Biotecnología Industrial, Centro de Investigación y Asistencia en Tecnología y Diseño del Estado de Jalisco A.C, Camino Arenero 1227, Col. El Bajío del Arenal, C.P. 45019, Zapopan, Jalisco, Mexico.
Appl Microbiol Biotechnol. 2020 Jul;104(14):6101-6113. doi: 10.1007/s00253-020-10677-x. Epub 2020 May 21.
Microbial physiology is an essential characteristic to be considered in the research and industrial use of microorganisms. Conventionally, the study of microbial physiology has been limited to carrying out qualitative and quantitative analysis of the role of individual components in global cell behaviour at a specific time and under certain growth conditions. In this framework, groups of observable cell physiological variables that remain over time define the physiological states. Recently, with advances in omics techniques, it has been possible to demonstrate that microbial physiology is a dynamic process and that, even with low variations in environmental culture conditions, physiological changes in the cell are provoked. However, the changes cannot be detected at a macroscopic level, and it is not possible to observe these changes in real time. As an alternative to solve this inconvenience, dielectric spectroscopy has been used as a complementary technique to monitor on-line cell physiology variations to avoid long waiting times during measurements. In this review, we discuss the state-of-the-art application of dielectric spectroscopy to unravel the physiological state of microorganisms, its current state, prospects and limitations during fermentation processes. Key points • Summary of the state of the art of several issues of dielectric spectroscopy. • Discussion of correlation among dielectric properties and cell physiological states. • View of the potential use of dielectric spectroscopy in monitoring bioprocesses.
微生物生理学是研究和工业应用微生物时必须考虑的一个重要特征。传统上,微生物生理学的研究仅限于在特定时间和特定生长条件下,对单个成分在全局细胞行为中的作用进行定性和定量分析。在这个框架内,随着时间的推移仍然存在的可观察到的细胞生理变量组定义了生理状态。最近,随着组学技术的进步,已经可以证明微生物生理学是一个动态的过程,即使在环境培养条件的微小变化下,细胞也会发生生理变化。然而,这些变化在宏观水平上无法检测到,也无法实时观察到这些变化。为了解决这个不便,介电谱已被用作一种补充技术来在线监测细胞生理学变化,以避免在测量过程中长时间等待。在这篇综述中,我们讨论了介电谱在揭示微生物生理状态方面的最新应用,以及其在发酵过程中的现状、前景和局限性。关键点 • 对介电光谱的几个问题的最新应用进行总结。 • 讨论介电特性与细胞生理状态之间的相关性。 • 介电光谱在监测生物过程中的潜在用途。