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Differential Colonization Dynamics of Marine Biofilm-Forming Eukaryotic Microbes on Different Protective Coating Materials

机译:不同防护涂料上的海洋生物膜形成真核微生物的微分殖民殖民动态

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摘要

In this study, the actual anti-biofouling (AF) efficacy of three protective coatings, including a chlorinated rubber-based coating (C0) and two polydimethylsiloxane (PDMS)-based coatings (P0 and PF), were estimated via the static field exposure assays. The surface properties of these protective coatings, including surface wettability and morphology features, were characterized using the static water contact angle (WCA) and scanning electron microscope (SEM). The colonization and succession dynamics of the early-adherent biofilm-forming eukaryotic microbial communities occupied on these protective coatings were explored using the Single-stranded Conformation Polymorphism (SSCP) technique. The field data clearly revealed that coating P0 and PF performed better in the long-term static submergence, as compared with the C0 surface, while coating PF showed excellent AF efficacy in the field. Fingerprinting analysis suggested that the diversity, abundance, the clustering patterns, and colonization dynamics of the early-colonized eukaryotic microbes were significantly perturbed by these protective coatings, particularly by the PF surfaces. These differential AF efficacy and perturbation effects would be largely ascribed to the differences in the wettability and surface nanostructures between the C0, P0 and PF surfaces, as evidenced by WCA and SEM analysis.
机译:在本研究中,通过静态场暴露估计三种保护涂层的实际抗生物纺粘(AF)疗效,包括氯化橡胶基涂层(CO)和两种聚二甲基硅氧烷(P0和PF),估计测定。这些保护涂层的表面性质,包括表面润湿性和形态特征,用静态水接触角(WCA)和扫描电子显微镜(SEM)表征。利用单链构象多态性(SSCP)技术探索了在这些保护涂层上占用的早期粘附生物膜形成真核微生物群体的殖民化和连续动态。现场数据清楚地显示,与C0表面相比,在长期静态浸润性中涂布P0和PF,而涂层PF在该领域显示出优异的AF功效。指纹识别分析表明,早期殖民化真核微生物的多样性,丰度,聚类模式和结肠化动态由这些保护涂层显着扰乱,特别是通过PF表面。如WCA和SEM分析所证明的,这些差异AF功效和扰动效果在很大程度上归因于CO,P0和PF表面之间的润湿性和表面纳米结构的差异。

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