Library of Marine Samples, Korea Institute of Ocean Science & Technology, Geoje 53201, Republic of Korea.
Risk Assessment Research Center, Korea Institute of Ocean Science & Technology, Geoje 53201, Republic of Korea; Department of Ocean Science, University of Science and Technology, Daejeon 34113, Republic of Korea.
Mar Pollut Bull. 2021 Nov;172:112895. doi: 10.1016/j.marpolbul.2021.112895. Epub 2021 Aug 26.
To determine how bacterial communities succeed after the initial attachment of the bacterial biofilm adhesion using 16S rDNA meta-barcoding in plates coated with copper-based anti-fouling (AF) and non-AF (control) coatings as well as ambient seawater, coated plates were submerged in a marine environment in situ. Alteromonas genovensis (Gammaproteobacteria) in AF coating and Pacificibacter sp. (Alphaproteobacteria) in the control plate were initially abundant. In the AF coating, the abundance of A. genovensis decreased rapidly, whereas that of genus Phaeobacter (Alphaproteobacteria), Serratia (Gammaproteobacteria) and Cupriavidus (Betaproteobacteria) increased. Bacterial community in the control plate had a strong connection to pathogenic Vibrio spp. associated with the growth of invertebrates. Therefore, in the in situ AF coating experiment, A. genovensis accumulation was initially and intensively increased, and the bacteria responded to chemical antagonism, induced the proliferation of specific biofilm bacteria and influenced the interactions and recruitment of additional bacterial communities.
为了确定在使用涂有铜基防污(AF)和非 AF(对照)涂层的平板中的 16S rDNA 元条形码进行初始细菌生物膜附着后,细菌群落是如何成功建立的,将涂有平板的涂层浸入海洋环境中进行原位实验。在 AF 涂层中,最初丰度较高的是弧菌属(Gammaproteobacteria)的海栖交替单胞菌(Alteromonas genovensis)和对照组平板中的太平洋弧菌属(Alphaproteobacteria)的太平洋杆菌(Pacificibacter sp.)。在 AF 涂层中,海栖交替单胞菌的丰度迅速下降,而噬菌杆菌属(Alphaproteobacteria)、沙雷氏菌属(Gammaproteobacteria)和考克氏菌属(Betaproteobacteria)的丰度增加。对照组平板中的细菌群落与与无脊椎动物生长相关的致病性弧菌属(Vibrio spp.)有很强的联系。因此,在原位 AF 涂层实验中,海栖交替单胞菌最初且密集地积累,细菌对化学拮抗作用做出反应,诱导特定生物膜细菌的增殖,并影响其他细菌群落的相互作用和招募。