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Fine-scale spatial patterns in bacterial community composition and function within freshwater ponds

机译:淡水池塘中细菌群落组成和功能的精细尺度空间格局

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摘要

The extent to which non-host-associated bacterial communities exhibit small-scale biogeographic patterns in their distribution remains unclear. Our investigation of biogeography in bacterial community composition and function compared samples collected across a smaller spatial scale than most previous studies conducted in freshwater. Using a grid-based sampling design, we abstracted 100+ samples located between 3.5 and 60 m apart within each of three alpine ponds. For every sample, variability in bacterial community composition was monitored using a DNA-fingerprinting methodology (automated ribosomal intergenic spacer analysis) whereas differences in bacterial community function (that is, carbon substrate utilisation patterns) were recorded from Biolog Ecoplates. The exact spatial position and dominant physicochemical conditions (for example, pH and temperature) were simultaneously recorded for each sample location. We assessed spatial differences in bacterial community composition and function within each pond and found that, on average, community composition or function differed significantly when comparing samples located >20 m apart within any pond. Variance partitioning revealed that purely spatial variation accounted for more of the observed variability in both bacterial community composition and function (range: 24–38% and 17–39%) than the combination of purely environmental variation and spatially structured environmental variation (range: 17–32% and 15–20%). Clear spatial patterns in bacterial community composition, but not function were observed within ponds. We therefore suggest that some of the observed variation in bacterial community composition is functionally ‘redundant'. We confirm that distinct bacterial communities are present across unexpectedly small spatial scales suggesting that populations separated by distances of >20 m may be dispersal limited, even within the highly continuous environment of lentic water.
机译:与宿主无关的细菌群落在其分布中表现出小规模生物地理模式的程度仍不清楚。我们对细菌群落组成和功能的生物地理学研究比较了在比以前在淡水中进行的大多数研究小的空间范围内收集的样品。使用基于网格的采样设计,我们提取了三个高山池塘中每个相隔3.5至60微米之间的100多个样本。对于每个样品,使用DNA指纹图谱方法(自动核糖体基因间间隔分析)监测细菌群落组成的变异性,而细菌群落功能的差异(即碳底物利用模式)则由Biolog Ecoplates记录。同时记录每个样品位置的确切空间位置和主要的物理化学条件(例如pH和温度)。我们评估了每个池塘中细菌群落组成和功能的空间差异,发现在比较任何池塘中相距>20μm的样品时,平均而言,群落组成或功能存在显着差异。方差划分表明,与纯环境变化和空间结构化环境变化(范围:17)的组合相比,纯空间变化在细菌群落组成和功能(范围:24-38%和17-39%)中观察到的变异性更多。 –32%和15–20%)。在池塘内观察到细菌群落组成的清晰空间格局,但未发现其功能。因此,我们建议观察到的细菌群落组成的某些变化在功能上是“冗余的”。我们确认,在意想不到的小空间尺度上存在着独特的细菌群落,这表明即使在高度连续的胶体水环境中,相隔距离> 20µm的种群也可能受到分散的限制。

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