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Enhancing methyl parathion degradation by the immobilization of Burkholderia sp. isolated from agricultural soils

机译:通过固定Burkholderia sp。提高甲基对硫磷的降解。从农业土壤中分离

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摘要

Organophosphate pesticides are of great interest for research because they are currently the most commonly used pesticides. In this study, a bacterial strain capable of completely degrading methyl parathion (MP) was isolated from agricultural soils in central Mexico. This strain was designated strain S5‐2 and was identified as Burkholderia cenocepacia. To increase degradation yields, cells were immobilized on three different supports: powdered zeolite and Opuntia sp. and Agave sp. fibers. The results indicated a significant increase in MP hydrolysis and p‐nitrophenol (PNP) degradation with immobilized cells compared to free cell cultures. Furthermore, immobilized cells were capable of withstanding and degrading higher concentrations of PNP compared to cell suspension cultures. The cell viability in the free cell cultures, as well as PNP degradation, was affected at concentrations greater than 25 mg/L. In contrast, cells immobilized on Opuntia sp. and Agave sp. fibers completely degraded PNP at concentrations of 100 mg/L. To verify that MP solution toxicity was decreased by B. cenocepacia strain S5‐2 via pesticide degradation, we measured the acetylcholinesterase activity, both before and after treatment with bacteria. The results demonstrate that the activity of acetylcholinesterase was unaffected after MP degradation by bacteria.
机译:有机磷酸酯农药是当前研究中最常用的农药,因此引起了极大的研究兴趣。在这项研究中,从墨西哥中部的农业土壤中分离出了一种能够完全降解甲基对硫磷(MP)的细菌菌株。该菌株被命名为S5-2菌株,被鉴定为洋葱伯克霍尔德菌。为了提高降解产量,将细胞固定在三种不同的支持物上:粉状沸石和仙人掌菌。和龙舌兰纤维。结果表明,与游离细胞培养相比,固定化细胞的MP水解和对硝基苯酚(PNP)降解显着增加。此外,与细胞悬浮培养相比,固定化细胞能够承受和降解更高浓度的PNP。浓度大于25 mg / L时,游离细胞培养物中的细胞活力以及PNP降解受到影响。相反,细胞固定在仙人掌属物种上。和龙舌兰纤维以100 mg / L的浓度完全降解PNP。为了验证B.cenocepacia菌株S5-2通过农药降解降低了MP溶液的毒性,我们在用细菌处理之前和之后都测量了乙酰胆碱酯酶活性。结果表明,乙酰胆碱酯酶的活性在细菌降解MP后不受影响。

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