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首页> 外文期刊>International Biodeterioration & Biodegradation >Amycolatopsis sp Poz14 isolated from oil-contaminated soil degrades polycyclic aromatic hydrocarbons
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Amycolatopsis sp Poz14 isolated from oil-contaminated soil degrades polycyclic aromatic hydrocarbons

机译:amycolatopsis sp poz14从油污污染的土壤中分离出多环芳烃芳烃

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The main actinobacterial genera able to degrade polycyclic aromatic hydrocarbons (PAHs) include Mycobacterium, Nocardia, Rhodococcus, and Gordonia. However, it is unknown if other actinobacterial genera can degrade PAHs. In this work, three actinobacteria strains that utilize PAHs as the sole source of carbon and energy, were isolate and termed Amycolatopsis sp. Poz14, Gordonia sp. Poz20, and Rhodacoccus sp. Poz54. The strains use low-molecular-weight (LMW; naphthalene and anthracene) and high-molecular-weight (HMW; pyrene and fluoranthene) PAHs at 50 mg L-1 as the sole carbon and energy sources; except Amycolatopsis sp. Poz14 which tolerate up to 200 mg L-1. Amycolatopsis sp. Poz14 exhibited higher degradation percentages for LMW-PAH than HMW-PAH, from 100% for naphthalene, 37.87% for anthracene, 25.10% for pyrene, and 18.18% for fluoranthene within 45-day. Degradation efficiency of PAHs by Amycolatopsis sp. Poz14 improved by adding tween 20 to 1000 mg L-1. Moreover, degradation kinetics of binary mixtures of PAHs were conducted, Amycolatopsis sp. Poz14 used both PAHs from the beginning of the kinetics, and degradation efficiencies in binary mixtures were better than those achieved in single PAH. To the best of our knowledge, this is the first report involving to genus Amycolatopsis in the degradation of LMW- and HMW-PAHs. (C) 2015 Elsevier Ltd. All rights reserved.
机译:能够降解多环芳烃(PAH)的主要猕猴桃属包括分枝杆菌,Nocardia,rhodococcus和Gordonia。然而,如果其他肌动杆菌属,则未知是可以降解PAH的。在这项工作中,使用PAHS作为碳和能量唯一来源的三种抗肌菌菌株是分离和称为amycolaTopsissp。 Poz14,Gordonia sp。 Poz20,rhodacccus sp。 Poz54。菌株使用低分子量(LMW;萘和蒽)和高分子量(HMW;芘和氟)PAHs,为50mg L-1作为唯一的碳和能量来源;除了杏仁糖尿布。 Poz14耐受高达200 mg L-1。 amycolatopsis sp。 Poz14表现出LMW-PAH的降解百分比,而不是HMW-PAH,从100%的萘,37.87%,芘的25.10%,45天内氟蒽的18.18%。杏仁糖醇的降解效率。 Poz14通过增加20至1000mg L-1来改善。此外,对PAHs的二元混合物进行了降解动力学,amycolatopsis sp。 Poz14从动力学开始使用PAHS,二元混合物中的降解效率优于单一PAH中实现的效率。据我们所知,这是第一份涉及在LMW和HMW-PAHS降解的氨基灰岩属的第一份报告。 (c)2015 Elsevier Ltd.保留所有权利。

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