Influences of Community Coalescence on the Assembly of Bacterial Communities of the Small-Scale Complex Aquatic System from the Perspective of Bacterial Transmission, Core Taxa, and Co-occurrence Patterns.

IF 3.3 3区 生物学 Q2 ECOLOGY
Huimin Xu, Yi Zhang, Dingyue Fan, Shunlong Meng, Limin Fan, Chao Song, Liping Qiu, Dandan Li, Longxiang Fang, Zhuping Liu, Xuwen Bing
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Abstract

Recirculating aquaculture and aquaponics are considered sustainable aquaculture models playing important roles in animal-derived protein supply. In these aquaculture systems, microorganisms are crucial for the system stability. The community coalescence by mixing substances and microorganisms from various microhabitats under hydraulic forces is important for shaping the bacterial communities in these small-scale complex systems. However, the influences of community coalescence on bacterial communities remain rarely revealed in these systems. In this study, aquaponics (APS) and recirculating aquaculture (RAS) systems were set up to explore the bacterial community coalescence across different microhabitats, including water, fish feces, biofilter biofilms, and plant rhizosphere environment. Our results showed that diversity and compositions varied across different microhabitats in both systems. However, bacterial transmissions across these microhabitats differed between systems. The core microbiome of the RAS and APS were formed under community coalescence with the highest contribution of bacterial taxa derived from the fish feces. Nevertheless, the plant rhizosphere bacterial community also contributed to the core microbiome of the APS. Furthermore, the core taxa showed a higher average degree than the other nodes in the bacterial community networks in all microhabitats except for the plant rhizosphere environment, implying the important roles of core taxa in maintaining these bacterial community networks. Our results provide new insights into the assembly of bacterial communities under community coalescence in the artificial aquatic ecosystems comprising complex microhabitats, which is vital for developing microbial solutions for regulating the microbial communities to improve system performance in the future.

从细菌传播、核心类群和共生模式的角度看群落凝聚对小规模复杂水生系统细菌群落组合的影响。
循环水养殖和鱼菜共生被认为是可持续的水产养殖模式,在动物源蛋白质供应方面发挥着重要作用。在这些水产养殖系统中,微生物对系统的稳定性至关重要。在水力作用下,来自不同微生境的物质和微生物混合形成群落凝聚,这对这些小规模复杂系统中细菌群落的形成非常重要。然而,在这些系统中,群落凝聚对细菌群落的影响仍然很少被揭示。本研究建立了鱼菜共生(APS)和循环水养殖(RAS)系统,以探索细菌群落在不同微生境(包括水、鱼类粪便、生物滤池生物膜和植物根圈环境)中的凝聚情况。我们的研究结果表明,这两个系统中不同微生境的多样性和组成各不相同。然而,细菌在这些微生境中的传播方式在不同系统中也有所不同。RAS 和 APS 的核心微生物群是在群落凝聚的情况下形成的,其中来自鱼类粪便的细菌类群贡献率最高。不过,植物根圈细菌群落也对亚太植被保护区的核心微生物组做出了贡献。此外,在除植物根圈环境之外的所有微生境中,核心类群在细菌群落网络中的平均程度都高于其他节点,这意味着核心类群在维持这些细菌群落网络中发挥着重要作用。我们的研究结果为了解由复杂微生境组成的人工水生生态系统中群落凝聚条件下细菌群落的组装提供了新的视角,这对未来开发微生物解决方案以调节微生物群落从而提高系统性能至关重要。
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来源期刊
Microbial Ecology
Microbial Ecology 生物-海洋与淡水生物学
CiteScore
6.90
自引率
2.80%
发文量
212
审稿时长
3-8 weeks
期刊介绍: The journal Microbial Ecology was founded more than 50 years ago by Dr. Ralph Mitchell, Gordon McKay Professor of Applied Biology at Harvard University in Cambridge, MA. The journal has evolved to become a premier location for the presentation of manuscripts that represent advances in the field of microbial ecology. The journal has become a dedicated international forum for the presentation of high-quality scientific investigations of how microorganisms interact with their environment, with each other and with their hosts. Microbial Ecology offers articles of original research in full paper and note formats, as well as brief reviews and topical position papers.
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