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首页> 外文期刊>International Journal of Microbiology >Patterns of Change in Metabolic Capabilities of Sediment Microbial Communities in River and Lake Ecosystems
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Patterns of Change in Metabolic Capabilities of Sediment Microbial Communities in River and Lake Ecosystems

机译:河湖生态系统沉积物微生物群落代谢能力变化规律

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摘要

Information on the biodegradation potential of lake and river microbial communities is essential for watershed management. The water draining into the lake ecosystems often carries a significant amount of suspended sediments, which are transported by rivers and streams from the local drainage basin. The organic carbon processing in the sediments is executed by heterotrophic microbial communities, whose activities may vary spatially and temporally. Thus, to capture and apprehend some of these variabilities in the sediments, we sampled six sites three from the Saint Clair River (SC1, SC2, and SC3) and three from Lake Saint Clair in the spring, summer, fall, and winter of 2016. Here, we investigated the shifts in metabolic profiles of sediment microbial communities, along Saint Clair River and Lake Saint Clair using Biolog EcoPlates, which test for the oxidation of 31 carbon sources. The number of utilized substrates was generally higher in the river sediments (upstream) than in the lake sediments (downstream), suggesting a shift in metabolic activities among microbial assemblages. Seasonal and site-specific differences were also found in the numbers of utilized substrates, which were similar in the summer and fall, and spring and winter. The sediment microbial communities in the summer and fall showed more versatile substrate utilization patterns than spring and winter communities. The functional fingerprint analyses clearly distinguish the sediment microbial communities from the lake sites (downstream more polluted sites), which showed a potential capacity to use more complex carbon substrates such as polymers. This study establishes a close linkage between physical and chemical properties (temperature and organic matter content) of lake and river sediments and associated microbial functional activities.
机译:关于湖泊和河流微生物群落生物降解潜力的信息对于流域管理至关重要。排入湖泊生态系统的水通常带有大量的悬浮沉积物,这些沉积物由当地流域的河流和溪流输送。沉积物中有机碳的处理是由异养微生物群落进行的,其活动可能在空间和时间上发生变化。因此,为了捕获和了解这些沉积物中的某些变化,我们在2016年的春季,夏季,秋季和冬季对圣克莱尔河的六个地点(SC1,SC2和SC3)和圣克莱尔湖的三个地点进行了采样在这里,我们使用Biolog EcoPlates调查了圣克莱尔河和圣克莱尔湖沿岸沉积物微生物群落的代谢曲线的变化,该试验测试了31种碳源的氧化。河流沉积物(上游)中所利用的底物数量通常高于湖泊沉积物(下游)中的底物数量,这表明微生物组合之间的代谢活性发生了变化。在使用的底物数量上也发现了季节性和特定地点的差异,在夏季和秋季以及春季和冬季相似。与春季和冬季群落相比,夏季和秋季的沉积物微生物群落显示出更多的底物利用方式。功能指纹分析清楚地将沉积物微生物群落与湖区(下游污染较严重的区)区分开来,这显示了使用更复杂的碳底物(例如聚合物)的潜在能力。这项研究建立了湖泊和河流沉积物的理化性质(温度和有机物含量)与相关微生物功能活动之间的紧密联系。

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