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Micro-environments and mass transffer phenomena in biofilms studied with microsensors

机译:用微传感器研究生物膜中的微环境和传质现象

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摘要

Direct observations on chemical micro-environment and microbial composition in biofilms are rare. The combination of microsensor and molecular techniques is highly useful for studies on the microbial ecology of biofilms. We shortly describe some applications of microsensors to study mass transfer phenomena and microbial processes in biofilms. It has recent been recognized that biofilms are not always flat layers of cells, but can consist of complex structures allowing liquid flow. Thus the classical view, that transport in biofilms is diffusional, is challenged. In laboratory grown biofilms the effect of convection on mass transfer was demonstrated. The microsensor technique has improved, so that direct in situ measurements in living biofilms are possible. By direct measurements of liquid flow with microsensors we show that in biofilms grown in bioreactors heterogeneity and convectional transport must also be taken into account. For the description of the microbial population we use molecular techniques, such as in situ hybridisation with 16S rRNA-targeted oligonucleotide probes. In a nitrifying-denitrifying biofilm we found a complex nitrifying community consisting of members of the genera Nitrosomonas, Nitrosospira, Nitrobacter and Nitrospira. Their occurrence was correlated with nitrification activity as determined by microsensor measurements.
机译:对生物膜中化学微环境和微生物成分的直接观察很少见。微传感器和分子技术的结合对于研究生物膜的微生物生态学非常有用。我们简短地描述了微传感器在生物膜中研究传质现象和微生物过程的一些应用。最近已经认识到,生物膜并不总是细胞的平坦层,而是可以由允许液体流动的复杂结构组成。因此,经典观点认为生物膜中的运输是扩散性的。在实验室生长的生物膜中,证实了对流对传质的影响。微传感器技术已得到改进,因此可以在活生物膜中直接进行原位测量。通过使用微传感器直接测量液体流量,我们发现在生物反应器中生长的生物膜中,还必须考虑异质性和对流传输。对于微生物种群的描述,我们使用分子技术,例如与16S rRNA靶向的寡核苷酸探针进行原位杂交。在硝化-反硝化生物膜中,我们发现了一个复杂的硝化群落,由亚硝化单胞菌,亚硝基螺菌,硝化细菌和硝化螺菌属成员组成。它们的发生与通过微传感器测量确定的硝化活性相关。

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