Hayta Elif N, Rickert Carolin A, Lieleg Oliver
Munich School of Bioengineering and Department of Mechanical Engineering, Technical University of Munich, 85748, Garching, Germany.
Center for Protein Assemblies (CPA), Technical University of Munich, Ernst-Otto-Fischer Straße 8, 85748, Garching, Germany.
Biofilm. 2021 Feb 6;3:100044. doi: 10.1016/j.bioflm.2021.100044. eCollection 2021 Dec.
Most biofilm research has so far focused on investigating biofilms generated by single bacterial strains. However, such single-species biofilms are rare in nature where bacteria typically coexist with other microorganisms. Although, from a biological view, the possible interactions occurring between different bacteria are well studied, little is known about what determines the material properties of a multi-species biofilm. Here, we ask how the co-cultivation of two strains affects certain important biofilm properties such as surface topography and wetting behavior. We find that, even though each daughter colony typically resembles one of the parent colonies in terms of morphology and wetting, it nevertheless exhibits a significantly different surface topography. Yet, this difference is only detectable via a quantitative metrological analysis of the biofilm surface. Furthermore, we show that this difference is due to the presence of bacteria belonging to the 'other' parent strain, which does not dominate the biofilm features. The findings presented here may pinpoint new strategies for how biofilms with hybrid properties could be generated from two different bacterial strains. In such engineered biofilms, it might be possible to combine desired properties from two strains by co-cultivation.
到目前为止,大多数生物膜研究都集中在调查由单一细菌菌株产生的生物膜。然而,这种单物种生物膜在自然界中很少见,因为细菌通常与其他微生物共存。虽然从生物学角度来看,不同细菌之间可能发生的相互作用已得到充分研究,但对于决定多物种生物膜材料特性的因素却知之甚少。在这里,我们探讨两种菌株的共培养如何影响某些重要的生物膜特性,如表面形貌和润湿性。我们发现,尽管每个子菌落通常在形态和润湿性方面类似于其中一个亲代菌落,但其表面形貌却有显著差异。然而,这种差异只有通过对生物膜表面进行定量计量分析才能检测到。此外,我们表明这种差异是由于存在属于“另一个”亲代菌株的细菌,该菌株并不主导生物膜特征。这里提出的研究结果可能为如何从两种不同细菌菌株产生具有混合特性的生物膜指明新策略。在这种工程化生物膜中,通过共培养有可能将两种菌株的所需特性结合起来。