Eirini Schoina, Laetitia Marchand, A. Zykwinska, C. Sinquin, Françoise Leroi, C. Delbarre-Ladrat, George-John E. Nychas
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引用次数: 0
摘要
变色栉水母(Tenacibaculum discolor)会在海水养殖生产水槽中形成生物膜,并被确定为栉水母病的致病菌之一,这种细菌性疾病会给海水养殖生产造成重大损失。本研究评估了变色 T. 菌株 FMCC B487 的生物膜特征。在微型化实验中研究了细胞生长和生物膜的形成与发展,以评估不同水平的环境因素温度和盐度以及水产养殖孵化场中可能存在的单糖的影响。结果表明,该菌株能够在环境温度至高温以及盐度超过 20 克/升的条件下生长并形成强大的生物膜。甘露糖是对变色褐藻菌株 FMCC B487 生物膜影响最大的单糖。通过比色法、荧光测定法以及电泳、气相色谱法、高效尺寸排阻色谱法和多角度光散射检测器分析,研究了变色褐藻菌株 FMCC B487 产生的浮游细胞提取物、生物膜提取物和细胞外聚合物物质(EPS)的组成,发现其中蛋白质和脂质占主导地位,而高分子量多糖不存在。这些信息可作为考虑针对病原体 T. discolor 的抗生物膜策略的依据。
A Thorough Insight into the Biofilm Properties of Potential Fish Pathogen Tenacibaculum discolor Strain FMCC B487
Tenacibaculum discolor develops biofilm in marine aquaculture production tanks and is identified as one of the causative agents of tenacibaculosis, a bacterial disease that causes significant losses in marine aquaculture production. In this study, the biofilm characteristics of T. discolor strain FMCC B487 were evaluated. Cell growth and biofilm formation and development were studied in miniaturized assays to assess the effect of different levels of environmental factors temperature and salinity, as well as the presence of monosaccharides potentially found in aquaculture hatcheries. The ability of the strain to grow and develop strong biofilms in ambient to high temperatures and at salinities above 20 g/L was shown. Mannose was the monosaccharide with the most prominent impact on the T. discolor strain FMCC B487 biofilm. The composition of planktonic cell extract, biofilm extracts, and extracellular polymeric substances (EPS) produced by T. discolor strain FMCC B487 were investigated by means of colorimetric and fluorometric assays as well as analyses by electrophoresis, gas chromatography, and high-performance size-exclusion chromatography coupled with a multiangle light scattering detector, revealing the dominance of proteins and lipids and the absence of high-molecular-weight polysaccharides. This information may serve as a basis for considering anti-biofilm strategies against the pathogen T. discolor.