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Effect of bacterial biofilms formed on fouling-release coatings from natural seawater and Cobetia marina, on the adhesion of two marine algae

机译:天然海水和Cobetia滨海的污垢释放涂层上形成的细菌生物膜对两种海藻粘附的影响

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摘要

Previous studies have shown that bacterial biofilms formed from natural seawater (NSW) enhance the settlement of spores of the green alga Ulva linza, while single-species biofilms may enhance or reduce settlement, or have no effect at all. However, the effect of biofilms on the adhesion strength of algae, and how that may be influenced by coating/ surface properties, is not known. In this study, the effect of biofilms formed from natural seawater and the marine bacterium Cobetia marina, on the settlement and the adhesion strength of spores and sporelings of the macroalga U. linza and the diatom Navicula incerta, was evaluated on Intersleek? 700, Intersleek? 900, poly(dimethylsiloxane) and glass. The settlement and adhesion strength of these algae were strongly influenced by biofilms and their nature. Biofilms formed from NSW enhanced the settlement (attachment) of both algae on all the surfaces while the effect of biofilms formed from C. marina varied with the coating type. The adhesion strength of spores and sporelings of U. linza and diatoms was reduced on all the surfaces biofilmed with C. marina, while adhesion strength on biofilms formed from NSW was dependent on the alga (and on its stage of development in the case of U. linza), and coating type. The results illustrate the complexity of the relationships between fouling algae and bacterial biofilms and suggest the need for caution to avoid over-generalisation.
机译:先前的研究表明,由天然海水(NSW)形成的细菌生物膜增强了绿藻Ulva linza孢子的沉降,而单一物种的生物膜可能增强或减少了沉降,或根本没有作用。然而,生物膜对藻类粘附强度的影响以及如何受到涂层/表面特性的影响尚不清楚。在这项研究中,在Intersleek上评估了由天然海水和海洋细菌Cobetia marina形成的生物膜对Macroalga U. linza和硅藻Navicula incerta的孢子和孢子的沉降和粘附强度的影响。 700,Intersleek? 900,聚二甲基硅氧烷和玻璃。这些藻类的沉降和粘附强度受到生物膜及其性质的强烈影响。新南威尔士州形成的生物膜增强了两种藻类在所有表面上的沉降(附着),而滨海梭菌形成的生物膜的效果随涂层类型而变化。在滨海衣藻生物被膜上的所有表面上,U。linza和硅藻的孢子和孢子的粘附强度都降低了,而新南威尔士州形成的生物膜上的粘附强度则取决于藻类(在U的情况下取决于其发育阶段) 。linza)和涂层类型。结果表明,污垢藻类和细菌生物膜之间关系的复杂性,并建议需要注意避免过度泛化。

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