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A Novel Bioelectronic Reporter System in Living Cells Tested with a Synthetic Biological Comparator

机译:用合成生物比较器测试的活细胞新型生物电子报告系统

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As the fields of biotechnology and synthetic biology expand, cheap and sensitive tools are needed to measure increasingly complicated genetic circuits. In order to bypass some drawbacks of optical fluorescent reporting systems, we have designed and created a co-culture microbial fuel cell (MFC) system for electronic reporting. This system leverages the syntrophic growth of Escheriachia. coli (E. coli) and an electrogenic bacterium Shewanella oneidensis MR-1 (S. oneidensis). The fermentative products of E. coli provide a carbon and electron source for S. oneidensis MR-1, which then reports on such activity electrically at the anode of the MFC. To further test the capability of electrical reporting of complicated synthetic circuits, a novel synthetic biological comparator was designed and tested with both fluorescent and electrical reporting systems. The results suggest that the electrical reporting system is a good alternative to commonly used optical fluorescent reporter systems since it is a non-toxic reporting system with a much wider dynamic range.
机译:作为生物技术和合成生物学的领域,需要廉价和敏感的工具来测量越来越复杂的遗传电路。为了绕过光学荧光报告系统的一些缺点,我们设计并创建了一种用于电子报告的共培养微生物燃料电池(MFC)系统。该系统利用埃奇西亚的语言生长。大肠杆菌(大肠杆菌)和电解细菌肺肾上腺素Inidensis MR-1(S. onidensis)。大肠杆菌的发酵产物为S.Inidensis MR-1提供碳和电子源,然后在MFC的阳极上电动地报告这种活性。为了进一步测试复杂合成电路的电报的能力,设计并用荧光和电报系统设计并测试了一种新的合成生物比较器。结果表明,电气报告系统是常用光学荧光报道系统的良好替代品,因为它是一种无毒的报告系统,具有更广泛的动态范围。

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