New PCBs-degrading and hexavalent chromium-resistant bacteria isolated from Lake Mariout, Egypt

IF 2.2 Q1 MARINE & FRESHWATER BIOLOGY Egyptian Journal of Aquatic Research Pub Date : 2023-12-01 DOI:10.1016/j.ejar.2023.08.010
Amr Ibrahim , Ahmed El-Shazly , A.R. Mostafa , Ahmed Abdel-Mawgood
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Abstract

Polychlorinated biphenyls (PCBs) are persistent organic pollutants. They were widely used and distributed in the environment causing endocrine disruption, carcinogenicity, and immunotoxicity. The toxic heavy metal, Hexavalent chromium Cr(VI), co-exists with PCBs leading to ecological deterioration and health problems. Thus, bioremediation of the coexisting PCBs and Cr(VI) is essential for the environment and public health. In this study, three bacterial strains identified as Bacillus safensis, Bacillus cereus, and Bacillus vietnamenesis, were isolated. As revealed, various strains belonging to the genus Bacillus degraded PCBs. However, this study can be considered the first report on isolated strains as PCB-degraders that resist Cr(VI) as co-contaminants. All strains had the biphenyl dioxygenase (bphA) gene and grew on PCBs as the sole carbon and energy source and completely remediated 5 mg/l Cr(VI) individually within 24 h. The three isolates showed different response mechanisms to Cr(VI) that enabled Bacillus safensis and Bacillus cereus to grow on PCBs and Cr(VI) as co-contaminants. Bacillus vietnamensis recorded the highest growth on PCBs, but could not grow on PCBs with Cr(VI). Therefore, Bacillus safensis and Bacillus cereus are concluded to be good candidates for bioremediation of PCBs and Cr(VI) as co-contaminants, while Bacillus vietnamensis is more suitable for bioremediation of either PCBs or Cr(VI) individually.

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从埃及马里奥特湖分离出新的多氯联苯降解细菌和耐六价铬细菌
多氯联苯(PCBs)是一种持久性有机污染物。它们在环境中广泛使用和分布,导致内分泌紊乱、致癌和免疫毒性。有毒重金属六价铬与多氯联苯共存,导致生态恶化和健康问题。因此,对同时存在的多氯联苯和六价铬进行生物修复对环境和公众健康至关重要。本研究分离了三种细菌菌株,分别为枯草芽孢杆菌(Bacillus safensis)、蜡样芽孢杆菌(Bacillus cereus)和越南芽孢杆菌(Bacillus vietnamenesis)。结果显示,属于芽孢杆菌属的各种菌株都能降解多氯联苯。不过,本研究可被视为首次报道分离出的菌株可降解多氯联苯,并可抵御作为共污染物的六(六)铬。所有菌株都有联苯二氧 化酶(bphA)基因,以多氯联苯为唯一碳源和能量源,并在 24 小时内完全降解 5 毫克/升的六价铬。越南芽孢杆菌在多氯联苯上的生长率最高,但不能在含有六价铬的多氯联苯上生长。因此,Bacillus safensis 和 Bacillus cereus 被认为是对多氯联苯和六价铬这两种污染物进行生物修复的理想选择,而 Bacillus vietnamensis 则更适合单独对多氯联苯或六价铬进行生物修复。
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来源期刊
Egyptian Journal of Aquatic Research
Egyptian Journal of Aquatic Research MARINE & FRESHWATER BIOLOGY-
CiteScore
6.80
自引率
5.70%
发文量
63
审稿时长
39 days
期刊介绍: The Egyptian Journal of Aquatic Research is published by the National Institute of Oceanography & Fisheries. The Journal isdevoted to the publication of original papers and reviews in all branches of aquatic sciences (Oceanography, Limnology, Fisheries,Aquaculture and environmental sciences)
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