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针对湖泊中 Comammox 的定量分析,评估并建立了一种针对 amoA 基因的液滴数字 PCR 检测方法。

Primer evaluation and development of a droplet digital PCR protocol targeting amoA genes for the quantification of Comammox in lakes.

机构信息

Department of Ecology, University of Innsbruck, Innsbruck, Austria.

出版信息

Sci Rep. 2021 Feb 3;11(1):2982. doi: 10.1038/s41598-021-82613-6.

Abstract

To date, little is known about the ecological significance of Comammox (COMplete AMMonia OXidizers) Nitrospira in the water column of freshwater lakes. Water samples collected along depth profiles were used to investigate the distribution of Comammox in 13 lakes characterized by a wide range of physicochemical properties. Several published primers, which target the α-subunit of the ammonia monooxygenase, generated non-specific PCR products or did not amplify target genes from lake water and other habitats. Therefore, a new primer set has been designed for specific detection of Comammox in lakes. The high specificity of the PCR assay was confirmed by sequencing analysis. Quantification of Comammox amoA genes in lake water samples based on droplet digital PCR (ddPCR) revealed very low abundances (not exceeding 85 amoA copies ml), which suggest that Comammox is of minor importance for the nitrification process in the water column of the study sites. Surprisingly, samples taken from the sediment/water-interface along an oxygen gradient in dimictic Piburger See showed Comammox abundances three to four magnitudes higher than in the pelagic realm of the lake, which indicates a preference of Comammox to a particle-attached lifestyle.

摘要

迄今为止,人们对淡水湖中水柱中 Comammox(完全氨氧化菌)Nitrospira 的生态意义知之甚少。本研究沿深度剖面采集水样,以调查 13 个具有广泛物理化学性质的湖泊中 Comammox 的分布。一些已发表的引物靶向氨单加氧酶的α亚基,但产生非特异性 PCR 产物,或无法从湖水和其他生境中扩增靶基因。因此,设计了一套新的引物,用于湖泊中 Comammox 的特异性检测。PCR 分析的高特异性通过测序分析得到了证实。基于液滴数字 PCR(ddPCR)对湖水样品中 Comammox amoA 基因进行定量,发现丰度非常低(不超过 85 amoA 拷贝 ml),这表明 Comammox 对研究地点水柱中的硝化过程的重要性较小。令人惊讶的是,在二型 Piburger 湖沿氧梯度的沉积物/水界面采集的样品中,Comammox 的丰度比湖的浮游区高出三到四个数量级,这表明 Comammox 更喜欢附着在颗粒上的生活方式。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cc4b/7858572/dcb8c345092b/41598_2021_82613_Fig1_HTML.jpg

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