Zhu Junhan, Huang Jim Junhui, Tham Cliff, Zhou Weibiao, Li Dan
Department of Food Science and Technology, National University of Singapore, Science Drive 2, Singapore 117542, Republic of Singapore.
Agri-tech & Food Innovation Department, Singapore Food Agency, 7 International Business Park, Singapore 609919, Republic of Singapore.
Lett Appl Microbiol. 2024 Dec 2;77(12). doi: 10.1093/lambio/ovae133.
This research explored various concentrations of sodium dodecyl sulfate (SDS) and citric acid (CA), both individually and in combination, to assess their effectiveness against Salmonella biofilms in hydroponic agriculture systems. Results demonstrated that a combined sanitizer of 0.1% SDS (1.0 ± 0.1 log reduction when used alone) and 1% CA (1.4 ± 0.3 log reduction when used alone) was highly effective in eliminating Salmonella biofilms from polyvinyl chloride pipes in hydroponic systems, reducing biofilm levels to below detectable limits (>5.6 log reduction when used in combination). Confocal laser scanning microscopy showed significantly greater proportions of damaged/dead cells in the 0.1% SDS- and 1% CA-treated samples (82.6 ± 2.6%) than in the single treatment with 0.1% SDS (26.1 ± 3.0%) and 1% CA (31.6 ± 2.5%) (P < 0.05). Fourier transform infrared spectroscopy together with analysis of proteins and polysaccharides in the extracellular polymeric substances of the biofilm matrices showed that the treatment not only affected bacterial viability but also significantly reduced the biomass of the biofilm. In summary, this research provides a foundation for the development of improved cleaning protocols in hydroponic systems, promoting safer and more sustainable farming practices.
本研究探讨了不同浓度的十二烷基硫酸钠(SDS)和柠檬酸(CA),单独使用以及联合使用时,评估它们对水培农业系统中沙门氏菌生物膜的有效性。结果表明,0.1% SDS(单独使用时减少1.0±0.1个对数级)和1% CA(单独使用时减少1.4±0.3个对数级)的联合消毒剂在消除水培系统中聚氯乙烯管道上的沙门氏菌生物膜方面非常有效,将生物膜水平降低到可检测限度以下(联合使用时减少>5.6个对数级)。共聚焦激光扫描显微镜显示,0.1% SDS和1% CA处理的样品中受损/死亡细胞的比例(82.6±2.6%)明显高于单独使用0.1% SDS(26.1±3.0%)和1% CA(31.6±2.5%)的处理(P<0.05)。傅里叶变换红外光谱以及对生物膜基质细胞外聚合物中蛋白质和多糖的分析表明,该处理不仅影响细菌活力,还显著降低了生物膜的生物量。总之,本研究为水培系统中改进清洁方案的开发提供了基础,促进了更安全、更可持续的种植实践。