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耐辐射球菌和施氏假单胞菌对内分泌干扰物邻苯二甲酸二丁酯的生物修复。

Bioremediation of endocrine disruptor di-n-butyl phthalate ester by Deinococcus radiodurans and Pseudomonas stutzeri.

机构信息

Department of Civil and Ecological Engineering, I Shou University, Kaohsiung 84001, Taiwan.

出版信息

Chemosphere. 2010 Jan;78(3):342-6. doi: 10.1016/j.chemosphere.2009.10.020. Epub 2009 Dec 2.

Abstract

Di-n-butyl phthalate (DBP) is a group of phthalate esters (PAEs) that are widely used in cosmetics, perfumes, and plasticizers. Due to its high production and application figures, DBP is commonly found in wastewater, sewage sludge, and aquatic environments. It has been classified as suspected endocrine disruptors by most countries. In this study, we isolated two DBP degradable strains from activated sludge. The strains were identified with their 16S rRNA as Deinococcus radiodurans and Pseudomonas stutzeri. We constructed the optimal condition of DBP degradation by using different kinds of incubation factors such as temperature, initial pH, yeast extract and surfactants. The optimal conditions of DBP degradation for these two strains are: 30 degrees C, pH 7.5 and static culture. Besides, addition of 0.23 mM of Triton X-100 could enhance the DBP degradation for D. radiodurans. In the end, we amended these two strains into the origin activated sludge and analyzed the whole microbial community structure of mixed cultures by PCR-DGGE technique. The result showed that only D. radiodurans could survive in the activated sludge after 7d of incubation. Based on this work, we hope that these findings could provide some useful information for applying the bioremediation of DBP in our environment.

摘要

邻苯二甲酸二正丁酯(DBP)是邻苯二甲酸酯(PAEs)的一组,广泛应用于化妆品、香水和增塑剂。由于其高产量和应用率,DBP 通常存在于废水、污水污泥和水生环境中。它已被大多数国家列为疑似内分泌干扰物。在这项研究中,我们从活性污泥中分离出了两种可降解 DBP 的菌株。这些菌株通过 16S rRNA 鉴定为耐辐射球菌和施氏假单胞菌。我们通过使用不同的孵育因素(如温度、初始 pH 值、酵母提取物和表面活性剂)构建了 DBP 降解的最佳条件。这两种菌株的 DBP 降解的最佳条件是:30℃,pH7.5 和静态培养。此外,添加 0.23mM 的 Triton X-100 可以增强耐辐射球菌对 DBP 的降解。最后,我们将这两种菌株添加到原始活性污泥中,并通过 PCR-DGGE 技术分析混合培养物的整个微生物群落结构。结果表明,只有耐辐射球菌在孵育 7d 后才能在活性污泥中存活。基于这项工作,我们希望这些发现能为我们环境中应用 DBP 的生物修复提供一些有用的信息。

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