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(Optochemical) Control of Synthetic Microbial Coculture Interactions on a Microcolony Level.
- Source :
-
ACS synthetic biology [ACS Synth Biol] 2021 Jun 18; Vol. 10 (6), pp. 1308-1319. Date of Electronic Publication: 2021 Jun 02. - Publication Year :
- 2021
-
Abstract
- Synthetic microbial cocultures carry enormous potential for applied biotechnology and are increasingly the subject of fundamental research. So far, most cocultures have been designed and characterized based on bulk cultivations without considering the potentially highly heterogeneous and diverse single-cell behavior. However, an in-depth understanding of cocultures including their interacting single cells is indispensable for the development of novel cultivation approaches and control of cocultures. We present the development, validation, and experimental characterization of an optochemically controllable bacterial coculture on a microcolony level consisting of two Corynebacterium glutamicum strains. Our coculture combines an l-lysine auxotrophic strain together with a l-lysine-producing variant carrying the genetically IPTG-mediated induction of l-lysine production. We implemented two control approaches utilizing IPTG as inducer molecule. First, unmodified IPTG was supplemented to the culture enabling a medium-based control of the production of l-lysine, which serves as the main interacting component. Second, optochemical control was successfully performed by utilizing photocaged IPTG activated by appropriate illumination. Both control strategies were validated studying cellular growth on a microcolony level. The novel microfluidic single-cell cultivation strategies applied in this work can serve as a blueprint to validate cellular control strategies of synthetic mono- and cocultures with single-cell resolution at defined environmental conditions.
- Subjects :
- Biotechnology methods
Cell Proliferation genetics
Coculture Techniques methods
Corynebacterium glutamicum classification
Culture Media chemistry
Fluorescence
Isopropyl Thiogalactoside genetics
Isopropyl Thiogalactoside metabolism
Lysine biosynthesis
Microbial Interactions genetics
Microfluidic Analytical Techniques methods
Microorganisms, Genetically-Modified
Cell Proliferation radiation effects
Corynebacterium glutamicum genetics
Corynebacterium glutamicum metabolism
Metabolic Engineering methods
Microbial Interactions radiation effects
Ultraviolet Rays
Subjects
Details
- Language :
- English
- ISSN :
- 2161-5063
- Volume :
- 10
- Issue :
- 6
- Database :
- MEDLINE
- Journal :
- ACS synthetic biology
- Publication Type :
- Academic Journal
- Accession number :
- 34075749
- Full Text :
- https://doi.org/10.1021/acssynbio.0c00382