车里雅宾斯克湖泊冬季微生物群落结构的变异

IF 0.8 Q2 Environmental Science
S. Andreeva, Y. Filippova, E. Devyatova, D. Nokhrin
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引用次数: 0

摘要

微生物形成复杂的动态群落,在湖泊生物地球化学循环中起着关键作用。高度城市化目前对淡水水体的细菌群落和生态系统构成严重威胁。为探讨人为负荷对冬季湖泊微生物群落结构变化的影响,首次对车里雅宾斯克地区4个水体的微生物进行了研究。我们使用了文化、色谱-质谱和现代统计数据处理方法(特别是多变量探索性分析和典型对应分析)。研究表明,Chebarkul’、Smolino、Pervoye和Shershenevskoye水库冬季微生物群落的组成在主要微生物门之间没有显著差异。优势微生物为厚壁菌门和放线菌门。细菌群落的结构因水体特征和采样深度的不同而具有特殊的特征。因此,在Smolino, Pervoye和Shershenevskoye水库中,微生物-粪便污染指标:大肠菌群细菌和肠球菌之间的关联发挥了重要作用。相反,在切巴库尔湖,芽孢杆菌属的成员是天然的生物修复剂,形成了稳定的冬季社团。水体和采样深度的差异分别反映了冬季微生物群落变异的28.1%和9.8%。对结构变异性的最大贡献(约60%)是由水内过程造成的,这决定了来自不同水域的样品的高度异质性。我们认为,在这种变化中扮演重要角色的是大型工业大都市的高度人为影响。在我们看来,这条研究路线对于解决关键的环境问题是非常有希望的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Variability of the structure of winter microbial communities in Chelyabinsk lakes
Microorganisms form complex and dynamic communities that play a key role in the biogeochemical cycles of lakes. A high level of urbanization is currently a serious threat to bacterial communities and the ecosystem of freshwater bodies. To assess the contribution of anthropogenic load to variations in the structure of winter microbial communities in lakes, microorganisms of four water bodies of Chelyabinsk region were studied for the first time. We used cultural, chromatography-mass spectrometric, and modern methods of statistical data processing (particularly, multivariate exploratory analysis and canonical analysis of correspondences). The research showed that the composition of winter microbial communities in lakes Chebarkul’, Smolino, Pervoye, and Shershenevskoye Reservoir did not differ significantly between the main phyla of microorganisms. The dominant microorganisms were found to be of the Firmicutes phylum and Actinobacteria phylum. The structure of bacterial communities had special features depending on the characteristics of the water body and the sampling depths. Thus, in the lakes Smolino, Pervoye, and Shershenevskoye Reservoir, an important role was played by associations between microorganisms – indicators of fecal contamination: coliform bacteria and Enterococcus. On the contrary, in Chebarkul’ Lake, members of the genus Bacillus, which are natural bioremediators, formed stable winter associations. However, the differences between water bodies and sampling depths reflected 28.1% and 9.8% of the variability of the winter microbial communities, respectively. The largest contribution (about 60%) to the variability of the structure was made by intra-water processes, which determined the high heterogeneity of samples from different water areas. We assume that an important role in this variability was played by the high anthropogenic impact in a large industrial metropolis. In our opinion, this line of research is very promising for addressing key environmental issues.
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来源期刊
CiteScore
2.40
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