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首页> 外文期刊>International Biodeterioration & Biodegradation >Aerobic debromination of deca-BDE: Isolation and characterization of an indigenous isolate from a PBDE contaminated sediment
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Aerobic debromination of deca-BDE: Isolation and characterization of an indigenous isolate from a PBDE contaminated sediment

机译:十溴联苯醚的好氧脱溴:从多溴联苯醚污染的沉积物中分离和鉴定本地分离株

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摘要

The environmental safety of decabromodiphenyl ether (deca-BDE) has been the topic of controversial discussions during the recent years. Reductive debromination of deca-BDE in the environment was proved to be a significant source of lower-brominated Polybrominated diphenyl ethers (PBDEs) to the ecosystem. Currently, very little is known about the susceptibility of deca-BDE to aerobic biotransformation. Lysinibacillus fusiformis strain DB-1, an aerobic bacterium capable of debromination of deca-BDE, was isolated from sediments of LianjiangRiver, Guiyu in Guangdong of China. DB-1 can efficiently transform deca-BDE to lower brominated BDEs using carbon sources such as lactate, pyruvate and acetate, respectively. In liquid cultures, free bromide concentration accumulated to 1220 碌g L[super]-1 with 6 mg L[super]-1 of the nominal initial concentration of deca-BDE after 72 h aerobic incubation. The resting cell activity tests showed that debromination of deca-BDE by DB-1 was an aerobic process. This is the first report for biotransformation of deca-BDE by an indigenous bacterium isolated from PBDEs contaminated environment.
机译:近年来,十溴二苯醚(deca-BDE)的环境安全一直是有争议的话题。事实证明,环境中十溴联苯醚的还原脱溴是生态系统中低溴化多溴联苯醚的重要来源。目前,关于十溴联苯醚对好氧生物转化的敏感性了解甚少。从中国广东省贵屿市廉江河沉积物中分离出一种能将十溴联苯醚脱溴的好氧细菌梭状芽孢杆菌DB-1菌株。 DB-1可以分别使用碳源(例如乳酸,丙酮酸和乙酸)将十溴联苯醚有效地转化为溴化程度较低的溴二苯醚。在液体培养物中,有氧培养72小时后,游离溴化物浓度累积到1220μgL ^ -1,而十溴二苯醚的标称初始浓度为6 mg L ^ -1。静息细胞活性测试表明,DB-1对十溴联苯醚的脱溴是一个好氧过程。这是关于从被多溴二苯醚污染的环境中分离出来的本地细菌对十溴联苯醚进行生物转化的第一份报告。

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