Shenzhen Public Platform for Screening & Application of Marine Microbial Resources, Shenzhen International Graduate School, Tsinghua University, Shenzhen 518055, China.
The Department of Earth System Science, Tsinghua University, Beijing 100084, China.
Mar Drugs. 2020 Sep 22;18(9):484. doi: 10.3390/md18090484.
Quorum sensing inhibitors (QSIs) have been proven to be an innovative approach to interfering with biofilm formation, since this process is regulated by QS signals. However, most studies have focused on single-species biofilm formation, whereas studies of the effects of signal interference on the development of multispecies biofilm, especially in the natural environment, are still lacking. Here we develop and evaluate the anti-biofilm capability of a new QSI (rhodamine isothiocyanate analogue, RIA) in natural seawater. During the experiment, biofilm characteristics, microbial communities/functions and network interactions were monitored at 36, 80, and 180 h, respectively. The results showed that the biomass and 3D structure of the biofilm were significantly different in the presence of the QSI. The expression of genes involved in extracellular polysaccharide synthesis was also downregulated in the QSI-treated group. Dramatic differences in microbial composition, β-diversity and functions between the RIA-treated group and the control group were also observed, especially in the early stage of biofilm development. Furthermore, co-occurrence model analysis showed that RIA reduced the complexity of the microbial network. This study demonstrates that rhodamine isothiocyanate analogue is an efficient QS inhibitor and has potential applications in controlling biofouling caused by multispecies biofilm, especially in the early stage of biofouling formation.
群体感应抑制剂 (QSIs) 已被证明是一种干扰生物膜形成的创新方法,因为该过程受 QS 信号调节。然而,大多数研究都集中在单一物种生物膜形成上,而关于信号干扰对多物种生物膜发展的影响的研究,特别是在自然环境中,仍然缺乏。在这里,我们在天然海水中开发和评估了一种新的 QSI(若丹明异硫氰酸盐类似物,RIA)的抗生物膜能力。在实验过程中,分别在 36、80 和 180 h 监测生物膜特性、微生物群落/功能和网络相互作用。结果表明,在存在 QSI 的情况下,生物膜的生物量和 3D 结构有显著差异。在 QSI 处理组中,参与细胞外多糖合成的基因表达也下调。在 RIA 处理组和对照组之间,微生物组成、β多样性和功能也存在明显差异,特别是在生物膜发展的早期阶段。此外,共现模型分析表明,RIA 降低了微生物网络的复杂性。本研究表明,若丹明异硫氰酸盐类似物是一种有效的 QS 抑制剂,在控制多物种生物膜引起的生物污垢方面具有潜在的应用价值,特别是在生物污垢形成的早期阶段。