Laguna Rick, Young Sarah J, Chen Chih-Chin, Ruiz Natividad, Yang Shang-Tian, Tabita F Robert
Department of Microbiology, The Ohio State University, 484 West 12th Avenue, Columbus, OH 43210, USA.
William G. Lowrie Department of Chemical and Biomolecular Engineering, The Ohio State University, 140 West 19th Avenue, Columbus, OH 43210, USA.
Metab Eng Commun. 2014 Dec 23;2:6-12. doi: 10.1016/j.meteno.2014.12.001. eCollection 2015 Dec.
Synthetic biology approaches for the synthesis of value-based products provide interesting and potentially fruitful possibilities for generating a wide variety of useful compounds and biofuels. However, industrial production is hampered by the costs associated with the need to supplement large microbial cultures with expensive but necessary co-inducer compounds and antibiotics that are required for up-regulating synthetic gene expression and maintaining plasmid-borne synthetic genes, respectively. To address these issues, a metabolism-based plasmid addiction system, which relies on lipopolysaccharide biosynthesis and maintenance of cellular redox balance for 1-butanol production; and utilizes an active constitutive promoter, was developed in . Expression of the plasmid is absolutely required for cell viability and 1-butanol production. This system abrogates the need for expensive antibiotics and co-inducer molecules so that plasmid-borne synthetic genes may be expressed at high levels in a cost-effective manner. To illustrate these principles, high level and sustained production of 1-butanol by was demonstrated under different growth conditions and in semi-continuous batch cultures, in the absence of antibiotics and co-inducer molecules.
用于合成基于价值的产品的合成生物学方法为生成各种各样有用的化合物和生物燃料提供了有趣且可能富有成果的可能性。然而,工业生产受到与以下需求相关的成本的阻碍:需要用昂贵但必要的共诱导剂化合物和抗生素来补充大型微生物培养物,这些分别是上调合成基因表达和维持质粒携带的合成基因所必需的。为了解决这些问题,开发了一种基于代谢的质粒成瘾系统,该系统依赖于脂多糖生物合成和维持细胞氧化还原平衡以生产1-丁醇;并利用一个活性组成型启动子。质粒的表达对于细胞活力和1-丁醇生产是绝对必需的。该系统消除了对昂贵抗生素和共诱导剂分子的需求,从而使质粒携带的合成基因能够以具有成本效益的方式高水平表达。为了说明这些原理,在不同生长条件下以及在半连续分批培养中,在没有抗生素和共诱导剂分子的情况下,证明了[具体菌株]能够高水平且持续地生产1-丁醇。