首页> 外文期刊>Journal of applied microbiology >Degradation of fluoranthene by Pasteurella sp IFA and Mycobacterium spPYR-1: isolation and identification of metabolites
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Degradation of fluoranthene by Pasteurella sp IFA and Mycobacterium spPYR-1: isolation and identification of metabolites

机译:巴斯德氏菌IFA和分枝杆菌spPYR-1对荧蒽的降解:代谢产物的分离和鉴定

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The findings from a biodegradability study of fluoranthene using two pure bacterial strains, Pasteurella sp. IFA (B-2) and Mycobacterium sp. PYR-1 (AM) are reported. Of total fluoranthene, 24% (B-2) and 46% (AM) was biodegraded in an aqueous medium during 14 d of incubation at room temperature. During this period the bacteria were capable of mineralizing approximately two-thirds (B-2) and four-fifths (AM) of biodegraded fluoranthene to CO2, while one-third (B-2) and one-fifth (AM) of the original fluoranthene remained as stable metabolic products. These metabolites were isolated using liquid-liquid extraction and identified using gas chromatography-mass spectrometry (GC-MS) and derivatization techniques. Two metabolites (9-fluorenone-1-carboxylic acid and 9-fluorenone) were identified by GC-MS directly, while the metabolites 9-fluorenone-1-carboxylic acid, 9-hydroxyfluorene, 9-hydroxy-1-fluorene-carboxylic acid, 2-carboxybenzaldehyde, benzoic acid and phenylacetic acid were determined in their derivatized forms. From the identified metabolites, a fluoranthene biodegradation pathway was proposed for Pasteurella sp. IFA.
机译:使用两种纯细菌菌株巴斯德氏菌(Pasteurella sp。)对荧蒽进行生物降解性研究的结果。 IFA(B-2)和分枝杆菌报告了PYR-1(AM)。在室温下孵育14天期间,在水性介质中,总荧蒽中有24%(B-2)和46%(AM)被生物降解。在此期间,细菌能够矿化约三分之二(B-2)和五分之四(AM)的生物降解的荧蒽生成二氧化碳,而原始细菌的三分之一(B-2)和五分之一(AM)荧蒽仍然是稳定的代谢产物。使用液-液萃取分离这些代谢物,并使用气相色谱-质谱(GC-MS)和衍生化技术进行鉴定。通过GC-MS直接鉴定了两种代谢物(9-芴酮-1-羧酸和9-芴酮),而代谢物9-芴酮-1-羧酸,9-羟基芴,9-羟基-1-芴羧酸,以衍生形式确定了2-羧基苯甲醛,苯甲酸和苯乙酸。从鉴定出的代谢产物中,提出了巴斯德氏菌的荧蒽生物降解途径。如果一个。

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