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Updated: Aug 15, 2025

The Cultivation, Growth, and Viability of Lactic Acid Bacteria: A Quality Control Perspective
Published on: June 16, 2022
Recent advances in genetic tools for engineering probiotic lactic acid bacteria
Kanganwiro Mugwanda1,2, Saltiel Hamese1,3, Winschau F Van Zyl1,2
1Synthetic Nanobiotechnology and Biomachines, Centre for Synthetic Biology and Precision Medicine, Nextgeneration Health Cluster, CSIR Pretoria, South Africa.
Synthetic biology advances enable engineering lactic acid bacteria (LAB) for human health applications. This review covers genetic engineering tools like CRISPR/Cas9 for developing next-generation probiotic LAB.
Area of Science:
- Synthetic biology
- Microbiology
- Biotechnology
Background:
- Synthetic biology is rapidly advancing with diverse applications.
- Exploiting the link between microorganisms, biologics, and human health is a key emerging area.
- Lactic acid bacteria (LAB) are suitable chassis organisms for genetic engineering in therapeutic and industrial contexts.
Purpose of the Study:
- To comprehensively review synthetic biology techniques for engineering probiotic LAB strains.
- To discuss heterologous protein expression systems for LAB engineering.
- To highlight the potential of combining computational biology and genetic engineering for next-generation LAB.
Main Methods:
- Review of synthetic biology techniques including CRISPR/Cas9 genome editing, homologous recombination, and recombineering.
- Discussion of heterologous protein expression systems in LAB.
- Exploration of computational biology applications in genetic engineering.
Main Results:
- Various synthetic biology tools are available for engineering LAB.
- Effective engineering of LAB requires careful selection of tools and chassis.
- Potential exists for developing advanced LAB strains for industrial scale-up and biologics production.
Conclusions:
- Genetic engineering of LAB using synthetic biology tools offers significant potential for biomedical applications.
- The Lactochassis project aims to develop next-generation synthetic LAB for biomedical use.
- Combining computational and genetic engineering approaches can overcome current limitations in LAB development.
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