| Literature DB >> 28580015 |
Akihiro Kato1, Nobuyuki Takatani1,2, Kazutaka Ikeda3,2, Shin-Ichi Maeda1,2, Tatsuo Omata1,2,4.
Abstract
BACKGROUND: Cyanobacterial mutants engineered for production of free fatty acids (FFAs) secrete the products to the medium and hence are thought to be useful for biofuel production. The dAS1T mutant constructed from Synechococcus elongatus PCC 7942 has indeed a large capacity of FFA production, which is comparable to that of triacylglycerol production in green algae, but the yield of secreted FFAs is low because the cells accumulate most of the FFAs intracellularly and eventually die of their toxicity. To increase the FFA productivity, enhancement of FFA secretion is required.Entities:
Keywords: Biofuel production; Cyanobacteria; Free fatty acids; Two-phase culture system
Year: 2017 PMID: 28580015 PMCID: PMC5452621 DOI: 10.1186/s13068-017-0831-z
Source DB: PubMed Journal: Biotechnol Biofuels ISSN: 1754-6834 Impact factor: 6.040
Fig. 1Effects of exogenously added palmitic acid on the growth of the WT and dAS1T cells. a Growth curves of WT (circles) and dAS1T (triangles). Cells were grown either with (+, open symbols) or without (−, filled symbols) 0.13 g L−1 of palmitic acid (PA). Data shown are the mean ± SE from biological triplicates. b Appearance of the cultures at t = 96 h, showing the growth defect of dAS1T grown in the medium supplemented with PA
Fig. 2Development of an aqueous-organic two-phase culture system. A Effects of various hydrophobic solvents on the growth of S. elongatus. WT cells were inoculated into fresh medium to give an OD730 value of 0.01 and cultivated for 72 h with 10 mL each of the organic solvents indicated. IM isopropyl myristate, De decane, Un undecane, TBP tributyl phosphate. B Effects of the two-phase culture system with IM on growth (a, b), cellular chlorophyll content (c), and the photosynthetic yield (d). WT and dAS1T cells were grown either with or without 20 mL of IM for 240 h. Data shown in a, c, and d are the mean ± SE from biological triplicates. Circles WT; triangles dAS1T. Open symbols with IM; filled symbols without IM. b shows the appearance of the cultures at t = 240 h
Fig. 3Effects of the two-phase culture system on FFA production. WT (circles) and dAS1T (triangles) cells were grown either with (+, open symbols) or without (−, filled symbols) IM. Data shown are the mean ± SE from the same biological triplicates as in Fig. 2B. A Time course of the accumulation of FFA in the aqueous phase (a) and the IM layer (b). The FFA concentration in IM was measured as described in the “Methods” section and converted into the amount of FFA produced per 1 L of culture by calculation. B Time course of cellular FFA content. C The yield of FFA per dry cell weight (DCW) at t = 240 h
Fig. 4Long-term FFA production in the two-phase culture system. WT and dAS1T cells were grown with IM for 432 h. a Appearance of the cultures at t = 432 h. b Growth curves (dashed lines) and the changes of the total amount of extracellular FFA (i.e., the sum of FFA in aqueous and organic phases) (solid lines) during cultivation. Circles WT; triangles dAS1T. Data shown are the mean ± SE from biological triplicates