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Linking Microbial Community and Catabolic Gene Structures during the Adaptation of Three Contaminated Soils under Continuous Long-Term Pollutant Stress

机译:在连续长期污染胁迫下,将微生物群落和分解代谢基因结构进行三种污染土壤

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Three types of contaminated soil from three geographically different areas were subjected to a constant supply of benzene or benzene/toluene/ethylbenzene/xylenes (BTEX) for a period of 3 months. Different from the soil from Brazil (BRA) and Switzerland (SUI), the Czech Republic (CZE) soil which was previously subjected to intensive in situ bioremediation displayed only negligible changes in community structure. BRA and SUI soil samples showed a clear succession of phylotypes. A rapid response to benzene stress was observed, whereas the response to BTEX pollution was significantly slower. After extended incubation, actinobacterial phylotypes increased in relative abundance, indicating their superior fitness to pollution stress. Commonalities but also differences in the phylotypes were observed. Catabolic gene surveys confirmed the enrichment of actinobacteria by identifying the increase of actinobacterial genes involved in the degradation of pollutants. Proteobacterial phylotypes increased in relative abundance in SUI microcosms after short-term stress with benzene, and catabolic gene surveys indicated enriched metabolic routes. Interestingly, CZE soil, despite staying constant in community structure, showed a change in the catabolic gene structure. This indicates that a highly adapted community, which had to adjust its gene pool to meet novel challenges, has been enriched.
机译:从三种地理上不同区域的三种类型的污染土壤进行持续的苯或苯/甲苯/乙苯/二甲苯/二甲苯(BTEX)的时间为3个月。与来自巴西(胸罩)和瑞士(SUI)的土壤不同,捷克共和国(CZE)土壤预先遭受了深入的生物修复,仅显示了社区结构的可忽略的变化。胸罩和隋土样品呈现出澄清的植物型连续。观察到对苯胁迫的快速反应,而对BTEX污染的反应显着较慢。延长孵育后,肌动菌细菌型在相对丰度中增加,表明它们的污染应激的优异适应性。常见但观察到局部的差异。分解代谢基因调查通过确定参与污染物降解的抗菌剂基因的增加来证实了抗菌菌的富集。在短期应力与苯的SUI微观中的相对丰度中的蛋白质体细菌型在苯并胁迫和分解代谢基因调查中表明富集的代谢途径。有趣的是,Cze土壤,尽管在社区结构中保持不变,但表现出分解代谢基因结构的变化。这表明,已经丰富了一个高度适应的社区,必须调整其基因库以满足新的挑战。

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