Del Rey Yumi Chokyu, Kitzinger Katharina, Lund Marie Braad, Schramm Andreas, Meyer Rikke Louise, Wagner Michael, Schlafer Sebastian
Section for Oral Ecology, Cariology, Department of Dentistry and Oral Health, Aarhus University, Vennelyst Boulevard 9, 8000, Aarhus C, Denmark.
Centre for Microbiology and Environmental Systems Science, University of Vienna, Djerassiplatz 1, 1030, Vienna, Austria.
Microbiome. 2024 Dec 20;12(1):266. doi: 10.1186/s40168-024-01977-9.
Correlative structural and chemical imaging of biofilms allows for the combined analysis of microbial identity and metabolism at the microscale. Here, we developed pH-FISH, a method that combines pH ratiometry with fluorescence in situ hybridization (FISH) in structurally intact biofilms for the coupled investigation of microbial acid metabolism and biofilm composition. Careful biofilm handling and modified sample preparation procedures for FISH allowed preservation of the three-dimensional biofilm structure throughout all processing and imaging steps. We then employed pH-FISH to investigate the relationship between local biofilm pH and the distribution of acid-producing (streptococci) and acid-consuming (Veillonella spp.) bacteria in dental biofilms from healthy subjects and caries-active patients.
The relative abundance of streptococci correlated with low biofilm pH at the field-of-view level, while the opposite trend was observed for Veillonella spp. These results suggest that clusters of streptococci contribute to the formation of acidic pockets inside dental biofilms, whereas Veillonella spp. may have a protective role against biofilm acidification.
pH-FISH combines microscale mapping of biofilm pH in real time with structural imaging of the local microbial architecture, and is a powerful method to explore the interplay between biofilm composition and metabolism in complex biological systems. Video Abstract.
生物膜的相关结构和化学成像能够在微观尺度上对微生物身份和代谢进行联合分析。在此,我们开发了pH-FISH,这是一种将pH比率测定法与荧光原位杂交(FISH)相结合的方法,用于在结构完整的生物膜中对微生物酸代谢和生物膜组成进行联合研究。对生物膜进行小心处理以及针对FISH改进样品制备程序,使得在所有处理和成像步骤中都能保留生物膜的三维结构。然后,我们运用pH-FISH来研究健康受试者和龋病活跃患者牙菌斑中局部生物膜pH与产酸菌(链球菌)和耗酸菌(韦荣球菌属)分布之间的关系。
在视野水平上,链球菌的相对丰度与生物膜低pH相关,而韦荣球菌属则呈现相反趋势。这些结果表明,链球菌簇有助于在牙菌斑内形成酸性微区,而韦荣球菌属可能对生物膜酸化具有保护作用。
pH-FISH将生物膜pH的微观尺度实时映射与局部微生物结构的成像相结合,是探索复杂生物系统中生物膜组成与代谢之间相互作用的有力方法。视频摘要。