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首页> 外文期刊>Marine Environmental Research >The impact of artificial surfaces on marine bacterial and eukaryotic biofouling assemblages: A high-throughput sequencing analysis
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The impact of artificial surfaces on marine bacterial and eukaryotic biofouling assemblages: A high-throughput sequencing analysis

机译:人造表面对海洋细菌和真核生物污染组合的影响:高通量测序分析

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摘要

Vessel hulls and underwater infrastructure can be severely impacted by marine biofouling. Knowledge on which abiotic conditions of artificial structures influence bacterial and eukaryotic community composition is limited. In this study, settlement plates with differing surface texture, orientation and copper-based anti-fouling coatings were deployed in a marina. After three months, biofouling samples were collected and bacterial and eukaryotic communities characterised using DNA metabarcoding. The copper anti-fouling coating treatments incurred the most significant compositional changes (p = 0.001) within both domains. Bacterial diversity decreased, with Gammaproteobacteria becoming the dominant phylum. In contrast, protist diversity increased as well as opportunist nematodes and bryozoans; urochordates and molluscs became less abundant. Network analyses displayed complex relationships on untreated plates, while revealing a simpler, but disturbed and unstable community composition on the anti-fouling coated plates. These networks of copper treatments displayed opportunist taxa that appeared as key organisms in structuring the bacterial and eukaryotic communities.
机译:海洋生物污损会严重影响船体和水下基础设施。关于人工结构的非生物条件会影响细菌和真核生物群落组成的知识是有限的。在这项研究中,在码头上部署了具有不同表面纹理,方向和铜基防污涂层的沉降板。三个月后,收集了生物污损样品,并使用DNA元条形码对细菌和真核生物群落进行了表征。铜防污涂层处理在两个区域内引起了最显着的组成变化(p <= 0.001)。细菌多样性下降,γ-变形杆菌成为显性门。相比之下,原生生物的多样性增加了,线虫和线虫的机会主义增加了; urochordates和软体动物变得较少。网络分析在未经处理的板上显示出复杂的关系,同时在防污涂层板上显示出更简单但受干扰和不稳定的群落组成。这些铜处理网络显示出机会主义分类群,它们是构成细菌和真核生物群落的关键生物。

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