Recent advances in genome annotation and synthetic biology for the development of microbial chassis

J Genet Eng Biotechnol. 2023 Dec 1;21(1):156. doi: 10.1186/s43141-023-00598-3.

Abstract

This article provides an overview of microbial host selection, synthetic biology, genome annotation, metabolic modeling, and computational methods for predicting gene essentiality for developing a microbial chassis. This article focuses on lactic acid bacteria (LAB) as a microbial chassis and strategies for genome annotation of the LAB genome. As a case study, Lactococcus lactis is chosen based on its well-established therapeutic applications such as probiotics and oral vaccine development. In this article, we have delineated the strategies for genome annotations of lactic acid bacteria. These strategies also provide insights into streamlining genome reduction without compromising the functionality of the chassis and the potential for minimal genome chassis development. These insights underscore the potential for the development of efficient and sustainable synthetic biology systems using streamlined microbial chassis with minimal genomes.

Keywords: Gene essentiality; Genome annotation; Genome reduction; Lactic acid bacteria (LAB); Lactococcus lactis; Microbial chassis; Synthetic biology.

Publication types

  • Review