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Interfacial interaction between methyl parathion-degrading bacteria and minerals is important in biodegradation.

机译:降解甲基对硫磷的细菌与矿物质之间的界面相互作用在生物降解中很重要。

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In the present study, the influence of kaolinite and goethite on microbial degradation of methyl parathion was investigated. We observed that the biodegradation process was improved by kaolinite and depressed by goethite. Calorimetric data further showed that the metabolic activities of degrading cells (Pseudomonas putida) were enhanced by the presence of kaolinite and depressed by the presence of goethite. A semipermeable membrane experiment was performed and results supported the above observations: the promotive effect of kaolinite and the inhibition of goethite for microbial degradation was not found when the bacteria was enclosed by semipermeable membrane and had no direct contact with these minerals, suggesting the important function of the contact of cellular surfaces with mineral particles. The relative larger particles of kaolinite were loosely attached to the bacteria. This attachment made the cells easy to use the sorbed substrate and then stimulated biodegradation. For goethite, small particles were tightly bound to bacterial cells and limited the acquisition of substrate and nutrients, thereby inhibiting biodegradation. These results indicated that interfacial interaction between bacterial cells and minerals significantly affected the biodegradation of pesticides.
机译:在本研究中,研究了高岭石和针铁矿对甲基对硫磷微生物降解的影响。我们观察到高岭石改善了生物降解过程,针铁矿抑制了生物降解过程。量热数据进一步表明,高岭石的存在增强了降解细胞(恶臭假单胞菌)的代谢活性,而针铁矿的存在则降低了其代谢活性。进行了半透膜实验,结果支持了以上观察结果:当细菌被半透膜包裹并且不与这些矿物质直接接触时,没有发现高岭土的促进作用和针铁矿对微生物降解的抑制作用。细胞表面与矿物颗粒的接触相对较大的高岭土颗粒松散地附着在细菌上。这种附着使细胞易于使用被吸附的底物,然后刺激了生物降解。对于针铁矿,小颗粒与细菌细胞紧密结合,限制了底物和养分的获取,从而抑制了生物降解。这些结果表明细菌细胞和矿物质之间的界面相互作用显着影响了农药的生物降解。

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