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Bacteria-invertebrate interactions as an asset in developing new antifouling coatings for man-made aquatic surfaces

机译:细菌无脊椎动物相互作用作为制定人造水上表面的新型防污涂料的资产

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摘要

Economic losses can result from biofouling establishment on man-made structures. Macrofouling causes damage to artificial substrates, which justifies the need for its control. However, the antifouling coatings employed nowadays are typically not safe for the environment. Microfouling can affect macrofouling colonization, and thus represents a potential target for alternative antifouling control. From both ecological and economical points of view, information on the ecology and interactions between microand macrofouling are crucial to develop successful and safe control strategies, which will prevent biofouling development on man-made structures while preserving water quality and the safety of nontarget organisms. This study presents a metabarcoding analysis of biofilm-associated marine bacteria (16S-rRNA-gene) and fungi (ITS-region), with the aim to understand invertebrate settlement over time on hard substrates exposed to natural condition (Control) and two treatments (Antimicrobials and Antifouling Painted). Biofouling composition changed with exposure time (up to 12 days) and showed differences among Control and Antimicrobials and Painted treatments. Antimicrobial treatment influenced more the biofouling composition than traditional antifouling paint (Cu20-based). Both treatments caused microbial resistance. Macrofouling establishment was strongly influenced by Gram-negative heterotrophic bacteria (mostly Proteobacteria and Bacteroidetes). Nevertheless, each macrofouling taxon settled in response to a specific biofilm bacterial composition, although other factors can also affect the biofouling community as the condition of the substrate. We suggest that proper friendly antifouling technologies should be focused on inhibiting bacterial biofilm adhesion. (C) 2020 Published by Elsevier Ltd.
机译:经济损失可能是对人造结构的生物污垢建立。 Macrofouling对人造基材造成损坏,这证明了对其控制的需求。然而,现在使用的防污涂层通常对环境不安全。微孔可以影响大型罗络殖民化,因此代表替代防污控制的潜在目标。从生态和经济的观点来看,有关微安大罗伯格之间生态和相互作用的信息至关重要,以发展成功和安全的控制策略,这将防止人造结构的生物化发展,同时保留水质和非易胃生物的安全性。本研究提出了生物膜相关的海洋细菌(16S-RRNA-Gene)和真菌(其区域)的常规分析,目的是了解在暴露于自然条件(对照)和两种治疗的硬质基质上随着时间的推移无脊椎动物沉降(抗微生物和防污涂漆)。生物污染组合物随着暴露时间(最多12天)而变化,并在对照和抗微生物和涂料治疗中显示出差异。抗微生物治疗比传统的防污涂料更多的生物污染组合物(Cu20为基础)。这两种治疗都会导致微生物抗性。大型古罗风的建立受到革兰氏阴性异养细菌的强烈影响(大多是植物和菌株)。然而,每个大型巨大的分类因子响应于特定的生物膜细菌组合物而沉降,尽管其他因素也可以影响生物污染群落作为基材的状况。我们建议适当的友好的防污技术,应侧重于抑制细菌生物膜粘附。 (c)2020由elestvier有限公司发布

著录项

  • 来源
    《Environmental Pollution》 |2021年第2期|116284.1-116284.12|共12页
  • 作者单位

    Univ Fed Rio Grande FURG Inst Oceanog Lab Microcontaminantes Organ & Ecotoxicol Aquat Caixa Postal 474 BR-96203900 Rio Grande RS Brazil|Programa Posgrad Oceanol PPGO Programa Nacl Posdoutorado Coordenacao Aperfeicoa Rio Grande RS Brazil|Conselho Nacl Desenvolvimento Cient & Tecnol PDI Programa Posdoutorado Empresarial Regenera Mol Mar Porto Alegre RS Brazil;

    Univ Fed Rio Grande FURG Inst Oceanog Lab Zooplancton Av Italia Km 8 Caixa Postal 474 BR-96203900 Rio Grande RS Brazil;

    Univ Fed Rio Grande FURG Inst Oceanog Lab Microcontaminantes Organ & Ecotoxicol Aquat Caixa Postal 474 BR-96203900 Rio Grande RS Brazil;

    Univ Helsinki Dept Microbiol Viikinkaari 9 Helsinki 00014 Finland|Univ Helsinki Helsinki Inst Sustainabil Sci Yliopistonkatu 3 Helsinki 00014 Finland;

    Univ Fed Rio Grande do Sul UFRGS Fac Farm Lab Biofilmes & Diversidade Microbiana Av Ipiranga 2752 BR-90610000 Porto Alegre RS Brazil|Univ Fed Rio Grande do Sul UFRGS Ctr Biotecnol Av Ipiranga 2752 BR-90610000 Porto Alegre RS Brazil;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Antifouling pollution; Biofouling; Hard substrates; Pelagic-benthic coupling; Zooplankton;

    机译:防污污染;生物纺纱;硬基板;Pelagic-Benthic耦合;浮游动物;
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