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首页> 外文期刊>Water, Air, & Soil Pollution >Evaluation of Microbial Community Activity, Abundance and Structure in a Semiarid Soil Under Cadmium Pollution at Laboratory Level
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Evaluation of Microbial Community Activity, Abundance and Structure in a Semiarid Soil Under Cadmium Pollution at Laboratory Level

机译:在实验室水平下镉污染对半干旱土壤微生物群落活性,丰度和结构的评价

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Cadmium (Cd) pollution can alter soil flora and fauna, as well as the microbial community associated with the main biogeochemical cycles of a soil. The present study was conducted to investigate the effect of two different concentrations of Cd pollutant, 6.5 mg kg−1 (low level) and 12.5 mg kg−1 (high level) on microbial community activity, abundance, and structure in a semiarid soil after a 60-day incubation period at laboratory level. Available Cd, water soluble carbon (WSC), microbial biomass carbon (Cmic), adenosine triphosphate (ATP) content, and real-time polymerase chain reaction were used to measure the influence of Cd on the abundance and activity of the microbial community. Bacteria and fungi community structure and diversity based on denaturing gradient gel electrophoresis (DGGE) analysis were also analyzed. The percentage of Cd extracted by diethylenetriamine pentaacetic acid increased with the higher total concentration of Cd added to the soil, being 16.9% at low level and 77.9% at the high level. WSC, Cmic, and ATP content decreased significantly as soil Cd concentration increased (WSC 29% and 34%, Cmic 27% and 35%, and ATP 32% and 47%, at low and high levels, respectively). While fungal diversity already decreased with low levels of Cd concentration, and was even more negatively affected by the higher pollution levels, bacterial (acidobacteria, α-proteobacteria, and β proteobacteria) diversity only showed a decline with the higher Cd concentration. The fungi-to-bacteria ratio showed by the different treatments could imply that fungi abundance is less influenced by increased Cd pollution, although fungi diversity as revealed by DGGE analysis diminished as soil Cd concentration increased.
机译:镉(Cd)污染会改变土壤动植物,以及与土壤主要生物地球化学循环有关的微生物群落。本研究旨在研究两种不同浓度的Cd污染物6.5 mg kg -1 (低水平)和12.5 mg kg -1 (高水平)的影响在实验室水平温育60天后,对半干旱土壤中微生物群落活性,丰度和结构的影响。可用的镉,水溶性碳(WSC),微生物生物量碳(C mic ),三磷酸腺苷(ATP)含量和实时聚合酶链反应用于测量Cd对丰度的影响和微生物群落的活动。还基于变性梯度凝胶电泳(DGGE)分析了细菌和真菌的群落结构和多样性。二乙烯三胺五乙酸萃取的镉百分比随着土壤中镉的总浓度增加而增加,低浓度时为16.9%,高浓度时为77.9%。随着土壤Cd浓度的增加,WSC,C mic 和ATP含量显着降低(WSC为29%和34%,C mic 为27%和35%,ATP为32%和47%,分别处于低水平和高水平)。尽管Cd浓度低时真菌多样性已经下降,而更高的污染水平对真菌多样性的负面影响更大,但细菌(酸性细菌,α-变形细菌和β变形细菌)的多样性仅随着Cd浓度的升高而下降。尽管通过DGGE分析揭示的真菌多样性随着土壤Cd浓度的增加而降低,但不同处理方法所显示的真菌与细菌的比率可能意味着真菌丰度不受Cd污染增加的影响。

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