Characterization of bacterial community dynamics dominated by salinity in lakes of the Inner Mongolian Plateau, China.

IF 4 2区 生物学 Q2 MICROBIOLOGY
Frontiers in Microbiology Pub Date : 2024-08-21 eCollection Date: 2024-01-01 DOI:10.3389/fmicb.2024.1448919
Guo Xin, Shi Xiaohong, Shi Yujiao, Li Wenbao, Wang Yanjun, Cui Zhimou, Lauri Arvolab
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Abstract

Microorganisms in lakes are sensitive to salinity fluctuations. Despite extensive prior research on bacterial communities, our understanding of their characteristics and assembly mechanisms in lakes, especially in desert lakes with different salinities. To address this issue, we collected three samples from freshwater lakes, six from brackish lakes, and five from salt lakes in the Badanjilin Desert. The 16S rRNA gene sequencing was applied to investigate the bacterial interactions with rising salinity, community coexistence patterns, and assembly mechanisms. Our findings suggested that the increased lake salinity significantly reduces the bacterial community diversity and enhanced the community differentiation. Significant variations were observed in the contribution of biomarkers from Cyanobacteria, Chloroflexi, and Halobacterota to the composition of the lake bacterial communities. The bacterial communities in the salt lakes exhibited a higher susceptibility to salinity limitations than those in the freshwater and brackish lakes. In addition, the null modeling analyses confirmed the quantitative biases in the stochastic assembly processes of bacterial communities across freshwater, brackish, and saline lakes. With the increasing lake salinity, the significance of undominated and diffusion limitation decreased slightly, and the influence of homogenizing dispersal on community assembly increased. However, the stochasticity remained the dominant process across all lakes in the Badanjilin Desert. The analysis of co-occurring networks revealed that the rising salinity reduced the complexity of bacterial network structures and altered the interspecific interactions, resulting in the increased interspecies collaboration with increasing salinity levels. Under the influence of salinity stress, the key taxon Cyanobacteria in freshwater lakes (Schizothrix_LEGE_07164) was replaced by Proteobacteria (Thalassobaculum and Polycyclovorans) in brackish lakes, and Thermotogota (SC103) in salt lakes. The results indicated the symbiotic patterns of bacterial communities across varying salinity gradients in lakes and offer insights into potential mechanisms of community aggregation, thereby enhancing our understanding of bacterial distribution in response to salinity changes.

中国内蒙古高原湖泊受盐度影响的细菌群落动态特征。
湖泊中的微生物对盐度波动非常敏感。尽管之前对细菌群落进行了大量研究,但我们对其在湖泊中,特别是在不同盐度的沙漠湖泊中的特征和组装机制的了解还很有限。针对这一问题,我们在巴丹吉林沙漠采集了 3 个淡水湖样本、6 个咸水湖样本和 5 个盐湖样本。我们采用 16S rRNA 基因测序法研究了细菌与盐度升高的相互作用、群落共存模式和组装机制。研究结果表明,湖泊盐度的升高显著降低了细菌群落的多样性,并增强了群落的分化。在湖泊细菌群落组成中,来自蓝藻、绿藻和卤细菌群的生物标志物的贡献率存在显著差异。与淡水湖和咸水湖相比,盐湖细菌群落对盐度限制的敏感性更高。此外,空模型分析证实了淡水湖、咸水湖和盐湖细菌群落随机组装过程的定量偏差。随着湖泊盐度的增加,无优势限制和扩散限制的重要性略有下降,而均质化扩散对群落组装的影响则有所增加。然而,随机性仍然是巴丹吉林沙漠所有湖泊的主导过程。对共生网络的分析表明,盐度的升高降低了细菌网络结构的复杂性,改变了种间相互作用,导致种间协作随着盐度的升高而增加。在盐度胁迫的影响下,淡水湖中的关键类群蓝藻(Schizothrix_LEG_07164)被咸水湖中的蛋白细菌(Thalassobaculum 和 Polycyclovorans)和盐湖中的热菌群(SC103)所取代。研究结果表明了不同盐度梯度湖泊中细菌群落的共生模式,并深入揭示了群落聚集的潜在机制,从而加深了我们对细菌分布应对盐度变化的理解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
7.70
自引率
9.60%
发文量
4837
审稿时长
14 weeks
期刊介绍: Frontiers in Microbiology is a leading journal in its field, publishing rigorously peer-reviewed research across the entire spectrum of microbiology. Field Chief Editor Martin G. Klotz at Washington State University is supported by an outstanding Editorial Board of international researchers. This multidisciplinary open-access journal is at the forefront of disseminating and communicating scientific knowledge and impactful discoveries to researchers, academics, clinicians and the public worldwide.
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