| Literature DB >> 27102263 |
Sungho Jang1, Byungjin Lee, Heon-Ho Jeong, Si Hyung Jin, Sungyeon Jang, Seong Gyeong Kim, Gyoo Yeol Jung, Chang-Soo Lee.
Abstract
Economic production of chemicals from microbes necessitates development of high-producing strains and an efficient screening technology is crucial to maximize the effect of the most popular strain improvement method, the combinatorial approach. However, high-throughput screening has been limited for assessment of diverse intracellular metabolites at the single-cell level. Herein, we established a screening platform that couples a microfluidic static droplet array (SDA) and an artificial riboswitch to analyse intracellular metabolite concentration from single microbial cells. Using this system, we entrapped single Escherichia coli cells in SDA to measure intracellular l-tryptophan concentrations. It was validated that intracellular l-tryptophan concentration can be evaluated by the fluorescence from the riboswitch. Moreover, high-producing strains were successfully screened from a mutagenized library, exhibiting up to 145% productivity compared to its parental strain. This platform will be widely applicable to strain improvement for diverse metabolites by developing new artificial riboswitches.Entities:
Mesh:
Substances:
Year: 2016 PMID: 27102263 DOI: 10.1039/c6lc00118a
Source DB: PubMed Journal: Lab Chip ISSN: 1473-0189 Impact factor: 6.799