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The diversity of PAH-degrading bacteria in a deep-sea water column above the Southwest Indian Ridge

机译:西南印度洋脊上方深海水柱中降解PAH的细菌的多样性

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摘要

The bacteria involved in organic pollutant degradation in pelagic deep-sea environments are largely unknown. In this report, the diversity of polycyclic aromatic hydrocarbon (PAH)-degrading bacteria was analyzed in deep-sea water on the Southwest Indian Ridge (SWIR). After enrichment with a PAH mixture (phenanthrene, anthracene, fluoranthene, and pyrene), nine bacterial consortia were obtained from depths of 3946–4746 m. While the consortia degraded all four PAHs when supplied in a mixture, when PAHs were tested individually, only phenanthrene supported growth. Thus, degradation of the PAH mixture reflected a cometabolism of anthracene, fluoranthene, and pyrene with phenanthrene. Further, both culture-dependent and independent methods revealed many new bacteria involved in PAH degradation. Specifically, the alpha and gamma subclasses of Proteobacteria were confirmed as the major groups within the communities. Additionally, Actinobacteria, the CFB group and Firmicutes were detected. Denaturing Gradient Gel Electrophoresis (DGGE) analysis showed that bacteria closely affiliated with Alcanivorax, Novosphingobium, and Rhodovulum occurred most frequently in different PAH-degrading consortia. By using general heterotrophic media, 51 bacteria were isolated from the consortia and of these 34 grew with the PAH mixture as a sole carbon source. Of these, isolates most closely related to Alterierythrobacter, Citricella, Erythrobacter, Idiomarina, Lutibacterium, Maricaulis, Marinobacter, Martelella, Pseudidiomarina, Rhodobacter, Roseovarius, Salipiger, Sphingopyxis, and Stappia were found to be PAH degraders. To the best of our knowledge, this is the first time these bacteria have been identified in this context. In summary, this report revealed significant diversity among the PAH-degrading bacteria in the deep-sea water column. These bacteria may play a role in PAH removal in deep-sea environments.
机译:在远洋深海环境中涉及有机污染物降解的细菌在很大程度上是未知的。在此报告中,分析了西南印第安海岭(SWIR)上深海水中降解多环芳烃(PAH)的细菌的多样性。用PAH混合物(菲,蒽,荧蒽和pyr)富集后,从3946–4746 m的深度获得了9个细菌群落。当财团以混合物形式提供时会降解所有四种PAH,但当单独测试PAH时,只有菲能促进生长。因此,PAH混合物的降解反映了蒽,荧蒽和pyr与菲的新陈代谢。此外,依赖于培养物的方法和独立于培养物的方法都揭示了许多与PAH降解有关的新细菌。具体而言,证实了变形杆菌的alpha和gamma亚类是社区内的主要群体。此外,还检测到放线菌,CFB组和Firmicutes。变性梯度凝胶电泳(DGGE)分析表明,与Alcanivorax,Novosphingobium和Rhodovulum紧密相关的细菌在不同的PAH降解菌群中发生频率最高。通过使用一般的异养培养基,从财团中分离出51种细菌,其中34种细菌以PAH混合物作为唯一碳源生长。在这些分离物中,发现与PAH降解剂最密切相关的分离株是:嗜热链球菌,柠檬酸杆菌,红杆菌,异狄氏杆菌,Lutibacterium,Maricaulis,Marinobacter,Martelella,假单胞菌属,红细菌,Roseovarius,Salipiger,Sphingopyxis和Stappia。据我们所知,这是首次在这种情况下鉴定出这些细菌。总而言之,该报告揭示了深海水柱中降解PAH的细菌之间的显着多样性。这些细菌在深海环境中可能在去除PAH中起作用。

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