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Molecular Genetic Improvements of Cyanobacteria to Enhance the Industrial Potential of the Microbe: A Review

机译:蓝细菌的分子遗传学改进,以增强微生物的工业潜力:审查。

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The rapid increase in worldwide population coupled with the increasing demand for fossil fuels has led to an increased urgency to develop sustainable sources of energy and chemicals from renewable resources. Using microorganisms to produce high-value chemicals and next-generation biofuels is one sustainable option and is the focus of much current research. Cyanobacteria are ideal platform organisms for chemical and biofuel production because they can be genetically engineered to produce a broad range of products directly from CO2, H2O, and sunlight, and require minimal nutrient inputs. The purpose of this review is to provide an overview on advances that have been or could be made to improve strains of cyanobacteria for industrial purposes. First, the benefits of using cyanobacteria as a platform for chemical and biofuel production are discussed. Next, an overview of cyanobacterial strain improvements by genetic engineering is provided. Finally, mutagenesis techniques to improve the industrial potential of cyanobacteria are described. Along with providing an overview on various areas of research that are currently being investigated to improve the industrial potential of cyanobacteria, this review aims to elucidate potential targets for future research involving cyanobacteria as an industrial microorganism. (C) 2016 American Institute of Chemical Engineers
机译:全球人口的迅速增加,加上对化石燃料的需求不断增加,导致从可再生资源开发可持续能源和化学品的紧迫性越来越高。使用微生物生产高价值的化学品和下一代生物燃料是一种可持续的选择,并且是当前许多研究的重点。蓝细菌是用于化学和生物燃料生产的理想平台生物,因为可以对其进行基因工程改造,以直接从CO2,H2O和阳光中产生多种产品,并且需要最少的营养输入。这篇综述的目的是概述为工业目的改善蓝细菌菌株已经或可能取得的进展。首先,讨论了使用蓝细菌作为化学和生物燃料生产平台的好处。接下来,提供了通过基因工程改善蓝细菌菌株的概述。最后,描述了诱变技术以改善蓝细菌的工业潜力。除了概述当前正在研究的各种研究领域以提高蓝细菌的工业潜力外,本综述还旨在阐明将蓝细菌作为工业微生物的未来研究的潜在目标。 (C)2016美国化学工程师学会

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