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首页> 外文期刊>Applied Microbiology >Anaerobic Oxidation of Methane in Sediments of Lake Constance, an Oligotrophic Freshwater Lake
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Anaerobic Oxidation of Methane in Sediments of Lake Constance, an Oligotrophic Freshwater Lake

机译:贫营养淡水湖康斯坦斯湖沉积物中甲烷的厌氧氧化

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Anaerobic oxidation of methane (AOM) with sulfate as terminal electron acceptor has been reported for various environments, including freshwater habitats, and also, nitrate and nitrite were recently shown to act as electron acceptors for methane oxidation in eutrophic freshwater habitats. Radiotracer experiments with sediment material of Lake Constance, an oligotrophic freshwater lake, were performed to follow ~(14)CO_(2) formation from ~(14)CH_(4) in sediment incubations in the presence of different electron acceptors, namely, nitrate, nitrite, sulfate, or oxygen. Whereas ~(14)CO_(2) formation without and with sulfate addition was negligible, addition of nitrate increased ~(14)CO_(2) formation significantly, suggesting that AOM could be coupled to denitrification. Nonetheless, denitrification-dependent AOM rates remained at least 1 order of magnitude lower than rates of aerobic methane oxidation. Using molecular techniques, putative denitrifying methanotrophs belonging to the NC10 phylum were detected on the basis of the pmoA and 16S rRNA gene sequences. These findings show that sulfate-dependent AOM was insignificant in Lake constant sediments. However, AOM can also be coupled to denitrification in this oligotrophic freshwater habitat, providing first indications that this might be a widespread process that plays an important role in mitigating methane emissions.
机译:据报道,在包括淡水生境在内的各种环境中,以硫酸盐为末端电子受体对甲烷进行厌氧氧化(AOM),最近还证明了硝酸盐和亚硝酸盐在富营养化的淡水生境中作为甲烷氧化的电子受体。在存在不同电子受体(硝酸盐)的情况下,通过沉积物培养中〜(14)CH_(4)形成的〜(14)CO_(2)追踪了以低营养淡水湖泊康斯坦斯湖沉积物为原料的放射性示踪实验。 ,亚硝酸盐,硫酸盐或氧气。尽管在不添加硫酸盐和添加硫酸盐的情况下,〜(14)CO_(2)的形成可以忽略不计,但是硝酸盐的添加显着增加了〜(14)CO_(2)的形成,表明AOM可以与反硝化耦合。尽管如此,依赖反硝化作用的AOM速率仍比需氧甲烷氧化速率低至少1个数量级。使用分子技术,根据pmoA和16S rRNA基因序列检测到属于NC10门的假定的反硝化甲烷氧化菌。这些发现表明,依赖硫酸盐的AOM在湖泊恒定沉积物中微不足道。但是,AOM还可与该贫营养淡水生境中的反硝化作用相结合,这首次表明这可能是一个广泛的过程,在减少甲烷排放方面起着重要作用。

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