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人工盐碱水库的沉积物微生物群落

Sediment microbial communities of a technogenic saline-alkaline reservoir.

作者信息

Belkin Pavel, Nechaeva Yulia, Blinov Sergey, Vaganov Sergey, Perevoshchikov Roman, Plotnikova Elena

机构信息

Natural Science Institute, Perm State University, 614068, Bukireva st. 15, Perm, Russia.

Institute of Ecology and Genetics of Microorganisms, Ural Branch of the Russian Аcademy of Sciences, 614081, Goleva st. 13, Perm, Russia.

出版信息

Heliyon. 2024 Jun 26;10(13):e33640. doi: 10.1016/j.heliyon.2024.e33640. eCollection 2024 Jul 15.

Abstract

Various natural saline and alkaline habitats have recently been widely investigated, but knowledge of anthropogenic habitats with more complex environmental conditions is still lacking. This research looks at the structure of microbial communities in 18 bottom sediment samples from a technogenic water body with saline and alkaline composition. The core samples were collected from 2 columns in the western and eastern parts of an artificial water body at the Verkhnekamskoe Salt Deposit (Russia). The microbial community structure was studied using high-throughput 16S rRNA gene sequencing. The bottom sediment composition (salinity, pH, and toxic element content) varies greatly with depth and laterally throughout the study area. The study found a considerable difference in bacterial community diversity between the 2 columns, but no considerable difference was found between the communities at various depths of the studied layers. , and , which are common in both natural and artificial saline and alkaline environments, make up the majority of the bacteria found in the samples. Studies have shown that salinity and total alkalinity are the key factors influencing the formation of microbial communities. and were the two most common genera in the sediment samples. These two genera are known for having high metabolic flexibility, which means they can survive in extreme environments and use a variety of carbon compounds as energy sources. The study also found that is indicator bacteria in samples with the highest concentrations of toxic elements compared to the other samples. A relatively high microbial diversity was discovered in the studied anthropogenic water reservoir despite the extreme alkaline and saline conditions, but it is considerably lower than that found in natural, less alkaline habitats. This research offers insight into the mechanisms behind microbial community formation in complex anthropogenic environments and covers key factors in microbial community distribution.

摘要

最近,各种天然盐碱栖息地受到了广泛研究,但对于环境条件更为复杂的人为栖息地,我们仍知之甚少。本研究着眼于一个具有盐碱成分的技术水体中18个底部沉积物样本的微生物群落结构。岩心样本取自俄罗斯弗尔赫涅卡姆斯科盐矿人工水体东西部的2个柱状体。采用高通量16S rRNA基因测序研究微生物群落结构。在整个研究区域,底部沉积物成分(盐度、pH值和有毒元素含量)随深度和横向变化差异很大。研究发现,两个柱状体之间细菌群落多样性存在显著差异,但在所研究层的不同深度的群落之间未发现显著差异。在天然和人工盐碱环境中都常见的[具体细菌名称1]、[具体细菌名称2]和[具体细菌名称3],构成了样本中发现的细菌的大部分。研究表明,盐度和总碱度是影响微生物群落形成的关键因素。[具体细菌属名1]和[具体细菌属名2]是沉积物样本中最常见的两个属。这两个属以具有高代谢灵活性而闻名,这意味着它们能够在极端环境中生存,并利用多种碳化合物作为能源。研究还发现,与其他样本相比,[具体细菌名称4]是有毒元素浓度最高的样本中的指示细菌。尽管存在极端的碱性和盐性条件,但在所研究的人为水库中发现了相对较高的微生物多样性,不过它远低于在天然、碱性较弱的栖息地中发现的微生物多样性。本研究深入探讨了复杂人为环境中微生物群落形成背后的机制,并涵盖了微生物群落分布的关键因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b8eb/11283119/c90725833f4b/gr1.jpg

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