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Comparative analysis of nitrifying bacteria associated with freshwater and marine aquaria.

机译:淡水和海洋水族馆相关硝化细菌的比较分析。

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Three nucleic acid probes, two for autotrophic ammonia-oxidizing bacteria of the beta subdivision of the class Proteobacteria and one for alpha subdivision nitrite-oxidizing bacteria, were developed and used to study nitrifying bacterial phylotypes associated with various freshwater and seawater aquarium biofilters. Nitrosomonas europaea and related species were detected in all nitrifying seawater systems and accounted for as much as 20% of the total eubacterial rRNA. In contrast, nitrifying bacteria belonging to the beta-proteobacterial subdivision were detected in only two samples from freshwater aquaria showing vigorous nitrification rates. rRNA originating from nitrite-oxidizing alpha subdivision proteobacteria was not detected in samples from either aquarium environment. The data obtained indicate that chemolithotrophic ammonia oxidation in the freshwater aquaria was not due to beta-proteobacterial phylotypes related to members of the genus Nitrosomonas and their close relatives, the organisms usually implicated in freshwater nitrification. It is likely that nitrification in natural environments is even more complex than nitrification in these simple systems and is less well characterized with regard to the microorganisms responsible.
机译:开发了三种核酸探针,其中两种用于Proteobacteria类β亚型的自养氨氧化细菌,一种用于亚硝酸盐亚种氧化α细菌,用于研究与各种淡水和海水水族馆生物滤池相关的硝化细菌系统型。在所有硝化海水系统中都检测到欧洲亚硝化单胞菌及其相关物种,占总真细菌rRNA的20%。相反,仅在淡水水族箱的两个样品中检测到属于β-proteobacterial细分的硝化细菌,显示出强烈的硝化速率。在任何一个水族馆环境的样品中均未检测到源自亚硝酸盐氧化的α细分蛋白细菌的rRNA。所获得的数据表明,淡水水族箱中的化学营养型氨氧化不是由于与亚硝化单胞菌属及其近亲有关的β-蛋白细菌系统型引起的,该生物通常与淡水硝化有关。在自然环境中,硝化作用甚至可能比在这些简单系统中的硝化作用更为复杂,并且在负责微生物方面的表征也较差。

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