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首页> 外文期刊>Ecological engineering: The Journal of Ecotechnology >Effects of plant diversity on microbial biomass and community metabolic profiles in a full-scale constructed wetland
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Effects of plant diversity on microbial biomass and community metabolic profiles in a full-scale constructed wetland

机译:人工湿地中植物多样性对微生物量和群落代谢特征的影响

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There has been less understanding of relations of microbial community patterns with plant diversity in constructed wetlands. We conducted a single full-scale subsurface vertical flow constructed wetland (SVFCW, 1000 m~2) study focusing on domestic wastewater processing. This study measured the size and structure of microbial community using fumigation extraction and BIOLOG Ecoplate~(TM) techniques, to examine the effects of macrophyte diversity on microbial communities that are critical in treatment efficiency of constructed wetlands. We also determined the relationship of plant diversity (species richness) with its biomass production under disturbance of the same wastewater supply. Linear regression analysis showed that plant biomass production strongly correlated with plant species richness (R = 0.407, P< 0.001). Increase in plant species richness increased microbial biomass carbon and nitrogen (R = 0.494, P<0.001; R = 0.465, P<0.001) and utilization of amino acids on Ecoplates (R=0.235, P=0.03), but limited the utilization of amine/amides (R = -0.338, P = 0.013). Principal components analysis (PCA) showed that the diversity and community-level physiological profiles (CLPP) of microbial community at 168 h of incubation strongly depended on the presence or absence of plant species in the SVFCW system, but not on the species richness. This is the first step toward understanding relations of plant diversity with soil microbial community patterns in constructed wetlands, but the effect of species diversity on microbial community should be further studied.
机译:对人工湿地中微生物群落模式与植物多样性之间关系的了解较少。我们进行了一次全尺寸地下垂直流人工湿地(SVFCW,1000 m〜2)研究,重点是生活污水处理。这项研究使用熏蒸提取和BIOLOG EcoplateTM技术测量了微生物群落的大小和结构,以检验大型植物多样性对微生物群落的影响,这对于人工湿地的处理效率至关重要。我们还确定了在相同废水供应的干扰下植物多样性(物种丰富度)与其生物量生产之间的关系。线性回归分析表明,植物生物量的产生与植物物种丰富度密切相关(R = 0.407,P <0.001)。植物物种丰富度的增加增加了微生物生物量碳和氮(R = 0.494,P <0.001; R = 0.465,P <0.001)和Ecoplate上氨基酸的利用(R = 0.235,P = 0.03),但限制了胺/酰胺(R = -0.338,P = 0.013)。主成分分析(PCA)表明,在孵化168小时后,微生物群落的多样性和群落水平的生理概况(CLPP)很大程度上取决于SVFCW系统中是否存在植物物种,而不取决于物种丰富度。这是了解人工湿地中植物多样性与土壤微生物群落模式之间关系的第一步,但物种多样性对微生物群落的影响应进一步研究。

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