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高原湖泊中溶解有机物和细菌群落对人为干扰的响应

Response of dissolved organic matter and bacterial community to anthropogenic disturbances in a plateau lake.

作者信息

Meng Yue, Jiang Xin, Li Yue, Qing Chun, Long Xingyu, Xia Pinhua

机构信息

Guizhou Province Key Laboratory for Information System of Mountainous Areas and Protection of Ecological Environment, Guizhou Normal University, Guiyang, China.

Guizhou Key Laboratory of Plateau Wetland Conservation and Restoration, Guiyang, China.

出版信息

Front Microbiol. 2025 Apr 2;16:1554202. doi: 10.3389/fmicb.2025.1554202. eCollection 2025.

Abstract

INTRODUCTION

Dissolved organic matter (DOM) and bacterial communities play essential roles in lake ecosystem biogeochemical cycles. However, the effects of anthropogenic disturbances on their interactions are not fully understood.

METHODS

This study used UV-vis techniques, excitation-emission matrix parallel factor analysis, and 16S rRNA sequencing to reveal the differences in the structures of fluorescent DOM (FDOM) and bacterial communities in lake sediments and water under different levels of anthropogenic disturbances. Methods such as Spearman correlation analysis, null model, neutral community model and random forest analysis were explored how FDOM composition and bacterial communities respond to anthropogenic disturbances in the sediments and water of the Caohai Lake.

RESULTS

The results indicated that sediment FDOM was sensitive to anthropogenic disturbances, with protein-like substances dominating heavily disturbed areas (69%) and humic-like substances dominating less disturbed areas (63%). However, no significant difference in FDOM composition was found in the water. Similarly, α and β diversity indices for bacterial communities showed no marked variation ( > 0.05) between highly and lightly disturbed areas in both water and sediment samples. Nevertheless, co-occurrence network analysis revealed more negatively correlated links and longer average path length with stronger disturbances. This suggests that while the intensity of anthropogenic disturbance has not yet reached a threshold sufficient to alter the structure of the bacterial community, it might have influenced the types and quantities of resources accessible to the community. Consequently, bacteria might have responded to these changes through competitive interactions, enabling them to resist environmental fluctuations. We found that anthropogenic disturbances were positively linked stochastic processes in the bacterial community assembly and influenced groups that degraded terrestrial humic-like substances. Moreover, the sources and fluorescence components of DOM could have shaped bacterial diversity and community assembly.

DISCUSSION

Overall, these findings illustrate that anthropogenic disturbance affects FDOM composition and its relationship with bacteria, providing valuable insights for managing shallow lake ecosystems.

摘要

引言

溶解有机物(DOM)和细菌群落对湖泊生态系统生物地球化学循环起着至关重要的作用。然而,人为干扰对它们之间相互作用的影响尚未完全明确。

方法

本研究运用紫外可见技术、激发发射矩阵平行因子分析和16S rRNA测序,以揭示不同人为干扰水平下湖泊沉积物和水体中荧光DOM(FDOM)及细菌群落结构的差异。通过Spearman相关分析、零模型、中性群落模型和随机森林分析等方法,探究了草海沉积物和水体中FDOM组成及细菌群落对人为干扰的响应。

结果

结果表明,沉积物FDOM对人为干扰敏感,在受严重干扰区域以类蛋白物质为主(69%),在受较少干扰区域以类腐殖质物质为主(63%)。然而,水体中FDOM组成没有显著差异。同样,细菌群落的α和β多样性指数在水体和沉积物样本的高干扰和低干扰区域之间没有明显变化(>0.05)。尽管如此,共现网络分析显示,干扰越强,负相关联系越多,平均路径长度越长。这表明,虽然人为干扰强度尚未达到足以改变细菌群落结构的阈值,但可能已经影响了群落可利用资源的类型和数量。因此,细菌可能通过竞争相互作用对这些变化做出了响应,使其能够抵御环境波动。我们发现人为干扰与细菌群落组装中的随机过程呈正相关,并影响了降解陆地类腐殖质物质的菌群。此外,DOM的来源和荧光成分可能塑造了细菌多样性和群落组装。

讨论

总体而言,这些发现表明人为干扰会影响FDOM组成及其与细菌的关系,为管理浅水湖泊生态系统提供了有价值的见解。

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