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Denitrification in Agriculturally Impacted Streams: Seasonal Changes in Structure and Function of the Bacterial Community

机译:受农业影响河流的反硝化作用:细菌群落结构和功能的季节性变化

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摘要

Denitrifiers remove fixed nitrogen from aquatic environments and hydrologic conditions are one potential driver of denitrification rate and denitrifier community composition. In this study, two agriculturally impacted streams in the Sugar Creek watershed in Indiana, USA with different hydrologic regimes were examined; one stream is seasonally ephemeral because of its source (tile drainage), whereas the other stream has permanent flow. Additionally, a simulated flooding experiment was performed on the riparian benches of the ephemeral stream during a dry period. Denitrification activity was assayed using the chloramphenicol amended acetylene block method and bacterial communities were examined based on quantitative PCR and terminal restriction length polymorphisms of the nitrous oxide reductase (nosZ) and 16S rRNA genes. In the stream channel, hydrology had a substantial impact on denitrification rates, likely by significantly lowering water potential in sediments. Clear patterns in denitrification rates were observed among pre-drying, dry, and post-drying dates; however, a less clear scenario was apparent when analyzing bacterial community structure suggesting that denitrifier community structure and denitrification rate were not strongly coupled. This implies that the nature of the response to short-term hydrologic changes was physiological rather than increases in abundance of denitrifiers or changes in composition of the denitrifier community. Flooding of riparian bench soils had a short-term, transient effect on denitrification rate. Our results imply that brief flooding of riparian zones is unlikely to contribute substantially to removal of nitrate (NO3 -) and that seasonal drying of stream channels has a negative impact on NO3 - removal, particularly because of the time lag required for denitrification to rebound. This time lag is presumably attributable to the time required for the denitrifiers to respond physiologically rather than a change in abundance or community composition.
机译:反硝化剂从水生环境中除去固定的氮,水文条件是反硝化率和反硝化剂群落组成的潜在驱动因素。在这项研究中,研究了美国印第安纳州糖溪流域的两种受到农业影响的河流,它们具有不同的水文状况。一股溪流由于其来源(临时排水)而在季节性上是短暂的,而另一股溪流具有永久性流量。此外,在干旱期间,在短暂河流的河岸长凳上进行了模拟洪水实验。使用氯霉素修正的乙炔阻断法测定反硝化活性,并基于定量PCR和一氧化二氮还原酶(nosZ)和16S rRNA基因的末端限制性长度多态性检查细菌群落。在河道中,水文学可能会显着降低沉积物中的水势,从而对反硝化率产生重大影响。在干燥前,干燥后和干燥后的日期中观察到了清晰的反硝化率模式。但是,在分析细菌群落结构时,情况不太清楚,这表明反硝化菌的群落结构和反硝化速率没有强耦合。这意味着对短期水文变化的响应的本质是生理的,而不是反硝化剂丰度的增加或反硝化剂群落组成的变化。河岸替补土壤的洪水对反硝化速率产生了短期的,短暂的影响。我们的结果表明,河岸带的短暂洪水不太可能对去除硝酸盐(NO3 -)有实质性的贡献,而河道的季节性干燥会对NO3 -产生负面影响去除,特别是因为反硝化反弹所需的时间滞后。该时间滞后大概归因于反硝化器做出生理反应所需的时间,而不是丰度或群落组成的变化。

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