首页> 外文期刊>Microbial Ecology: An International Journal >Seasonal Patterns in Microbial Community Composition in Denitrifying Bioreactors Treating Subsurface Agricultural Drainage
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Seasonal Patterns in Microbial Community Composition in Denitrifying Bioreactors Treating Subsurface Agricultural Drainage

机译:反硝化生物反应器处理地下农业排水中微生物群落组成的季节性模式

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Denitrifying bioreactors, consisting of water flow control structures and a woodchip-filled trench, are a promising approach for removing nitrate from agricultural subsurface or tile drainage systems. To better understand the seasonal dynamics and the ecological drivers of the microbial communities responsible for denitrification in these bioreactors, we employed microbial community "fingerprinting" techniques in a time-series examination of three denitrifying bioreactors over 2 years, looking at bacteria, fungi, and the denitrifier functional group responsible for the final step of complete denitrification. Our analysis revealed that microbial community composition responds to depth and seasonal variation in moisture content and inundation of the bioreactor media, as well as temperature. Using a geostatistical analysis approach, we observed recurring temporal patterns in bacterial and denitrifying bacterial community composition in these bioreactors, consistent with annual cycling. The fungal communities were more stable, having longer temporal autocorrelations, and did not show significant annual cycling. These results suggest a recurring seasonal cycle in the denitrifying bioreactor microbial community, likely due to seasonal variation in moisture content.
机译:由水流控制结构和木屑填充的沟槽组成的反硝化生物反应器是从农业地下或瓷砖排水系统中去除硝酸盐的有前途的方法。为了更好地了解这些生物反应器中负责反硝化作用的微生物群落的季节动态和生态驱动因素,我们在两年内对三个反硝化生物反应器进行了时间序列检查,采用了微生物群落“指纹”技术,研究了细菌,真菌和细菌。反硝化功能组负责完成反硝化的最后一步。我们的分析表明,微生物群落组成对水分含量和生物反应器介质的淹没以及温度的深度和季节变化有响应。使用地统计分析方法,我们观察了这些生物反应器中细菌和反硝化细菌群落组成的周期性时间格局,与年度循环一致。真菌群落更稳定,时间自相关时间更长,并且没有显示出明显的年度循环。这些结果表明反硝化生物反应器微生物群落中周期性的周期性循环,这可能是由于水分含量的季节性变化所致。

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