AI Article Synopsis

  • Poly-3-hydroxybutyrate (PHB) is a type of polyhydroxyalkanoate synthesized by microorganisms, making it an important candidate for industrial production.
  • Researchers introduced LipidGreen1, a new fluorescent dye, to quantify intracellular PHB, finding it more sensitive and accurate than previous dyes like Nile red.
  • The study demonstrated that LipidGreen1 effectively stained viable bacteria and allowed for differentiation in PHB-synthase mutants, proving useful for high-throughput screening of bacteria with enhanced PHB production.

Article Abstract

Poly-3-hydroxybutyrate (PHB), the most abundant type of polyhydroxyalkanoates (PHA) is synthesized inside a variety of microorganisms as a primary candidate for industrial PHB production. Lipophilic dyes such as Nile red and BODIPY have been used to quantify intracellular PHB, but their uses have often been limited in terms of sensitivity and accuracy. In this study, a newly developed lipophilic fluorescent dye LipidGreen1 was used to quantify intracellular PHB. LipidGreen1 stained viable colonies by adding the dye into the medium which enabled the effective selection of PHB-positive cells. Furthermore, the fluorescence intensity of LipidGreen1 maintained its fluorescence intensity much longer than that of Nile red. The fluorescence intensities of intracellular PHB stained by LipidGreen1 accurately agreed with PHB contents measured by gas chromatography. In addition, internalization of LipidGreen1 in Escherichia coli cell was not necessary to obtain quantitative measurements. PHB-synthase mutants were differentiated by fluorescence intensities with a good correlation to increased levels of PHB production. These results show that LipidGreen1 is sensitive and accurate in high-throughput screening of newly isolated and genetically modified bacteria with enhanced PHB production.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4529427PMC
http://dx.doi.org/10.1186/s13568-015-0131-6DOI Listing

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