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首页> 外文期刊>Biodegradation >Microplate MPN-enumeration of monocyclic- and dicyclic-aromatic hydrocarbon degraders via substrate phase-partitioning
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Microplate MPN-enumeration of monocyclic- and dicyclic-aromatic hydrocarbon degraders via substrate phase-partitioning

机译:单环和双环芳烃降解物的微孔板MPN计数通过底物相分配

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摘要

The high aqueous solubility of monoaromatic and some diaromatic oil components may hinder classical growth-based MPN enumeration of bacterial mono- and di-aromatics degraders because these aromatics are toxic in high concentrations. We developed a microplate MPN method for the enumeration of toluene-, xylene-, naphthalene-, biphenyl- and benzothiophene-degraders on the basis of phase-partitioning of substrate between a biologically inert organic phase and an aqueous mineral salt medium. This way, it was possible to maintain non-toxic, aqueous concentrations in the microplate wells. Depletion of aqueous aromatics by growth of the degraders was prevented by the continuous solubilization of aromatics from the silicone phase. The method was validated by MPN enumerating degrader cultures both with phase-partitioned aromatics and with tryptic soy broth as carbon sources. The applicability of the method was demonstrated by MPN-enumerating mono- and di-aromatic degraders in soils of varying hydrocarbon pre-exposure.
机译:单芳族油和某些二芳族油组分的高水溶性可能会阻碍细菌单芳族和二芳族降解剂的经典基于生长的MPN枚举,因为这些芳族化合物在高浓度下有毒。我们在生物惰性有机相和矿物质水介质之间进行相分离的基础上,开发了一种微板MPN方法,用于枚举甲苯,二甲苯,萘,联苯和苯并噻吩降解剂。这样,可以在微孔板孔中保持无毒的水溶液浓度。通过从硅酮相中连续溶解芳族化合物,防止了降解剂的生长导致水性芳族化合物的消耗。该方法通过MPN枚举使用分相的芳烃和胰蛋白酶大豆肉汤作为碳源的降解培养物进行了验证。该方法的适用性通过MPN枚举不同碳氢化合物预暴露土壤中的单芳烃和二芳烃降解剂得到了证明。

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