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The sensitivity and stability of bacterioplankton community structure to wind-wave turbulence in a large shallow eutrophic lake

机译:大型浅水富营养化湖泊中浮游生物群落结构对风浪湍流的敏感性和稳定性

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摘要

Lakes are strongly influenced by wind-driven wave turbulence. The direct physical effects of turbulence on bacterioplankton community structure however, have not yet been addressed and remains poorly understood. To examine the stability of bacterioplankton communities under turbulent conditions, we simulated conditions in the field to evaluate the responses of the bacterioplankton community to physical forcing in Lake Taihu, using high-throughput sequencing and flow cytometry. A total of 4,520,231 high quality sequence reads and 74,842 OTUs were obtained in all samples with α-proteobacteria, γ-proteobacteria and Actinobacteria being the most dominant taxa. The diversity and structure of bacterioplankton communities varied during the experiment, but were highly similar based on the same time of sampling, suggesting that bacterioplankton communities are insensitive to wind wave turbulence in the lake. This stability could be associated with the traits associated with bacteria. In particular, turbulence favored the growth of bacterioplankton, which enhanced biogeochemical cycling of nutrients in the lake. This study provides a better understanding of bacterioplankton communities in lake ecosystems exposed to natural mixing/disturbances.
机译:湖泊受到风浪的强烈影响。然而,湍流对浮游生物群落结构的直接物理影响尚未得到解决,并且知之甚少。为了检查湍流条件下浮游细菌群落的稳定性,我们使用高通量测序和流式细胞术对田间条件进行了模拟,以评估太湖中浮游细菌群落对物理强迫的响应。在所有样本中,总共获得4,520,231个高质量序列读数和74,842个OTU,其中α-变形杆菌,γ-变形杆菌和放线菌是最主要的分类单元。在实验过程中,浮游细菌群落的多样性和结构各不相同,但基于相同的采样时间却高度相似,这表明浮游细菌群落对湖中的风波湍流不敏感。这种稳定性可能与细菌的性状有关。特别是,湍流有利于浮游细菌的生长,从而增强了湖泊中养分的生物地球化学循环。这项研究可以更好地了解暴露于自然混合/干扰的湖泊生态系统中的浮游细菌群落。

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