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Genetically assembled fluorescent biosensor for in situ detection of bio-synthesized alkanes.


ABSTRACT: Construction of highly efficient microbial cell factories producing drop-in biofuel alkanes is severely limited due to the lack of a fast detection method against alkanes. Here we first developed a sensitive fluorescent biosensor for rapid and in situ monitoring of intracellular alkane synthesis. Using GFP as reporter, the biosensor could actively respond to the intracellular alkane products, especially for the mid- and long-chain alkanes synthesized in the recombinant Escherichia coli and give a concentration-dependent fluorescence response. Our results also suggested the feasibility of developing high-throughput strategies basing on the alkane biosensor device in E. coli, and thus will greatly facilitate the application of directed evolution strategies to further improve the alkane-producing microbial cell factories.

SUBMITTER: Wu W 

PROVIDER: S-EPMC5387116 | biostudies-literature | 2015 Jun

REPOSITORIES: biostudies-literature

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Genetically assembled fluorescent biosensor for in situ detection of bio-synthesized alkanes.

Wu Wei W   Zhang Lei L   Yao Lun L   Tan Xiaoming X   Liu Xufeng X   Lu Xuefeng X  

Scientific reports 20150603


Construction of highly efficient microbial cell factories producing drop-in biofuel alkanes is severely limited due to the lack of a fast detection method against alkanes. Here we first developed a sensitive fluorescent biosensor for rapid and in situ monitoring of intracellular alkane synthesis. Using GFP as reporter, the biosensor could actively respond to the intracellular alkane products, especially for the mid- and long-chain alkanes synthesized in the recombinant Escherichia coli and give  ...[more]

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