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分析冰冻期湖泊多介质生境中细菌群落结构、功能变化及组装机制。

Analysis of bacterial community structure, functional variation, and assembly mechanisms in multi-media habitats of lakes during the frozen period.

机构信息

College of Water Conservancy and Civil Engineering, Inner Mongolia Agricultural University, Hohhot 010018, China.

College of Water Conservancy and Civil Engineering, Inner Mongolia Agricultural University, Hohhot 010018, China; Inner Mongolia Autonomous Region Key Laboratory of Water Resources Protection and Utilization, Hohhot 010018, China; Collaborative Innovation Center for Integrated Management of Water Resources and Water Environment in Inner Mongolia Section of the Yellow River Basin, Hohhot 010018, China.

出版信息

Ecotoxicol Environ Saf. 2024 Oct 1;284:116903. doi: 10.1016/j.ecoenv.2024.116903. Epub 2024 Aug 27.

Abstract

Ice, water, and sediment represent three interconnected habitats in lake ecosystems, and bacteria are crucial for maintaining ecosystem equilibrium and elemental cycling across these habitats. However, the differential characteristics and driving mechanisms of bacterial community structures in the ice, water, and sediments of seasonally frozen lakes remain unclear. In this study, high-throughput sequencing technology was used to analyze and compare the structure, function, network characteristics, and assembly mechanisms of bacterial communities in the ice, water, and sediment of Wuliangsuhai, a typical cold region in Inner Mongolia. The results showed that the bacterial communities in the ice and water phases had similar diversity and composition, with Proteobacteria, Bacteroidota, Actinobacteria, Campilobacterota, and Cyanobacteria as dominant phyla. The bacterial communities in sediments displayed significant differences from ice and water, with Chloroflexi, Proteobacteria, Firmicutes, Desulfobacterota, and Acidobacteriota being the dominant phyla. Notably, the bacterial communities in water exhibited higher spatial variability in their distribution than those in ice and sediment. This study also revealed that during the frozen period, the bacterial community species in the ice, water, and sediment media were dominated by cooperative relationships. Community assembly was primarily influenced by stochastic processes, with dispersal limitation and drift identified as the two most significant factors within this process. However, heterogeneous selection also played a significant role in the community composition. Furthermore, functions related to nitrogen, phosphorus, sulfur, carbon, and hydrogen cycling vary among bacterial communities in ice, water, and sediment. These findings elucidate the intrinsic mechanisms driving variability in bacterial community structure and changes in water quality across different media phases (ice, water, and sediment) in cold-zone lakes during the freezing period, offering new insights for water environmental protection and ecological restoration efforts in such environments.

摘要

冰、水和沉积物代表了湖泊生态系统中三个相互关联的栖息地,而细菌对于维持这些栖息地的生态平衡和元素循环至关重要。然而,季节性冻结湖泊的冰、水和沉积物中细菌群落结构的差异特征和驱动机制尚不清楚。在这项研究中,使用高通量测序技术分析和比较了内蒙古典型寒冷地区乌梁素海冰、水和沉积物中细菌群落的结构、功能、网络特征和组装机制。结果表明,冰相和水相中的细菌群落具有相似的多样性和组成,优势门为变形菌门、拟杆菌门、放线菌门、Campilobacterota 和蓝藻门。沉积物中的细菌群落与冰和水有显著差异,优势门为绿弯菌门、变形菌门、厚壁菌门、脱硫杆菌门和酸杆菌门。值得注意的是,水相中的细菌群落分布的空间变异性高于冰相和沉积物。本研究还揭示了在冻结期,冰、水和沉积物中细菌群落的物种主要以合作关系为主。群落组装主要受随机过程的影响,其中扩散限制和漂移被确定为该过程中两个最重要的因素。然而,异质选择也在群落组成中发挥了重要作用。此外,与氮、磷、硫、碳和氢循环相关的功能在冰、水和沉积物中的细菌群落中存在差异。这些发现阐明了在冻结期冷区湖泊不同介质(冰、水和沉积物)中细菌群落结构变化和水质变化的内在机制,为该环境中的水环境保护和生态恢复工作提供了新的见解。

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