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海洋牧场中细菌、微微型浮游生物和微型浮游生物群落的多样性及跨域网络

Diversity and interdomain networks of bacterial, pico-protist and nano-protist communities in a marine ranching.

作者信息

Zheng Xinyi, Guo Xin, Lin Xiaoqing, Huang Cheng, Huang Lingfeng

机构信息

Key Laboratory of the Coastal and Wetland Ecosystems, College of the Environment and Ecology, Xiamen University, Xiamen, China.

State Key Laboratory of Marine Environmental Science, Fujian Key Laboratory of Marine Carbon Sequestration, College of Ocean and Earth Sciences, Xiamen University, Xiamen, China.

出版信息

Front Microbiol. 2025 Jul 17;16:1620645. doi: 10.3389/fmicb.2025.1620645. eCollection 2025.

Abstract

Microbes of diverse sizes and classifications collaborate to mediate a variety of biogeochemical processes. Although seasonal fluctuations in environmental variables generally influence microbial community dynamics, our comprehension of interdomain microbial co-occurrence patterns remains incomplete. Here, we analyzed high-throughput sequencing datasets of bacteria, pico-protists (0.8-2 μm) and nano-protists (2-20 μm), and their seasonal changes in coastal marine ranching ecosystems. Our findings revealed that, in terms of trophic groups, pico-protists predominantly comprised parasites, whereas nano-protists had a higher proportion of mixotrophs. Microbial communities shifted with seasona, mainly in response to temperature, dissolved oxygen, and salinity. Interdomain microbial networks showed the highest robustness and information transfer efficiency in autumn. This pattern was linked not only to environmental conditions but also to how specialized the protist communities became during that time. The seasonal harvesting of seaweed and stages of fish farming may have contributed to these changes. Our findings suggest that both natural seasonal cycles and mariculture activities together shape how microbial species interact, potentially affecting ecosystem stability and function.

摘要

不同大小和分类的微生物相互协作,介导各种生物地球化学过程。尽管环境变量的季节性波动通常会影响微生物群落动态,但我们对不同域微生物共生模式的理解仍不完整。在此,我们分析了沿海海洋牧场生态系统中细菌、微微型浮游生物(0.8-2微米)和微型浮游生物(2-20微米)的高通量测序数据集及其季节性变化。我们的研究结果表明,就营养类群而言,微微型浮游生物主要由寄生虫组成,而微型浮游生物中混合营养型的比例更高。微生物群落随季节变化,主要是对温度、溶解氧和盐度的响应。不同域微生物网络在秋季表现出最高的稳健性和信息传递效率。这种模式不仅与环境条件有关,还与该时期原生生物群落的专业化程度有关。海藻的季节性收获和养鱼阶段可能促成了这些变化。我们的研究结果表明,自然季节循环和海水养殖活动共同塑造了微生物物种的相互作用方式,可能影响生态系统的稳定性和功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7233/12311637/ebfa7b23678c/fmicb-16-1620645-g001.jpg

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