Costa Angela M, Mergulhão Filipe J, Briandet Romain, Azevedo Nuno F
LEPABE, Department of Chemical Engineering, Faculty of Engineering, University of Porto, Porto, Portugal.
i3S - Instituto de Investigação e Inovação em Saúde, University of Porto, Portugal.
Future Microbiol. 2017 Sep;12:987-999. doi: 10.2217/fmb-2017-0053. Epub 2017 Jul 26.
Multispecies biofilms represent the dominant mode of life for the vast majority of microorganisms. Bacterial spatial localization in such biostructures governs ecological interactions between different populations and triggers the overall community functions. Here, we discuss the pros and cons of fluorescence-based techniques used to decipher bacterial species patterns in biofilms at single cell level, including fluorescence in situ hybridization and the use of genetically modified bacteria that express fluorescent proteins, reporting the significant improvements of those techniques. The development of tools for spatial and temporal study of multispecies biofilms will allow live imaging and spatial localization of cells in naturally occurring biofilms coupled with metabolic information, increasing insight of microbial community and the relation between its structure and functions.
多物种生物膜是绝大多数微生物的主要生活方式。在这种生物结构中,细菌的空间定位决定了不同种群之间的生态相互作用,并触发整个群落的功能。在这里,我们讨论了用于在单细胞水平解读生物膜中细菌物种模式的基于荧光的技术的优缺点,包括荧光原位杂交以及使用表达荧光蛋白的基因工程细菌,并报告了这些技术的显著改进。用于多物种生物膜时空研究的工具的开发将允许对天然生物膜中的细胞进行实时成像和空间定位,并结合代谢信息,从而增加对微生物群落及其结构与功能之间关系的了解。