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Spatial and temporal variability in the nitrogen cyclers of hypereutrophic Lake Taihu

机译:超营养湖太湖氮循环助载体的空间和时间变异性

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摘要

Harmful cyanobacterial blooms (cyanoHABs) are a major threat to freshwater ecosystems worldwide. Evidence suggests that both nitrogen and phosphorus are important nutrients in the development and proliferation of blooms, yet much less is known about nitrogen cycling dynamics in these systems. To assess the potential nitrogen cycling function of the cyanoHAB community, surface water samples were collected in Lake Tai (Taihu), China over a 5-month bloom event in 2014. The expression of six nitrogen cycling genes (nifH, hzsA, nxrB, nrfA, amoA, nosZ) was surveyed using a targeted microarray with probes designed to provide phylogenetic information. N-Cycling gene expression varied spatially across Taihu, most notably near the mouth of the Dapu River. Expression of nifH was observed across the lake and attributable to both Proteobacteria and Cyanobacteria: Proteobacteria were major contributors to nifH signal near shore. Other N transformations such as anaerobic ammonia oxidation and denitrification were evident in the surface waters as well. Observations in this study highlight the potential importance of heterotrophic bacteria in N-cycling associated with cyanoHABs.
机译:有害的蓝细菌绽放(Cyanohabs)是全球淡水生态系统的主要威胁。证据表明,氮和磷均为盛开的开发和增殖中的重要营养素,但在这些系统中有关于氮循环动力学的尚不清楚。为了评估Cyanohohab群落的潜在氮循环功能,2014年在中国湖泰(太湖)中收集了地表水样。六个氮循环基因的表达(Nifh,Hzsa,NXRB,NRFA表达,使用靶向微阵列进行调查,旨在提供系统发育信息的探针进行调查。 N-循环基因表达在太湖中空间变化,最大地附近Dapu河口。在湖面观察到Nifh的表达,归因于植物和蓝藻(Cyanobacteria):Proteobacteria是岸边的NiFH信号的主要贡献者。在表面水域也明显明显是厌氧氨氧化和反硝化的其他N变化。本研究中的观察结果突出了与Cyanohabs相关的N-循环中异养细菌的潜在重要性。

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