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Biochemical and Molecular Characterization of Pyrene and Anthracene Metabolizing Bacteria Isolated from Oil Contaminated Water and Soil in Malaysia

机译:马来西亚受油污染的水和土壤中分离的P和蒽代谢细菌的生化和分子特征

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Poly aromatic hydrocarbon (PAH) contamination of soil and water forces the evolution of microorganisms to be able to utilize PAH as a source of carbon. In this study pyrene and anthracene utilizing bacteria were isolated from water and used engine oil contaminated soil from the Strait of Mallaca (Port Dickson) and mechanic workshops in Kedah and Kuala Lumpur, Malaysia, respectively. The samples were enriched in pyrene oranthracene supplemented BSM medium and isolates were characterized using standard biochemical tests and PCR amplification of the 16S rRNA gene followed by sequencing and bioinformatic analysis. Thirteen different species were isolated, including known PAH degrading bacteria Bacillus thuringiensis and Bacillus megaterium, and bacteria with no prior association with PAH degradation, Salmonella enterica and Bacillus toyonesis. Analysis showed that all isolates degraded 99% of the PAH within seven days. Two isolates (KLA1022 and JIP1005) achieved 95% PAH use within two days and also showed a greater increase in growth. The identification of species that hadn’t previously been reported as PAH degraders suggests significant adaptability and potential for further research that can contribute to efforts to clean pollution from the Malaysian environment.
机译:土壤和水中的多芳烃(PAH)污染迫使微生物进化,从而能够利用PAH作为碳源。在这项研究中,从水中分离了利用pyr和蒽的细菌,并分别从位于马来西亚吉打和吉隆坡的马六甲海峡(波德申港)和机械车间使用了被机油污染的土壤。样品中富含pyr蒽蒽基BSM培养基,并使用标准的生化测试和16S rRNA基因的PCR扩增,然后进行测序和生物信息学分析,对分离株进行了表征。分离出13种不同的物种,包括已知的PAH降解细菌苏云金芽孢杆菌和巨大芽孢杆菌,以及与PAH降解,肠炎沙门氏菌和Toyon芽孢杆菌均无关联的细菌。分析表明,所有分离株在7天内降解了99%的PAH。两种分离株(KLA1022和JIP1005)在两天内达到了95%的PAH使用量,并显示出更大的增长。对以前没有被报道为PAH降解物的物种的鉴定表明,其具有很强的适应性和潜力,可以进行进一步的研究,从而有助于从马来西亚环境中清除污染。

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