Systems Biology Lab, A-LIFE/AIMMS, Vrije Universiteit Amsterdam, De Boelelaan 1085, 1081HV Amsterdam, the Netherlands.
Department of Civil and Environmental Engineering, 15 Vassar St, Cambridge, MA 02139, USA.
Curr Opin Biotechnol. 2024 Jun;87:103102. doi: 10.1016/j.copbio.2024.103102. Epub 2024 Mar 10.
Microbial consortia are important for the fermentation of foods. They bring combined functionalities to the fermented product, but stability and product consistency of fermentations with complex consortia can be hard to control. Some of these consortia, such as water- and milk-kefir and kombucha, grow as multispecies aggregates or biofilms, in which micro-organisms taking part in a fermentation cascade are spatially organized. The spatial organization of micro-organisms in these aggregates can impact what metabolic interactions are realized in the consortia, ultimately affecting the growth dynamics and evolution of microbes. A better understanding of such spatially structured communities is of interest from the perspective of microbial ecology and biotechnology, as multispecies aggregates can be used to valorize energy-rich substrates, such as plant-based substrates or side streams from the food industry.
微生物群落对于食品发酵非常重要。它们为发酵产品带来了综合功能,但具有复杂群落的发酵的稳定性和产品一致性可能难以控制。这些群落中的一些,如水和牛奶开菲尔和康普茶,作为多物种聚集体或生物膜生长,其中参与发酵级联的微生物在空间上被组织在一起。这些聚集体中微生物的空间组织可以影响在群落中实现的代谢相互作用,最终影响微生物的生长动态和进化。从微生物生态学和生物技术的角度来看,更好地了解这种空间结构的群落是很有意义的,因为多物种聚集体可以用来增值富含能量的底物,如植物性底物或食品工业的副产物。