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首页> 外文期刊>Microbial Ecology: An International Journal >Diversity and Cyclical Seasonal Transitions in the Bacterial Community in a Large and Deep Perialpine Lake
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Diversity and Cyclical Seasonal Transitions in the Bacterial Community in a Large and Deep Perialpine Lake

机译:大围堰湖中细菌群落中的多样性和周期季节转变

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High-throughput sequencing (HTS) was used to analyze the seasonal variations in the bacterioplankton community composition (BCC) in the euphotic layer of a large and deep lake south of the Alps (Lake Garda). The BCC was analyzed throughout two annual cycles by monthly samplings using the amplification and sequencing of the V3-V4 hypervariable region of the 16S rRNA gene by the MiSeq Illumina platform. The dominant and most diverse bacterioplankton phyla were among the more frequently reported in freshwater ecosystems, including the Proteobacteria, Cyanobacteria, Bacteroidetes, Verrucomicrobia, Actinobacteria, and Planctomycetes. As a distinctive feature, the development of the BCC showed a cyclical temporal pattern in the two analyzed years and throughout the euphotic layer. The recurring temporal development was controlled by the strong seasonality in water temperature and thermal stratification, and by cyclical temporal changes in nutrients and, possibly, by the remarkable annual cyclical development of cyanobacteria and eukaryotic phytoplankton hosting bacterioplankton that characterizes Lake Garda. Further downstream analyses of operational taxonomic units associated to cyanobacteria allowed confirming the presence of the most abundant taxa previously identified by microscopy and/or phylogenetic analyses, as well as the presence of other small Synechococcales/Chroococcales and rare Nostocales never identified so far in the deep lakes south of the Alps. The implications of the high diversity and strong seasonality are relevant, opening perspectives for the definition of common and discriminating patterns characterizing the temporal and spatial distribution in the BCC, and for the application of the new sequencing technologies in the monitoring of water quality in large and deep lakes.
机译:高通量测序(HTS)用于分析阿尔卑斯山(Garda湖)的大和深湖的Euphotic层中的菌株群体组成(BCC)的季节变化。通过Miseq Illumina平台的16S rRNA基因的V3-V4高变区域的扩增和测序,通过每月采样分析BCC。优势和最多样化的菌株植物是淡水生态系统中较常见的,包括促菌,蓝藻,菌株,疣状胬瘤,抗菌菌和平分霉菌。作为一种独特的特征,BCC的发展在两个分析的年份和整个Euphotic层中显示了一种周期性的时间模式。经常性的时间发育受水温和热分层的强烈季节性,以及营养素的周期性变化,并且可能是由湖加尔达湖宿主的菌丝细胞和真核植物植物的年度周期性发展。进一步下游与蓝细菌相关的运营分类单位分析允许确认以前通过显微镜和/或系统发育分析鉴定的最丰富的素食的存在,以及其他小型梭冠/克里克/克罗克/克罗克/克罗克/克罗克),从未识别到深处湖南湖。高多样性和强烈季节性的影响是相关的,开放的观点,用于定义常见和辨别模式,其特征在于BCC中的时间和空间分布,以及在大的水质监测中应用新的测序技术的应用深湖泊。

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