Impacts of aquaculture on nitrogen cycling and microbial community dynamics in coastal tidal flats

IF 7.7 2区 环境科学与生态学 Q1 ENVIRONMENTAL SCIENCES Environmental Research Pub Date : 2025-04-01 Epub Date: 2025-01-27 DOI:10.1016/j.envres.2025.120973
Nuo Chen , Linqiong Wang , Zhe Zhao , Mengjie Zhu , Yi Li
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Abstract

The expansion of aquaculture areas has encroached upon vast areas of coastal wetlands and introduced excessive nitrogen inputs, disrupting microbial communities and contributing to various environmental issues. However, investigations on how aquaculture affects microbial communities and nitrogen metabolism mechanisms in coastal tidal flats remain scarce. Hence, we explored the composition, diversity, and assembly processes of nitrogen-cycling (N-cycling) microbial communities in tidal flats in Jiangsu using metagenomic assembly methods. Our study further delved into the seasonal variations of these microbial characteristics to better explore the effects of seasonal changes in aquaculture areas on microbial community. Nitrogen metabolism-related processes and functional genes were identified through the KEGG and NCyc databases. The results revealed significant seasonal variation in the relative abundance and composition of microbial communities. Higher diversity was observed in winter, while the co-occurrence network of microbial communities was more complex in summer. Pseudomonadota emerged as the most abundant phylum in the N-cycling community. Furthermore, pH and NO3-N were identified as the primary factors influencing bacterial community composition, whereas NO2-N was more strongly associated with the N-cycling community. Regarding the nitrogen metabolism processes, nitrogen mineralization and nitrification were predominant in the tidal flat regions. NO2-N and NO3-N exhibited significant effects on several N-cycling functional genes (e.g., nirB, hao, and narG). Finally, neutral and null modeling analyses indicated that bacterial communities were predominantly shaped by stochastic processes, whereas N-cycling communities were largely driven by deterministic processes. These findings highlighted the significant role that aquaculture pollution plays in shaping the N-cycling communities in tidal flats. This underscored the importance of understanding microbial community dynamics and nitrogen metabolism in tidal flats to improve environmental management in coastal aquaculture areas.
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水产养殖对滨海滩涂氮循环和微生物群落动态的影响
水产养殖区的扩大侵占了大片沿海湿地,引入了过量的氮输入,破坏了微生物群落,造成了各种环境问题。然而,关于水产养殖如何影响沿海潮滩微生物群落和氮代谢机制的研究仍然很少。为此,我们采用宏基因组组装方法对江苏滩涂氮循环微生物群落的组成、多样性和组装过程进行了研究。我们的研究进一步深入了这些微生物特征的季节变化,以更好地探索季节变化对水产养殖区微生物群落的影响。通过KEGG和NCyc数据库鉴定了氮代谢相关过程和功能基因。结果表明,微生物群落的相对丰度和组成具有显著的季节变化。冬季微生物群落多样性较高,夏季微生物群落共现网络较为复杂。假单胞菌门是氮循环群落中最丰富的门。此外,pH和NO3-N是影响细菌群落组成的主要因素,而NO2-N与n循环群落的关系更为密切。在氮代谢过程中,潮滩区以氮矿化和硝化作用为主。NO2-N和NO3-N对几种氮循环功能基因(如nirB、hao和narG)有显著影响。最后,中性和零模型分析表明,细菌群落主要由随机过程形成,而n -循环群落主要由确定性过程驱动。这些发现强调了水产养殖污染在形成潮滩n循环群落中所起的重要作用。这强调了了解潮滩微生物群落动态和氮代谢对改善沿海水产养殖区环境管理的重要性。
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来源期刊
Environmental Research
Environmental Research 环境科学-公共卫生、环境卫生与职业卫生
CiteScore
12.60
自引率
8.40%
发文量
2480
审稿时长
4.7 months
期刊介绍: The Environmental Research journal presents a broad range of interdisciplinary research, focused on addressing worldwide environmental concerns and featuring innovative findings. Our publication strives to explore relevant anthropogenic issues across various environmental sectors, showcasing practical applications in real-life settings.
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