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Fungal Community as a Bioindicator to Reflect Anthropogenic Activities in a River Ecosystem

机译:真菌群落作为反映河流生态系统中人为活动的生物指示剂

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摘要

The fungal community interacts with the ambient environment and can be used as a bioindicator to reflect anthropogenic activities in aquatic ecosystems. Several studies have investigated the impact of anthropogenic activities on the fungal community and found that community diversity and composition are influenced by such activities. Here we combined chemical analysis of water properties and sequencing of fungal internal transcribed spacer regions to explore the relationship between water quality indices and fungal community diversity and composition in three river ecosystem areas along a gradient of anthropogenic disturbance (i.e., less-disturbed mountainous area, wastewater-discharge urban area, and pesticide and fertilizer used agricultural area). Results revealed that the level of anthropogenic activity was strongly correlated to water quality and mycoplankton community. The increase in organic carbon and nitrogen concentrations in water improved the relative abundance of Schizosaccharomyces, which could be used as a potential biomarker to reflect pollutant and nutrient discharge. We further applied a biofilm reactor using water from the three areas as influent to investigate the differences in fungal communities in the formed biofilms. Different community compositions were observed among the three areas, with the dominant fungal phyla in the biofilms found to be more sensitive to seasonal effects than those found in water. Finally, we determined whether the fungal community could recover following water quality restoration. Our biofilm reactor assay revealed that the recovery of fungal community would occur but need a long period of time. Thus, this study highlights the importance of preserving the original natural aquatic ecosystem.
机译:真菌群落与周围环境相互作用,可以用作生物指标来反映水生生态系统中的人为活动。几项研究调查了人为活动对真菌群落的影响,并发现群落多样性和组成受到此类活动的影响。在这里,我们结合了水质的化学分析和真菌内部转录间隔区的序列,探讨了在沿人类活动扰动(即受干扰较少的山区,废水排放市区,以及农药和化肥使用的农业区)。结果表明,人为活动的水平与水质和浮游生物群落密切相关。水中有机碳和氮浓度的增加改善了裂殖酵母的相对丰度,可以用作反映污染物和养分排放的潜在生物标记。我们进一步应用了生物膜反应器,使用来自三个地区的水作为进水,以调查形成的生物膜中真菌群落的差异。在这三个区域中观察到了不同的群落组成,生物膜中的优势真菌门比水中的对季节效应更为敏感。最后,我们确定了真菌群落是否可以在水质恢复后恢复。我们的生物膜反应器测定表明,真菌群落的恢复将发生,但需要很长时间。因此,这项研究突出了保护原始自然水生生态系统的重要性。

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