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Fluoride contributes to the shaping of microbial community in high fluoride groundwater in Qiji County Yuncheng City China

机译:氟化物有助于运城市祁集县高氟地下水中微生物群落的形成

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摘要

As a toxic element, excessive amounts of fluoride in environment can be harmful because of its antimicrobial activity, however little is known about the relationship between fluoride and the bacterial community in groundwater systems. Here, we use samples from a typical fluorosis area to test the hypothesis that fluoride concentration is a fundamental structuring factor for bacterial communities in groundwater. Thirteen groundwater samples were collected; high-throughput 16S rRNA gene sequencing and statistical analysis were conducted to compare the bacterial community composition in individual wells. The results showed that Proteobacteria, with most relative abundance in groundwater, decreased along the groundwater fluoride concentration. Additionally, relative abundances of 12 families were also statistically correlated with fluoride concentration. The bacterial community was significantly explained by TOC (P = 0.045) and fluoride concentration (P = 0.007) of groundwater. This suggests that fluoride and TOC likely plays an important role in shaping the microbial community structure in these groundwater systems. Our research suggest that fluoride concentration should be taken into consideration in future when evaluating microbial response to environmental conditions in groundwater system, especially for fluoride rich groundwater.
机译:作为一种有毒元素,环境中过量的氟化物由于其抗菌活性而可能有害,但是人们对地下水系统中氟化物与细菌群落之间的关系知之甚少。在这里,我们使用来自典型氟中毒地区的样本来检验以下假设:氟化物浓度是地下水细菌群落的基本构成因素。收集了十三份地下水样品;进行了高通量16S rRNA基因测序和统计分析,以比较各个孔中的细菌群落组成。结果表明,地下水中相对丰度最高的变形杆菌随着地下水氟化物浓度的增加而降低。此外,12个科的相对丰度也与氟浓度相关。地下水的总有机碳(P = 0.045)和氟化物浓度(P = 0.007)可以显着解释细菌群落。这表明氟化物和TOC可能在塑造这些地下水系统中的微生物群落结构中起重要作用。我们的研究表明,在评估微生物对地下水系统中环境条件的响应时,尤其是对于富含氟化物的地下水,应在将来考虑氟化物的浓度。

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