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Exploitation of Endophytic Bacteria to Enhance the Phytoremediation Potential of the Wetland Helophyte Juncus acutus

机译:开发内生细菌以增强湿地生植物Juncus acutus的植物修复潜力

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摘要

This study investigated the potential of indigenous endophytic bacteria to improve the efficiency of the wetland helophyte Juncus acutus to deal with a mixed pollution consisting of emerging organic contaminants (EOCs) and metals. The beneficial effect of bioaugmentation with selected endophytic bacteria was more prominent in case of high contamination: most of the inoculated plants (especially those inoculated with the mixed culture) removed higher percentages of organics and metals from the liquid phase in shorter times compared to the non-inoculated plants without exhibiting significant oxidative stress. When exposed to the lower concentrations, the tailored mixed culture enhanced the performance of the plants to decrease the organics and metals from the water. The composition of the root endophytic community changed in response to increased levels of contaminants while the inoculated bacteria did not modify the community structure. Our results indicate that the synergistic relationships between endophytes and the macrophyte enhance plants’ performance and may be exploited in constructed wetlands treating water with mixed contaminations. Taking into account that the concentrations of EOCs used in this study are much higher than the average contents of typical wastewaters, we can conclude that the macrophyte J. acutus with the aid of a mixed culture of tailored endophytic bacteria represents a suitable environmentally friendly alternative for treating pharmaceuticals and metals.
机译:这项研究调查了本地内生细菌改善湿地生植物Juncus acutus的效率的潜力,以应对由新兴有机污染物(EOC)和金属组成的混合污染。在高污染的情况下,使用精选的内生细菌进行生物强化的有益效果更为突出:与未接种植物相比,大多数接种植物(尤其是接种了混合培养物的植物)在较短的时间内从液相中去除了较高百分比的有机物和金属。 -未显示明显氧化应激的植物。当暴露于较低浓度下时,量身定制的混合培养物可增强植物的性能,以减少水中的有机物和金属。根部内生群落的组成随污染物水平的增加而变化,而接种的细菌并未改变群落结构。我们的结果表明,内生植物与大型植物之间的协同关系可以增强植物的性能,并且可以在人工湿地中处理混合污染水。考虑到本研究中使用的EOC浓度远高于典型废水的平均含量,我们可以得出结论,在特制内生细菌的混合培养下,大型水生假单胞菌代表了一种适合的环境友好替代品。处理药品和金属。

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