrations. Standard biodegradation tests aimed at measuring these parameters generally ignore the ubiquitous occurrence of assimilable organic carbon (AOC) in experimental systems which can be present at concentrations exceeding the concentration of the target substrate. The occurrence of AOC effectively makes biodegradation assays conducted at low substrate concentrations mixed-substrate assays, which can have profound effects on observed substrate utilization kinetics and microbial growth yields. In this work, we introduce a novel methodology for investigating biodegradation at low concentrations by restricting AOC in our experiments. We modified an existing method designed to measure trace concentrations of AOC in water samples and applied it to systems in which pure bacterial strains were growing on pesticide substrates between 0.01 and 50 mg liter?1. We simultaneously measured substrate concentrations by means of high-performance liquid chromatography with UV detection (HPLC-UV) or mass spectrometry (MS) and cell densities by means of flow cytometry. Our data demonstrate that substrate utilization kinetic parameters estimated from high-concentration experiments can be used to predict substrate utilization at low concentrations under AOC-restricted conditions. Further, restricting AOC in our experiments enabled accurate and direct measurement of microbial growth yields at environmentally relevant concentrations for the first time. These are critical measurements for evaluating the degradation potential of natural or engineered remediation systems. Our work provides novel insights into the kinetics of biodegradation processes and growth yields at low substrate concentrations.
机译:人们对在低底物浓度下发生的与生长相关的生物降解的基本原理知之甚少。底物利用动力学和微生物生长产量是两个至关重要的工艺参数,这些参数可能受底物浓度低的影响。旨在测量这些参数的标准生物降解测试通常会忽略实验系统中普遍存在的可吸收有机碳(AOC),其浓度可能超过目标底物的浓度。 AOC的出现有效地使得在低底物浓度下进行的生物降解测定是混合底物测定,这可能对观察到的底物利用动力学和微生物生长产量产生深远影响。在这项工作中,我们介绍了一种通过限制实验中的AOC来研究低浓度生物降解的新方法。我们修改了设计用于测量水中样品中痕量AOC的现有方法,并将其应用于其中纯细菌菌株在农药底物上生长0.01至50 mg升?1 的系统中。我们同时通过具有UV检测(HPLC-UV)或质谱(MS)的高效液相色谱法测量底物浓度,并通过流式细胞术同时测量细胞密度。我们的数据表明,通过高浓度实验估算的底物利用率动力学参数可用于预测在AOC限制条件下低浓度下的底物利用率。此外,在我们的实验中限制AOC可以首次在环境相关浓度下准确,直接地测量微生物的生长量。这些是评估天然或工程修复系统降解潜力的关键指标。我们的工作为生物降解过程的动力学和低底物浓度下的生长产量提供了新颖的见解。

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