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苏云金芽孢杆菌 ZH-3 和金黄色葡萄球菌 HP-S-01 共培养物对氯氰菊酯的降解增强作用。

Enhancement of cypermethrin degradation by a coculture of Bacillus cereus ZH-3 and Streptomyces aureus HP-S-01.

机构信息

Key Laboratory of Pesticide and Chemical Biology, Ministry of Education, Laboratory of Insect Toxicology, South China Agricultural University, Guangzhou 510642, PR China.

出版信息

Bioresour Technol. 2012 Apr;110:97-104. doi: 10.1016/j.biortech.2012.01.106. Epub 2012 Jan 28.

Abstract

Degradation of cypermethrin was significantly enhanced in a coculture of Bacillus cereus ZH-3 and Streptomyces aureus HP-S-01. In the pure culture, longer half-lives (t(1/2)=32.6-43.0h) of cypermethrin were observed, as compared to the mixed cocultures (t(1/2)=13.0h). The optimal degradation conditions were determined to be 28.2°C and pH 7.5 based on response surface methodology (RSM). Under these conditions, the mixed cultures completely metabolized cypermethrin (50mgL(-1)) within 72h. Analysis of degradation products of cypermethrin indicated that the microbial consortium converted cypermethrin to α-hydroxy-3-phenoxy-benzeneacetonitrile, 3-phenoxybenzaldehyde and 4-phenoxyphenyl-2,2-dimethyl-propiophenone, and subsequently transformed these compounds with a maximum specific degradation rate (q(max)), half-saturation constant (K(s)) and inhibition constant (K(i)) of 0.1051h(-1), 31.2289mgL(-1) and 220.5752mgL(-1), respectively. This is the first report of a proposed pathway of degradation of cypermethrin by hydrolysis of ester linkage and oxidization of 3-phenoxybenzyl in a coculture. Finally, this coculture is the first described mixed microbial consortium capable of metabolizing cypermethrin.

摘要

在蜡状芽孢杆菌 ZH-3 和金黄色葡萄球菌 HP-S-01 的共培养物中,氯氰菊酯的降解得到了显著增强。在纯培养物中,氯氰菊酯的半衰期(t(1/2)=32.6-43.0h)比混合共培养物(t(1/2)=13.0h)长。基于响应面法(RSM)确定最佳降解条件为 28.2°C 和 pH 7.5。在这些条件下,混合培养物在 72 小时内完全代谢了氯氰菊酯(50mgL(-1))。氯氰菊酯降解产物分析表明,微生物联合体将氯氰菊酯转化为α-羟基-3-苯氧基苯乙腈、3-苯氧基苯甲醛和 4-苯氧苯基-2,2-二甲基-丙苯酮,然后将这些化合物转化为最大比降解速率(q(max))、半饱和常数(K(s))和抑制常数(K(i))分别为 0.1051h(-1)、31.2289mgL(-1)和 220.5752mgL(-1)。这是首次报道在共培养物中通过酯键水解和 3-苯氧基苄基氧化来降解氯氰菊酯的提出途径。最后,该共培养物是第一个描述的能够代谢氯氰菊酯的混合微生物联合体。

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