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本文引用的文献

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Marine biofilms on artificial surfaces: structure and dynamics.人工表面上的海洋生物膜:结构与动态
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2
The effect of surface colour on the formation of marine micro and macrofouling communities.表面颜色对海洋微、macrofouling 群落形成的影响。
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Phylogenetic affiliation of SSU rRNA genes generated by massively parallel sequencing: new insights into the freshwater protist diversity.通过大规模平行测序获得的 SSU rRNA 基因的系统发育归属:对淡水原生生物多样性的新认识。
PLoS One. 2013;8(3):e58950. doi: 10.1371/journal.pone.0058950. Epub 2013 Mar 14.
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Mangrove microbial diversity and the impact of trophic contamination.红树林微生物多样性与营养污染的影响。
Mar Pollut Bull. 2013 Jan 15;66(1-2):39-46. doi: 10.1016/j.marpolbul.2012.11.015. Epub 2012 Dec 4.
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Effect of biofilm age on settlement of Mytilus edulis.生物膜老化对贻贝附着的影响。
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6
Pioneer marine biofilms on artificial surfaces including antifouling coatings immersed in two contrasting French Mediterranean coast sites.在法国两个具有代表性的地中海岸站点,包括防污涂层在内的人工表面上的先驱海洋生物膜。
Biofouling. 2012;28(5):453-63. doi: 10.1080/08927014.2012.688957.
7
Fouling release coatings: a nontoxic alternative to biocidal antifouling coatings.防污释放涂层:杀生型防污涂层的无毒替代品。
Chem Rev. 2012 Aug 8;112(8):4347-90. doi: 10.1021/cr200350v. Epub 2012 May 11.
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Unraveling assembly of stream biofilm communities.解析流水生物膜群落的组装过程。
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The influence of biofilms on skin friction drag.生物膜对摩擦阻力的影响。
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10
Molecular characterization of putative biocorroding microbiota with a novel niche detection of Epsilon- and Zetaproteobacteria in Pacific Ocean coastal seawaters.太平洋沿海水域中具有新型小生境的 Epsilon- 和 Zetaproteobacteria 的假定生物腐蚀性微生物群落的分子特征。
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防污涂料对定殖生物膜的丰度和群落结构均有影响:地中海西北部的一个案例研究。

Antifouling coatings influence both abundance and community structure of colonizing biofilms: a case study in the Northwestern Mediterranean Sea.

作者信息

Camps Mercedes, Barani Aude, Gregori Gérald, Bouchez Agnès, Le Berre Brigitte, Bressy Christine, Blache Yves, Briand Jean-François

机构信息

Université de Toulon, MAPIEM-EA 4223, La Garde, France.

Aix Marseille Université, CNRS/INSU, IRD, Mediterranean Institute of Oceanography, UM 110, Marseille, France.

出版信息

Appl Environ Microbiol. 2014 Aug;80(16):4821-31. doi: 10.1128/AEM.00948-14. Epub 2014 Jun 6.

DOI:10.1128/AEM.00948-14
PMID:24907329
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4135756/
Abstract

When immersed in seawater, substrates are rapidly colonized by both micro- and macroorganisms. This process is responsible for important economic and ecological prejudices, particularly when related to ship hulls or aquaculture nets. Commercial antifouling coatings are supposed to reduce biofouling, i.e., micro- and macrofoulers. In this study, biofilms that primarily settled on seven different coatings (polyvinyl chloride [PVC], a fouling release coating [FRC], and five self-polishing copolymer coatings [SPC], including four commercial ones) were quantitatively studied, after 1 month of immersion in summer in the Toulon Bay (Northwestern Mediterranean Sea, France), by using flow cytometry (FCM), microscopy, and denaturing gradient gel electrophoresis. FCM was used after a pretreatment to separate cells from the biofilm matrix, in order to determine densities of heterotrophic bacteria, picocyanobacteria, and pico- and nanoeukaryotes on these coatings. Among diatoms, the only microphytobenthic class identified by microscopy, Licmophora, Navicula, and Nitzschia were determined to be the dominant taxa. Overall, biocide-free coatings showed higher densities than all other coatings, except for one biocidal coating, whatever the group of microorganisms. Heterotrophic bacteria always showed the highest densities, and diatoms showed the lowest, but the relative abundances of these groups varied depending on the coating. In particular, the copper-free SPC failed to prevent diatom settlement, whereas the pyrithione-free SPC exhibited high picocyanobacterial density. These results highlight the interest in FCM for antifouling coating assessment as well as specific selection among microbial communities by antifouling coatings.

摘要

当浸入海水中时,基质会迅速被微生物和大型生物定殖。这一过程会造成重大的经济和生态损害,尤其是与船体或水产养殖网相关时。商业防污涂料应能减少生物污损,即微生物和大型污损生物。在本研究中,通过流式细胞术(FCM)、显微镜检查和变性梯度凝胶电泳,对主要附着在七种不同涂料(聚氯乙烯[PVC]、一种防污释放涂料[FRC]和五种自抛光共聚物涂料[SPC],包括四种商业涂料)上的生物膜进行了定量研究。这些生物膜是在法国土伦湾(地中海西北部)夏季浸泡1个月后进行研究的。在预处理后使用FCM将细胞与生物膜基质分离,以确定这些涂料上异养细菌、微微型蓝细菌以及微微型和微型真核生物的密度。在硅藻中,通过显微镜鉴定出的唯一微型底栖植物类群,确定Licmophora、舟形藻属和菱形藻属为优势分类群。总体而言,无论微生物类别如何,除一种含杀菌剂涂料外,无杀菌剂涂料的密度均高于所有其他涂料。异养细菌的密度始终最高,硅藻的密度最低,但这些类群的相对丰度因涂料而异。特别是,无铜的SPC未能阻止硅藻附着,而无吡啶硫酮的SPC表现出较高的微微型蓝细菌密度。这些结果凸显了FCM在防污涂料评估中的作用,以及防污涂料对微生物群落的特定选择作用。