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扩展植物乳杆菌的遗传可编程性。

Expanding the genetic programmability of Lactiplantibacillus plantarum.

机构信息

Bioprogrammable Materials, INM-Leibniz Institute for New Materials, Saarbrücken, Germany.

出版信息

Microb Biotechnol. 2024 Jan;17(1):e14335. doi: 10.1111/1751-7915.14335. Epub 2023 Aug 28.

Abstract

Lactobacilli are ubiquitous in nature and symbiotically provide health benefits for countless organisms including humans, animals and plants. They are vital for the fermented food industry and are being extensively explored for healthcare applications. For all these reasons, there is considerable interest in enhancing and controlling their capabilities through the engineering of genetic modules and circuits. One of the most robust and reliable microbial chassis for these synthetic biology applications is the widely used Lactiplantibacillus plantarum species. However, the genetic toolkit needed to advance its applicability remains poorly equipped. This mini-review highlights the genetic parts that have been discovered to achieve food-grade recombinant protein production and speculates on lessons learned from these studies for L. plantarum engineering. Furthermore, strategies to identify, create and optimize genetic parts for real-time regulation of gene expression and enhancement of biosafety are also suggested.

摘要

乳杆菌在自然界中无处不在,与无数生物共生,为其提供健康益处,包括人类、动物和植物。它们是发酵食品工业的重要组成部分,并且正在被广泛探索用于医疗保健应用。基于所有这些原因,人们对通过工程遗传模块和电路来增强和控制其能力产生了浓厚的兴趣。对于这些合成生物学应用来说,最强大和可靠的微生物底盘之一是广泛使用的植物乳杆菌。然而,为了推进其适用性而需要的遗传工具包仍然装备不足。这篇小型综述强调了已经发现的用于实现食品级重组蛋白生产的遗传元件,并推测了这些研究对植物乳杆菌工程的经验教训。此外,还提出了用于实时调控基因表达和增强生物安全性的遗传元件的鉴定、创建和优化策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d249/10832526/a5a002aeef2d/MBT2-17-e14335-g005.jpg

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