Net cage aquaculture alters the co-occurrence network and functions of bacterial communities in offshore areas

IF 3 3区 环境科学与生态学 Q2 ENVIRONMENTAL SCIENCES Marine environmental research Pub Date : 2024-11-26 DOI:10.1016/j.marenvres.2024.106872
Xiaoyan Guan , Zelong Zhao , Jingwei Jiang, Yongjia Pan, Shan Gao, Bai Wang, Zhong Chen, Xuda Wang, Hongjuan Sun, Bing Jiang, Ying Dong, Zunchun Zhou
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Abstract

A better understanding of bacterial communities and the factors that drive them is essential to maintain their functions and services. As an ecosystem closely linked to human activities, the health of offshore aquaculture depends on the diversity and functions of bacteria in its environment. However, little attention has been paid to the vertical interface of the offshore aquaculture areas with shellfish net cages. In this study, high-throughput sequencing was used to analyze bacterial communities in different water layers of a net cage scallop farm in the offshore area of Northeast of China. Based on the results, an increased richness of bacterial communities was observed in the water adjacent to the net cages. Meanwhile, apparently different bacterial community compositions were observed among the water layers, with an enrichment of Cyanobacteria, Bacteroidota, and Firmicutes in the water layers above, parallel to, and below the net cages, respectively. According to the predicted functions, the bacterial communities of the water layers above, parallel to, and below the net cages were identified as phototrophy-, chemoheterotrophy-, and nitrogen respiration-dominated. Furthermore, network analysis revealed a complex but unstable bacterial community in the water layer containing the net cage. Finally, partial least squares path modelling revealed that the net cage aquaculture directly influenced the environmental variables and bacterial richness, which further induced the variations in bacterial community composition, and ultimately affected their ecological functions. These results provide a basic understanding of bacterial communities in net cage scallop farms and highlight the effects of offshore aquaculture on variations in ecological functions.
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网箱养殖改变了近海海域细菌群落共现网络和功能
更好地了解细菌群落和驱动它们的因素对于维持它们的功能和服务至关重要。作为一个与人类活动密切相关的生态系统,近海水产养殖的健康取决于其环境中细菌的多样性和功能。然而,对近岸贝类网箱养殖区的垂直界面研究较少。本研究采用高通量测序技术对东北近海某网箱扇贝养殖场不同水层细菌群落进行了分析。结果表明,在网箱附近的水中,细菌群落的丰富度有所增加。同时,各水层之间的细菌群落组成存在明显差异,蓝藻门、拟杆菌门和厚壁菌门分别富集于网箱上方、平行水层和下方水层。根据预测功能,确定网箱上方、平行和下方水层的细菌群落为光养型、化学异养型和氮呼吸型。此外,网络分析表明,在含有网箱的水层中存在复杂但不稳定的细菌群落。最后,通过偏最小二乘路径建模发现,网箱养殖直接影响了环境变量和细菌丰富度,进而引起了细菌群落组成的变化,最终影响了它们的生态功能。这些结果提供了对网箱扇贝养殖场细菌群落的基本认识,并突出了近海水产养殖对生态功能变化的影响。
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来源期刊
Marine environmental research
Marine environmental research 环境科学-毒理学
CiteScore
5.90
自引率
3.00%
发文量
217
审稿时长
46 days
期刊介绍: Marine Environmental Research publishes original research papers on chemical, physical, and biological interactions in the oceans and coastal waters. The journal serves as a forum for new information on biology, chemistry, and toxicology and syntheses that advance understanding of marine environmental processes. Submission of multidisciplinary studies is encouraged. Studies that utilize experimental approaches to clarify the roles of anthropogenic and natural causes of changes in marine ecosystems are especially welcome, as are those studies that represent new developments of a theoretical or conceptual aspect of marine science. All papers published in this journal are reviewed by qualified peers prior to acceptance and publication. Examples of topics considered to be appropriate for the journal include, but are not limited to, the following: – The extent, persistence, and consequences of change and the recovery from such change in natural marine systems – The biochemical, physiological, and ecological consequences of contaminants to marine organisms and ecosystems – The biogeochemistry of naturally occurring and anthropogenic substances – Models that describe and predict the above processes – Monitoring studies, to the extent that their results provide new information on functional processes – Methodological papers describing improved quantitative techniques for the marine sciences.
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