首页> 外文期刊>Applied Microbiology and Biotechnology >Biodegradation of fenvalerate and 3-phenoxybenzoic acid by a novel Stenotrophomonas sp. strain ZS-S-01 and its use in bioremediation of contaminated soils
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Biodegradation of fenvalerate and 3-phenoxybenzoic acid by a novel Stenotrophomonas sp. strain ZS-S-01 and its use in bioremediation of contaminated soils

机译:新型嗜麦芽单胞菌属物种对氰戊酸酯和3-苯氧基苯甲酸的生物降解。 ZS-S-01菌株及其在污染土壤的生物修复中的应用

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摘要

A bacterial strain ZS-S-01, newly isolated from activated sludge, could effectively degrade fenvalerate and its hydrolysis product 3-phenoxybenzoic acid (3-PBA). Based on the morphology, physiological biochemical characteristics, and 16 S rDNA sequence, strain ZS-S-01 was identified as Stenotrophomonas sp. Strain ZS-S-01 could also degrade and utilize deltamethrin, beta-cypermethrin, beta-cyfluthrin, and cyhalothrin as substrates for growth. Strain ZS-S-01 was capable of degrading fenvalerate rapidly without a lag phase over a wide range of pH and temperature, even in the presence of other carbon sources, and metabolized it to yield 3-PBA, then completely degraded it. No persistent accumulative product was detected by HPLC and GC/MS analysis. Studies on biodegradation in various soils showed that strain ZS-S-01 demonstrated efficient degradation of fenvalerate and 3-PBA (both 50 mg?kg~(-1)) with a rate constant of 0.1418-0.3073 d~(-1), and half-lives ranged from 2.3 to 4.9 days. Compared with the controls, the half-lives for fenvalerate and 3-PBA reduced by 16.9-156.3 days. These results highlight strain ZS-S-01 may have potential for use in bioremediation of pyrethroid-contaminated environment.
机译:从活性污泥中新分离出的细菌菌株ZS-S-01可有效降解氰戊菊酯及其水解产物3-苯氧基苯甲酸(3-PBA)。基于形态学,生理生化特性和16 S rDNA序列,菌株ZS-S-01被鉴定为Stenotrophomonas sp。 ZS-S-01菌株也可以降解并利用溴氰菊酯,β-氯氰菊酯,β-氟氰菊酯和氯氟氰菊酯作为生长底物。 ZS-S-01菌株即使在存在其他碳源的情况下,也能在很宽的pH和温度范围内迅速降解氰戊菊酯,而没有滞后相,并使其代谢生成3-PBA,然后将其完全降解。通过HPLC和GC / MS分析未检测到持久的累积产物。在各种土壤中进行的生物降解研究表明,菌株ZS-S-01可以有效地降解氰戊菊酯和3-PBA(均为50 mg?kg〜(-1)),速率常数为0.1418-0.3073 d〜(-1),半衰期从2.3天到4.9天不等。与对照组相比,氰戊菊酯和3-PBA的半衰期减少了16.9-156.3天。这些结果表明,菌株ZS-S-01可能具有潜在的生物修复受拟除虫菊酯污染的环境的潜力。

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