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Toward Understanding the Dynamics of Microbial Communities in an Estuarine System

机译:Toward Understanding the Dynamics of microbial Communities in an Estuarine system

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摘要

Community assembly theories such as species sorting theory provide a framework for understanding the structures and dynamics of local communities. The effect of theoretical mechanisms can vary with the scales of observation and effects of specific environmental factors. Based on 16S rRNA gene tag pyrosequencing, different structures and temporal succession patterns were discovered between the surface sediments and bottom water microbial communities in the Pearl River Estuary (PRE). The microbial communities in the surface sediment samples were more diverse than those in the bottom water samples, and several genera were specific for the water or sediment communities. Moreover, water temperature was identified as the main variable driving community dynamics and the microbial communities in the sediment showed a greater temporal change. We speculate that nutrient-based species sorting and bacterial plasticity to the temperature contribute to the variations observed between sediment and water communities in the PRE. This study provides a more comprehensive understanding of the microbial community structures in a highly dynamic estuarine system and sheds light on the applicability of ecological theoretical mechanisms.
机译:诸如物种分类理论之类的社区集会理论为理解当地社区的结构和动态提供了一个框架。理论机制的影响会随观察范围和特定环境因素的影响而变化。基于16S rRNA基因标签焦磷酸测序,在珠江口(PRE)的表层沉积物与底水微生物群落之间发现了不同的结构和时间演替模式。表层沉积物样品中的微生物群落比底水样品中的微生物群落更多样化,并且有几个属对水或沉积物群落具有特异性。此外,水温被确定为驱动群落动态的主要变量,沉积物中的微生物群落表现出较大的时间变化。我们推测基于营养的物种分选和细菌对温度的可塑性促成了PRE中沉积物和水群落之间观察到的变化。这项研究对高动态河口系统中的微生物群落结构提供了更全面的了解,并阐明了生态学理论机制的适用性。

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