Isolation, identification, and screening of biosurfactant-producing and hydrocarbon-degrading bacteria from oil and gas industrial waste

Q1 Immunology and Microbiology Biotechnology Reports Pub Date : 2023-09-01 DOI:10.1016/j.btre.2023.e00804
S. Al-Marri , H.I. Eldos , M.Y. Ashfaq , S. Saeed , S. Skariah , L. Varghese , Y.A. Mohamoud , A.A. Sultan , M.M. Raja
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引用次数: 2

Abstract

Qatar is one of the biggest oil and gas producers in the world, coupled with it is challenging environmental conditions (high average temperature: >40 °C, low annual rainfall: 46.71 mm, and high annual evaporation rate: 2200 mm) harbors diverse microbial communities that are novel and robust, with the potential to biodegrade hydrocarbons. In this study, we collected hydrocarbon contaminated sludge, wastewater and soil samples from oil and gas industries in Qatar. Twenty-six bacterial strains were isolated in the laboratory from these samples using high saline conditions and crude oil as the sole carbon source. A total of 15 different bacterial genera were identified in our study that have not been widely reported in the literature or studied for their usage in the biodegradation of hydrocarbons. Interestingly, some of the bacteria that were identified belonged to the same genus however, demonstrated variable growth rates and biosurfactant production. This indicates the possibility of niche specialization and specific evolution to acquire competitive traits for better survival. The most potent strain EXS14, identified as Marinobacter sp., showed the highest growth rate in the oil-containing medium as well as the highest biosurfactant production. When this strain was further tested for biodegradation of hydrocarbons, the results showed that it was able to degrade 90 to 100% of low and medium molecular weight hydrocarbons and 60 to 80% of high molecular weight (C35 to C50) hydrocarbons. This study offers many promising leads for future studies of microbial species and their application for the treatment of hydrocarbon contaminated wastewater and soil in the region and in other areas with similar environmental conditions.

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石油天然气工业废弃物中产生生物表面活性剂和降解碳氢化合物细菌的分离、鉴定和筛选
卡塔尔是世界上最大的石油和天然气生产国之一,加上其具有挑战性的环境条件(平均气温高:>;40°C,年降雨量低:46.71毫米,年蒸发率高:2200毫米),蕴藏着各种新颖而强大的微生物群落,具有生物降解碳氢化合物的潜力。在这项研究中,我们收集了卡塔尔石油和天然气行业的碳氢化合物污染污泥、废水和土壤样本。在实验室中,使用高盐条件和原油作为唯一的碳源,从这些样品中分离出26种细菌菌株。在我们的研究中,共鉴定了15个不同的细菌属,这些属在文献中没有被广泛报道,也没有被研究用于碳氢化合物的生物降解。有趣的是,一些被鉴定属于同一属的细菌表现出不同的生长速率和生物表面活性剂的产生。这表明了生态位专门化和特定进化的可能性,以获得更好的生存竞争特征。最强菌株EXS14被鉴定为Marinobacter sp.,在含油培养基中表现出最高的生长速率以及最高的生物表面活性剂产量。当进一步测试该菌株对碳氢化合物的生物降解时,结果表明,它能够降解90%至100%的低分子量和中分子量碳氢化合物以及60%至80%的高分子量(C35至C50)碳氢化合物。这项研究为未来微生物物种的研究及其在该地区和其他环境条件相似地区处理碳氢化合物污染的废水和土壤中的应用提供了许多有前景的线索。
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来源期刊
Biotechnology Reports
Biotechnology Reports Immunology and Microbiology-Applied Microbiology and Biotechnology
CiteScore
15.80
自引率
0.00%
发文量
79
审稿时长
55 days
期刊介绍: Biotechnology Reports covers all aspects of Biotechnology particularly those reports that are useful and informative and that will be of value to other researchers in related fields. Biotechnology Reports loves ground breaking science, but will also accept good science that can be of use to the biotechnology community. The journal maintains a high quality peer review where submissions are considered on the basis of scientific validity and technical quality. Acceptable paper types are research articles (short or full communications), methods, mini-reviews, and commentaries in the following areas: Healthcare and pharmaceutical biotechnology Agricultural and food biotechnology Environmental biotechnology Molecular biology, cell and tissue engineering and synthetic biology Industrial biotechnology, biofuels and bioenergy Nanobiotechnology Bioinformatics & systems biology New processes and products in biotechnology, bioprocess engineering.
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