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Microbiome Analysis of Biofilms of Silver Nanoparticle-Dispersed Silane-Based Coated Carbon Steel Using a Next-Generation Sequencing Technique

机译:使用下一代测序技术进行银纳米粒子分散硅烷基涂层碳钢生物膜的微生物组分析

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摘要

Previously, we demonstrated that silver nanoparticle-dispersed silane-based coating could inhibit biofilm formation in conditions where seawater was used as a bacterial source and circulated in a closed laboratory biofilm reactor. However, it is still unclear whether the microbiome of a biofilm of silver nanoparticle-dispersed silane-based coating samples (Ag) differs from that of a biofilm of non-dispersed silane-based coating samples (Non-Ag). This study aimed to perform a microbiome analysis of the biofilms grown on the aforementioned coatings using a next-generation sequencing (NGS) technique. For this, a biofilm formation test was conducted by allowing seawater to flow through a closed laboratory biofilm reactor; subsequently, DNAs extracted from the biofilms of Ag and Non-Ag were used to prepare 16S rRNA amplicon libraries to analyze the microbiomes by NGS. Results of the operational taxonomy unit indicated that the biofilms of Non-Ag and Ag comprised one and no phyla of archaea, respectively, whereas Proteobacteria was the dominant phylum for both biofilms. Additionally, in both biofilms, Non-Ag and Ag, Marinomonas was the primary bacterial group involved in early stage biofilm formation, whereas Anaerospora was primarily involved in late-stage biofilm formation. These results indicate that silver nanoparticles will be unrelated to the bacterial composition of biofilms on the surface of silane-based coatings, while they control biofilm formation there.
机译:以前,我们证明,银纳米粒子分散的硅烷基涂层可以在海水用作细菌源并在闭合的实验室生物膜反应器中循环的条件下抑制生物膜形成。然而,尚不清楚银纳米粒子分散的硅烷基涂层样品(Ag)的生物膜的微生物组不同于非分散的硅烷基涂层样品(非Ag)的生物膜的微生物。该研究旨在使用下一代测序(NGS)技术对上述涂层上生长的生物膜进行微生物组分析。为此,通过允许海水流过闭合的实验室生物膜反应器来进行生物膜形成试验;随后,使用从Ag和非Ag的生物膜中提取的DNA制备16S rRNA扩增子文库以通过NGS分析微生物。操作分类单位的结果表明,非AG和AG的生物膜分别包括古代古代的一个和缺口,而噬菌体是Biofilms的主要字段。此外,在生物膜,非AG和AG两种中,Marinomonas是涉及早期生物膜形成的原发性细菌组,而Anaerospora主要参与晚期生物膜形成。这些结果表明,银纳米颗粒与基于硅烷涂层表面的生物膜的细菌组合物无关,同时在那里控制生物膜形成。

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