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Effects of Plant Species on Nitrous Oxide Emission and Microbial Community Structure Diversity in Constructed Wetlands

机译:植物物种对构造湿地氮氧化氮发射和微生物群落结构多样性的影响

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Vegetation is the principal component of the constructed wetland (CW) systems. To better understand the effect of plant species, the nitrous oxide (N2O) fluxes and bacterial community structure diversity were compared in different CWs planted with six plants. The results showed that N2O fluxes had obvious differences in vegetation systems. The higher risk of N2O emissions was observed in CWs planted with Typha latifolia and Scirpus validus, while the lowest N2O emission was in Phragmites australis systems. Bacterial communities to understand the bacterial world in the substrate by analyzing data of the denaturing gradient gel electrophoresis (DGGE) band patterns. The result clearly demonstrated that DGGE profiles revealed marked differences in the response of microbial communities under different plants cover.
机译:植被是构造湿地(CW)系统的主要成分。为了更好地理解植物物种的效果,在种植有六种植物的不同CWS中比较了氧化亚氮(N <亚> 2 O)助熔剂和细菌群落结构多样性。结果表明,N <亚> 2 O助焊剂在植被系统中具有明显的差异。在患有Typha Latifolia和Scirpus validus的CWS中观察到N 2 O排放的风险较高,而最低的N 2 o排放在澳大利亚澳大利亚系统中。通过分析变性梯度凝胶电泳(DGGE)带图案的数据来了解基质中的细菌世界。结果清楚地证明,DGGE曲线在不同植物覆盖下的微生物群落的响应中显示出显着的差异。

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