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Design and characterization of molecular tools for a Synthetic Biology approach towards developing cyanobacterial biotechnology

机译:设计和表征用于发展蓝细菌生物技术的合成生物学方法的分子工具

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摘要

Cyanobacteria are suitable for sustainable, solar-powered biotechnological applications. Synthetic biology connects biology with computational design and an engineering perspective, but requires efficient tools and information about the function of biological parts and systems. To enable the development of cyanobacterial Synthetic Biology, several molecular tools were developed and characterized: (i) a broad-host-range BioBrick shuttle vector, pPMQAK1, was constructed and confirmed to replicate in Escherichia coli and three different cyanobacterial strains. (ii) The fluorescent proteins Cerulean, GFPmut3B and EYFP have been demonstrated to work as reporter proteins in cyanobacteria, in spite of the strong background of photosynthetic pigments. (iii) Several promoters, like PrnpB and variants of PrbcL, and a version of the promoter Ptrc with two operators for enhanced repression, were developed and characterized in Synechocystis sp. strain PCC6803. (iv) It was shown that a system for targeted protein degradation, which is needed to enable dynamic expression studies, is working in Synechocystis sp. strain PCC6803. The pPMQAK1 shuttle vector allows the use of the growing numbers of BioBrick parts in many prokaryotes, and the other tools herein implemented facilitate the development of new parts and systems in cyanobacteria.
机译:蓝细菌适用于可持续的太阳能生物技术应用。合成生物学将生物学与计算设计和工程学观点联系起来,但是需要有效的工具和有关生物学部件和系统功能的信息。为了发展蓝藻合成生物学,开发了几种分子工具并对其进行了表征:(i)构建了宽宿主范围的BioBrick穿梭载体pPMQAK1,并证实其可在大肠杆菌和三种不同的蓝细菌菌株中复制。 (ii)尽管光合作用色素的背景很强,但荧光蛋白Cerulean,GFPmut3B和EYFP已被证明在蓝细菌中起报告蛋白的作用。 (iii)开发了几种启动子,如PrnpB和PrbcL的变体,以及带有两个操纵子以增强抑制作用的启动子Ptrc的版本,并在Synechocystis sp。中进行了表征。菌株PCC6803。 (iv)已表明进行动态表达研究所需的靶向蛋白质降解系统正在Synychocystis sp。菌株PCC6803。 pPMQAK1穿梭载体允许在许多原核生物中使用越来越多的BioBrick零件,并且本文实现的其他工具也促进了蓝细菌中新零件和系统的开发。

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