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首页> 外文期刊>International Biodeterioration & Biodegradation >Bacterial diversity and functional interactions between bacterial strains from a phenanthrene-degrading consortium obtained from a chronically contaminated-soil.
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Bacterial diversity and functional interactions between bacterial strains from a phenanthrene-degrading consortium obtained from a chronically contaminated-soil.

机译:从慢性污染土壤获得的菲降解财团的细菌菌株之间的细菌多样性和功能相互作用。

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A phenanthrene-degrading consortium (CON-Phe) was obtained from a chronically contaminated soil. The consortium degraded 58% of the phenanthrene supplied during the first 7 days of incubation with the concomitant accumulation of 1-hydroxy-2-naphthoic acid (HNA). The composition of CON-Phe and its dynamic during phenanthrene degradation were determined using culture-dependent and independent approaches (polymerase chain reaction-denaturing gradient gel electrophoresis and clone libraries). Among the detected bacteria by both methods, Sphingomonadaceae family frequently occurred, but some genera were only observed through culture-dependent methods (Enterobacter sp. and Pseudomonas sp.) and others only through culture-independent methods (Ochrobacterium sp., Alcaligenes sp.). Five different strains were isolated and identified; between them only the strain AM (Sphingobium sp.) showed phenanthrene degradation. And only in strains AM and B (Enterobacter sp) evidence of the presence of PAH-ring hydroxylating dioxygenases genes was found. In order to determine the role of the isolated strains in the CON-Phe and the interaction between them, the phenanthrene degradation by defined mixed cultures was studied. All the defined consortia, formed by strain AM together with another of the isolated strains, showed percentages of phenanthrene biodegradation significantly higher than the strain AM alone and the natural consortia. In addition, no accumulation of HNA was observed in these defined consortia. These results might suggest that in the soil consortia the competition between the species and the community dynamics could cause a negative effect in the phenanthrene degradation. On the other hand, a synergistic effect between the phenanthrene-degrading strain AM and the other isolated strains was observed.
机译:从长期污染的土壤中获得了一个菲降解性财团(CON-Phe)。在孵育的最初7天中,财团降解了所提供的菲的58%,同时伴随着1-羟基-2-萘甲酸(HNA)的积累。使用依赖于培养物的方法和独立方法(聚合酶链反应-变性梯度凝胶电泳和克隆文库)确定CON-Phe的组成及其在菲降解过程中的动力学。在通过两种方法检测到的细菌中,Sphingomonadaceae家族经常出现,但是仅通过依赖于培养的方法(肠杆菌属和假单胞菌属)观察到某些属,而仅通过不依赖于培养物的方法(Ochrobacterium sp。,Alcaligenes sp。)观察到了某些属。 。分离并鉴定出五种不同的菌株。在它们之间,只有菌株AM(Sphingobium sp。)表现出菲降解。并且仅在菌株AM和B(肠杆菌属)中发现存在PAH环羟化双加氧酶基因的证据。为了确定分离菌株在CON-Phe中的作用以及它们之间的相互作用,研究了确定的混合培养物中菲的降解。由菌株AM和另一个分离的菌株组成的所有确定的财团显示,菲生物降解的百分比显着高于单独的菌株AM和自然财团。另外,在这些确定的联合体中未观察到HNA的积累。这些结果可能表明,在土壤群落中,物种之间的竞争和群落动态可能会对菲的降解产生负面影响。另一方面,观察到菲降解菌株AM和其他分离菌株之间具有协同作用。

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