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Fine-Scale Temporal Dynamics of a Fragmented Lotic Microbial Ecosystem

机译:碎裂的微生物微生物生态系统的精细尺度时间动力学

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摘要

Microbial ecosystems are often assumed to be relatively stable over short periods of time, but this assumption is seldom tested. An urban stream influenced by both flow and varying levels of anthropogenic influences is expected to have high temporal variability in microbial composition, and short-term ecological instability. Thus, we analyzed the bacterioplankton composition of a weir-fragmented urban stream using Automated rRNA Intergenic Spacer Analysis (ARISA). A total of 46 sequential samples were collected in July 2009 for 7 days, every 7 hours, from both the up-stream side of the weir (stream water) and the downstream side of the weir (estuarine) water. Bray-Curtis similarity based analysis showed a clear division between upstream and downstream communities. A sudden pH drop induced change in both communities, but composition stability partially recovered within less than a day. Thus, our results show that microbial ecosystems can change rapidly, but re-establish a new equilibrium relatively quickly.
机译:通常认为微生物生态系统在短期内相对稳定,但是很少对此假设进行检验。受到流量和不同水平的人为因素影响的城市河流,预计其微生物成分具有较高的时间变化性,并具有短期的生态不稳定性。因此,我们使用自动rRNA基因间隔分析(ARISA)分析了堰堰式城市水体的浮游细菌组成。 2009年7月,每7小时,从堰(上游水)的上游侧和堰(河口)水的下游侧总共采集了46个连续采样,共7天,共7天。基于Bray-Curtis相似性的分析表明,上游社区和下游社区之间存在明显的区分。 pH值突然下降导致两个群落发生变化,但组成稳定性在不到一天的时间内部分恢复。因此,我们的结果表明,微生物生态系统可以快速变化,但可以相对快速地重新建立新的平衡。

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