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Review of Microfluidic Photobioreactor Technology for Metabolic Engineering and Synthetic Biology of Cyanobacteria and Microalgae

机译:蓝藻和微藻类代谢工程和合成生物学的微流体光生物反应器技术综述。

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摘要

One goal of metabolic engineering and synthetic biology for cyanobacteria and microalgae is to engineer strains that can optimally produce biofuels and commodity chemicals. However, the current workflow is slow and labor intensive with respect to assembly of genetic parts and characterization of production yields because of the slow growth rates of these organisms. Here, we review recent progress in the microfluidic photobioreactors and identify opportunities and unmet needs in metabolic engineering and synthetic biology. Because of the unprecedented experimental resolution down to the single cell level, long-term real-time monitoring capability, and high throughput with low cost, microfluidic photobioreactor technology will be an indispensible tool to speed up the development process, advance fundamental knowledge, and realize the full potential of metabolic engineering and synthetic biology for cyanobacteria and microalgae.
机译:蓝藻和微藻类的代谢工程和合成生物学的目标之一是设计能够最佳生产生物燃料和商品化学品的菌株。但是,由于这些生物体的缓慢生长,在遗传部分的组装和产量表征方面,当前的工作流程缓慢且劳动强度大。在这里,我们回顾了微流体光生物反应器的最新进展,并确定了代谢工程和合成生物学的机会和未满足的需求。由于空前的实验分辨率低至单细胞水平,长期的实时监控能力以及高成本且低成本,因此微流体光生物反应器技术将成为加速开发过程,推进基础知识并实现的不可缺少的工具。蓝藻和微藻类的代谢工程和合成生物学的全部潜力。

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