Department Limnology of Stratified Lakes, Leibniz-Institute of Freshwater Ecology and Inland Fisheries, Alte Fischerhütte 2, 16775 Stechlin, Germany.
Microb Ecol. 2012 Oct;64(3):571-83. doi: 10.1007/s00248-012-0049-3. Epub 2012 Apr 25.
Seasonal changes in environmental conditions have a strong impact on microbial community structure and dynamics in aquatic habitats. To better elucidate the response of bacterial communities to environmental changes, we have measured a large variety of limnetic variables and investigated bacterial community composition (BCC) and dynamics over seven consecutive years between 2003 and 2009 in mesotrophic Lake Tiefwaren (NE Germany). We separated between free-living (FL, >0.2, <5.0 μm) and particle-associated (PA, >5.0 μm) bacteria to account for different bacterial lifestyles and to obtain a higher resolution of the microbial diversity. Changes in BCC were studied by DGGE based on PCR-amplified 16S rRNA gene fragments. Sequencing of DGGE bands revealed that ca. 70 % of all FL bacteria belonged to the Actinobacteria, whereas PA bacteria were dominated by Cyanobacteria (43 %). FL communities were generally less diverse and rather stable over time compared to their PA counterpart. Annual changes in reoccurring seasonal patterns of dominant freshwater bacteria were supported by statistical analyses, which revealed several significant correlations between DGGE profiles and various environmental variables, e.g. temperature and nutrients. Overall, FL bacteria were generally less affected by environmental changes than members of the PA fraction. Close association of PA bacteria with phytoplankton and zooplankton suggests a tight coupling of PA bacteria to organisms of higher trophic levels. Our results indicate substantial differences in bacterial lifestyle of pelagic freshwater bacteria, which are reflected by contrasting seasonal dynamics and relationships to a number of environmental variables.
季节变化对水生栖息地的微生物群落结构和动态有强烈影响。为了更好地阐明细菌群落对环境变化的响应,我们在 2003 年至 2009 年的七年时间里,测量了大量的淡水变量,并调查了中营养湖泊提福万恩(德国东北部)的细菌群落组成(BCC)和动态。我们将自由生活(FL,>0.2,<5.0 μm)和颗粒相关(PA,>5.0 μm)细菌分开,以说明不同的细菌生活方式,并获得更高分辨率的微生物多样性。通过基于 PCR 扩增的 16S rRNA 基因片段的 DGGE 研究 BCC 的变化。DGGE 带的测序表明,约 70%的 FL 细菌属于放线菌,而 PA 细菌主要由蓝细菌(43%)组成。与 PA 相比,FL 群落通常多样性较低,随时间变化较稳定。对占主导地位的淡水细菌的重现季节性模式的年度变化的统计分析表明,DGGE 图谱与各种环境变量之间存在几个显著相关性,例如温度和养分。总的来说,与 PA 部分的成员相比,FL 细菌通常较少受到环境变化的影响。PA 细菌与浮游植物和浮游动物密切相关,这表明 PA 细菌与较高营养水平的生物紧密耦合。我们的研究结果表明,浮游淡水细菌的细菌生活方式存在实质性差异,这反映在季节动态和与许多环境变量的关系上。