Additional file 5: Figure S3. Characteristics of various AARs determined using the E. coli strains carrying plasmids with a â13A>G mutation in the T7 promoter upstream of the AAR gene. (a) The amounts of produced hydrocarbons. (b) The amounts of the soluble form of AARs. (c) The aldehyde producing activity of AARs. (d) Fractions of pentadecane, heptadecene, and heptadecane relative to the total amount of hydrocarbons produced in E. coli, indicating the substrate specificity of AAR. The details are the same as in Additional file 4: Figure S2
Additional file 2: Table S3. Primers, plasmids and bacterial strains used in this study. Figure S6. ...
Additional file 3: Table S5. List of used primers in this study. Table S6: List of plasmids and stra...
Additional file 8: Figure S8. Effect of Eliminating Beta Oxidation by fadD Knock-Out on FFA C12 FFA ...
Additional file 6: Figure S4. Correlation analysis. (a) The activity of AAR plotted against the sequ...
Cyanobacteria can produce hydrocarbons corresponding to diesel fuels via a reaction catalyzed by two...
Advances in synthetic biology and metabolic engineering have enabled the construction of novel biolo...
Additional file 1: Table S1. Oligonucleotides used in this study. Table S2. P3HB production by E. co...
Additional file 1. This file consists of four supplemental tables and six supplemental figures. Tabl...
Additional file 1: Additional methods. Figure S1. Adaptive evolution by genome replication engineeri...
Additional file 1: Table S1. Prices of various natural methylxanthines obtained from the Sigma–Aldri...
Additional file 1: Table S1. Primers, plasmids and bacterial strains used in this study. Table S2. T...
Aldehyde deformylating oxygenase (ADO) is a unique enzyme found exclusively in photosynthetic cyanob...
Additional file 5. Product formation and sum of relative transcript abundances of four E. coli BL21(...
Additional file 1: Figure S1. SDS-PAGE (10% gel) analysis of proteins ANS and 3GT by recombinant C. ...
Abstract Background Cyanobacteria produce hydrocarbons corresponding to diesel fuels by means of ald...
Additional file 2: Table S3. Primers, plasmids and bacterial strains used in this study. Figure S6. ...
Additional file 3: Table S5. List of used primers in this study. Table S6: List of plasmids and stra...
Additional file 8: Figure S8. Effect of Eliminating Beta Oxidation by fadD Knock-Out on FFA C12 FFA ...
Additional file 6: Figure S4. Correlation analysis. (a) The activity of AAR plotted against the sequ...
Cyanobacteria can produce hydrocarbons corresponding to diesel fuels via a reaction catalyzed by two...
Advances in synthetic biology and metabolic engineering have enabled the construction of novel biolo...
Additional file 1: Table S1. Oligonucleotides used in this study. Table S2. P3HB production by E. co...
Additional file 1. This file consists of four supplemental tables and six supplemental figures. Tabl...
Additional file 1: Additional methods. Figure S1. Adaptive evolution by genome replication engineeri...
Additional file 1: Table S1. Prices of various natural methylxanthines obtained from the Sigma–Aldri...
Additional file 1: Table S1. Primers, plasmids and bacterial strains used in this study. Table S2. T...
Aldehyde deformylating oxygenase (ADO) is a unique enzyme found exclusively in photosynthetic cyanob...
Additional file 5. Product formation and sum of relative transcript abundances of four E. coli BL21(...
Additional file 1: Figure S1. SDS-PAGE (10% gel) analysis of proteins ANS and 3GT by recombinant C. ...
Abstract Background Cyanobacteria produce hydrocarbons corresponding to diesel fuels by means of ald...
Additional file 2: Table S3. Primers, plasmids and bacterial strains used in this study. Figure S6. ...
Additional file 3: Table S5. List of used primers in this study. Table S6: List of plasmids and stra...
Additional file 8: Figure S8. Effect of Eliminating Beta Oxidation by fadD Knock-Out on FFA C12 FFA ...