Molino Paul J, Childs Samantha, Eason Hubbard Maeve R, Carey Janet M, Burgman Mark A, Wetherbee Richard
School of Botany, The University of Melbourne, Parkville, Victoria, Australia.
Biofouling. 2009;25(2):149-62. doi: 10.1080/08927010802592917.
The role played by bacteria during the pioneering stages of colonisation on marine coatings was investigated over three distinct seasons in both tropical and temperate environments. Novel methods were developed to facilitate the study of the adhered bacterial population on the test coatings in their native, hydrated state. The approach eliminated destructive sample preparation techniques, including sample dehydration and/or removal from the substratum surface prior to analysis. Bacterial colonisation during initial biofilm formation was evaluated on two antifouling paints, Intersmooth 360 and Super Yacht 800, and a fouling release coating, Intersleek 700. Bacterial colonisation was quantified on all three coating surfaces. Intersleek 700 displayed the quickest colonisation by bacteria, resulting in major modification of the substratum surface within 2-4 days following immersion in the ocean. Whilst fouling accumulated more quickly on Intersleek 700, by 16 days all three coatings were fouled significantly. Bacterial fouling was correlated to both location and season, with fouling occurring at a more rapid rate at the Cairns location, as well as during the summer months, when higher water temperatures were recorded. Successful colonisation of all coatings by bacteria soon after immersion modifies the characteristics of the surfaces at the hull/water interface, and subsequent settlement by higher biofouling organisms must be moderated by these modified surfaces.
在热带和温带环境的三个不同季节里,研究了细菌在海洋涂层定殖初期所起的作用。开发了新方法,以促进对处于天然水合状态的测试涂层上附着细菌群体的研究。该方法摒弃了破坏性的样品制备技术,包括在分析前进行样品脱水和/或从基质表面移除样品。在两种防污漆(Intersmooth 360和Super Yacht 800)以及一种防污释放涂层(Intersleek 700)上评估了初始生物膜形成过程中的细菌定殖情况。对所有三种涂层表面的细菌定殖进行了量化。Intersleek 700显示出细菌定殖最快,在浸入海洋后2 - 4天内基质表面就发生了重大变化。虽然污垢在Intersleek 700上积累得更快,但到第16天,所有三种涂层都被严重污染。细菌污染与地点和季节都相关,在凯恩斯地区以及夏季水温较高时,污染发生得更快。浸入后不久,所有涂层都成功被细菌定殖,这改变了船体/水界面处表面的特性,随后更高等生物污损生物的附着必定会受到这些改变后的表面的影响。