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Mevalonate production from ethanol by direct conversion through acetyl-CoA using recombinant Pseudomonas putida, a novel biocatalyst for terpenoid production

机译:使用重组假单胞菌(Pseudomonas putida),一种新型的萜类生物催化剂,通过乙酰辅酶A直接转化,从乙醇生产甲羟戊酸

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摘要

BackgroundBioethanol is one of the most representative eco-friendly fuels developed to replace the non-renewable fossil fuels and is the most successful commercially available bio-conversion technology till date. With the availability of inexpensive carbon sources, such as cellulosic biomass, bioethanol production has become cheaper and easier to perform, which can facilitate the development of methods for converting ethanol into higher value-added biochemicals. In this study, a bioconversion process using Pseudomonas putida as a biocatalyst was established, wherein ethanol was converted to mevalonate. Since ethanol can be converted directly to acetyl-CoA, bypassing its conversion to pyruvate, there is a possibility that ethanol can be converted to mevalonate without producing pyruvate-derived by-products. Furthermore, P. putida seems to be highly resistant to the toxicity caused by terpenoids, and thus can be useful in conducting terpenoid production research.
机译:背景技术生物乙醇是最有代表性的环保燃料之一,可替代不可再生的化石燃料,并且是迄今为止最成功的商业化生物转化技术。随着廉价碳源(例如纤维素生物质)的可用性,生物乙醇生产变得更便宜且更容易执行,这可以促进开发将乙醇转化为高附加值生物化学物质的方法。在这项研究中,建立了使用恶臭假单胞菌作为生物催化剂的生物转化过程,其中乙醇被转化为甲羟戊酸。由于乙醇可以直接转化为乙酰辅酶A,而无需将其转化为丙酮酸,因此有可能乙醇可以转化为甲羟戊酸而不产生丙酮酸衍生的副产物。此外,恶臭假单胞菌似乎对由萜类化合物引起的毒性具有高度抗性,因此可用于进行萜类化合物的生产研究。

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