IF 3.9 3区 生物学 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Jian Zou, Yu Guo, Ankai Zhang, Guangyu Shao, Zhenhua Ma, Gang Yu, Chuanxin Qin
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引用次数: 0

摘要

建造人工鱼礁(ARs)是恢复海洋牧场生境、增加和培育渔业资源的有效方法。然而,关于人工鱼礁对细菌群落(BC)的结构、功能和组装模式的影响的研究还很缺乏,而细菌群落在生物地球化学循环中非常重要。本研究通过 16S rRNA 基因测序分析了中国防城港五年自决区域(O-AR)和一年自决区域(N-AR)中附着和自由生活微生物群落的组成、多样性、聚集模式、预测功能以及关键环境因素。蛋白细菌是所有样本中的优势类群,平均相对丰度为 44.48%,其次是类杆菌(17.42%)和蓝藻(15.19%)。O-AR 和 N-AR 的细菌门组成相似,但水体中蓝藻的相对丰度(38.56%)高于 AR 表面(平均 7.40%)。结果显示,O-ARs 和 N-ARs 的香农-维纳多样性指数分别为 5.64 和 5.45。主坐标分析(PCoA)显示了微生物群落中 O-ARs 和 N-ARs 的不同分布。此外,网络分析显示,O-AR 中的细菌群落比 N-AR 中的细菌群落更加复杂和稳定,这表明 5 年 AR 中的微生物群落总体上更加多样和稳定。根据 KEGG 数据库预测,氮代谢、碳代谢和膜运输是微生物的主要功能,占总功能丰度的 29.93%。中性群落模型的结果显示,随机过程(67.2%)主导了生物群落的组装。有趣的是,随着时间的推移,确定性过程在群落聚集中可能越来越重要。此外,空模型显示,分散限制是随机过程中最重要的过程,占总过程的 57.14%。此外,冗余分析(RDA)显示,水文因素明显影响了微生物群落的结构和功能。我们的研究结果表明,人工鱼礁的建造略微促进了微生物群落结构和功能的局部多样性,这表明提高人工鱼礁微生物群落的多样性需要较长的时间。要点:- 人工鱼礁促进了微生物群落的多样性和功能 - 随机过程主导了人工鱼礁微生物群落的组装 - 氮和碳代谢主导了人工鱼礁微生物的功能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Structure and assembly mechanisms of the microbial community on an artificial reef surface, Fangchenggang, China.

The construction of artificial reefs (ARs) is an effective way to restore habitats and increase and breed fishery resources in marine ranches. However, studies on the impacts of ARs on the structure, function, and assembly patterns of the bacterial community (BC), which is important in biogeochemical cycles, are lacking. The compositions, diversities, assembly patterns, predicted functions, and key environmental factors of the attached and free-living microbial communities in five-year ARs (O-ARs) and one-year ARs (N-ARs) in Fangchenggang, China, were analyzed via 16S rRNA gene sequencing. Proteobacteria was the dominant taxon in all the samples, with an average relative abundance of 44.48%, followed by Bacteroidetes (17.42%) and Cyanobacteria (15.19%). The composition of bacterial phyla was similar between O-ARs and N-ARs, but the relative abundance of Cyanobacteria was greater in the water column (38.56%) than on the AR surface (mean of 7.40%). The results revealed that the Shannon‒Wiener diversity indices were 5.64 and 5.45 for O-ARs and N-ARs, respectively. Principal coordinate analysis (PCoA) revealed different distributions of O-ARs and N-ARs in the microbial community. Additionally, network analysis revealed that the bacterial community was more complex and stable in O-ARs than in N-ARs, indicating that the 5-year AR presented a more diverse and stable microbial community overall. The KEGG database was used to predict that nitrogen metabolism, carbon metabolism, and membrane transport were the dominant microbial functions, accounting for 29.93% of the total functional abundances. The results of the neutral community model revealed that stochastic processes (67.2%) dominated the assembly of BCs. Interestingly, deterministic processes may be increasingly important in community aggregation over time. Moreover, a null model revealed that dispersal limitation was the most important process among the stochastic processes, accounting for 57.14% of the total. In addition, redundancy analysis (RDA) revealed that hydrological factors obviously impacted the structure and function of the microbial community. Our results showed that the construction of ARs slightly promotes local diversities in the structure and function of the microbial community, indicating it requires a longer time to enhance the diversity of the microbial community on artificial reefs. KEY POINTS: • Artificial reefs facilitate the diversity and functions of the microbial community • Stochastic processes dominate the assembly of the microbial community in artificial reefs • Nitrogen and carbon metabolism dominate microbial functions in artificial reefs.

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来源期刊
Applied Microbiology and Biotechnology
Applied Microbiology and Biotechnology 工程技术-生物工程与应用微生物
CiteScore
10.00
自引率
4.00%
发文量
535
审稿时长
2 months
期刊介绍: Applied Microbiology and Biotechnology focusses on prokaryotic or eukaryotic cells, relevant enzymes and proteins; applied genetics and molecular biotechnology; genomics and proteomics; applied microbial and cell physiology; environmental biotechnology; process and products and more. The journal welcomes full-length papers and mini-reviews of new and emerging products, processes and technologies.
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