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首页> 外文期刊>FEMS Microbiology Ecology >Nitrosomonas Nm143-like ammonia oxidizers and Nitrospira marina-like nitrite oxidizers dominate the nitrifier community in a marine aquaculture biofilm
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Nitrosomonas Nm143-like ammonia oxidizers and Nitrospira marina-like nitrite oxidizers dominate the nitrifier community in a marine aquaculture biofilm

机译:在海洋水产养殖生物膜中,亚硝基甲烷类似Nm143的氨氧化剂和亚硝基螺旋藻类的亚硝酸盐氧化剂主导着硝化器群落。

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摘要

Zero-discharge marine aquaculture systems are an environmentally friendly alternative to conventional aquaculture. In these systems, water is purified and recycled via microbial biofilters. Here, quantitative data on nitrifier community structure of a trickling filter biofilm associated with a recirculating marine aquaculture system are presented. Repeated rounds of the full-cycle rRNA approach were necessary to optimize DNA extraction and the probe set for FISH to obtain a reliable and comprehensive picture of the ammonia-oxidizing community. Analysis of the ammonia monooxygenase gene (amoA) confirmed the results. The most abundant ammonia-oxidizing bacteria (AOB) were members of the Nitrosomonas sp. Nm143-lineage (6.7% of the bacterial biovolume), followed by Nitrosomonas marina-like AOB (2.2% of the bacterial biovolume). Both were outnumbered by nitrite-oxidizing bacteria of the Nitrospira marina-lineage (15.7% of the bacterial biovolume). Although more than eight other nitrifying populations were detected, including Crenarchaeota closely related to the ammonia-oxidizer 'Nitrosopumilus maritimus', their collective abundance was below 1% of the total biofilm volume; their contribution to nitrification in the biofilter is therefore likely to be negligible.
机译:零排放海洋水产养殖系统是传统水产养殖的一种环保替代方案。在这些系统中,水被净化并通过微生物滤池回收。在这里,提供了与循环海水养殖系统相关的滴滤生物膜硝化器群落结构的定量数据。为了优化DNA提取和FISH的探针组,需要重复一轮全周期rRNA方法以获得氨氧化社区的可靠和全面的图像。氨单加氧酶基因(amoA)的分析证实了结果。最丰富的氨氧化细菌(AOB)是Nitrosomonas sp。的成员。 Nm143谱系(占细菌生物量的6.7%),其次是滨海硝基单胞菌样AOB(细菌生物量的2.2%)。两者均被硝化螺旋藻滨海谱系的亚硝酸盐氧化细菌所占比例(占细菌生物量的15.7%)。尽管检测到其他八个以上的硝化种群,包括与氨氧化剂'Nitrosopumilus maritimus'密切相关的Crenarchaeota,但它们的集体丰度低于生物膜总体积的1%。因此,它们对生物滤池中硝化作用的贡献可能微不足道。

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