Pei Lei, Schmidt Markus
Biofaction KG, Vienna, Austria.
Front Genet. 2018 Jun 29;9:207. doi: 10.3389/fgene.2018.00207. eCollection 2018.
Research on fast-growing microbes holds promise for many industrial applications, including shortening test and trial times in research and development stages and reducing the operation costs for production. Such microbes can be obtained either by selecting naturally occurring variants or via metabolic engineering approaches, either eliminating 'unnecessary' or adding necessary pathways affecting growth speed in the cell. Here, we review recent research and development of engineered fast-growing strains in industrial biotechology, with a special focus on vaccine production using (synthetic biology) engineered pathogenic strains. We will discuss whether this represents a security concern and whether the industrial biotech sector needs to pay more attention to issues of Gain-of-Function (GoF) while developing and harnessing these fast-growing microbes. We will also shed a light on the use of in-built biosafety circuits as a way to control the propagation of fast-growing strains, including their capacity to survive in the environment. Other possible GoF concerns raised by the publication of research results in this field will be also addressed. In conclusion, judging from the current development from the field, assessing the potential GoF risks on engineered fast-growing microbes does not lead to a clear generalized outcome. We argue that fast growing strains need to be evaluated in combination with their wild type and engineered characteristics, and require always a case-by-case assessment. Monitoring the progress of the field and proactively raising awareness on the GoF issues among the scientists are important for the further development of the field.
对快速生长微生物的研究有望应用于许多工业领域,包括缩短研发阶段的测试和试验时间以及降低生产成本。此类微生物可以通过筛选天然存在的变体或采用代谢工程方法获得,即消除细胞中“不必要的”或添加影响生长速度的必要途径。在此,我们综述了工业生物技术中工程化快速生长菌株的最新研究进展,特别关注使用(合成生物学)工程化致病菌株生产疫苗的情况。我们将讨论这是否构成安全问题,以及工业生物技术领域在开发和利用这些快速生长微生物时是否需要更加关注功能获得(GoF)问题。我们还将探讨使用内置生物安全电路作为控制快速生长菌株传播的一种方式,包括它们在环境中生存的能力。该领域研究成果发表引发的其他可能的功能获得问题也将得到讨论。总之,从该领域目前的发展来看,评估工程化快速生长微生物的潜在功能获得风险并不会得出明确的普遍结论。我们认为,快速生长菌株需要结合其野生型和工程化特征进行评估,并且始终需要逐案评估。监测该领域的进展并积极提高科学家对功能获得问题的认识对于该领域的进一步发展至关重要。