Difference between revisions of "Part:BBa K5443013:Experience"
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+ | ===Applications of BBa_K5443013=== | ||
+ | We showed that the ECH-Ppu enzyme from <i>Pseudomonas putida</i> was functional in <i>E. coli</i> as part of a vanillin biosynthetic pathway. This was evidenced by detectable production of vanillin (0.2 ppm), determined by LC-MS analysis of our tested clone pMQ3C-11 (Fig. 1). | ||
− | + | As functional ECH-Ppu is essential for vanillin production in this pathway, detectable presence of vanillin shows at least partial success of our construct pMQ3C-11. | |
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− | < | + | <figure> |
− | + | <img src="https://static.igem.wiki/teams/5443/pmq3c11-lcms-data-v2.jpg" style="width:600px;height:auto"> | |
− | + | <figcaption> | |
− | + | <b>Figure 1. LCMS analysis of compounds produced using pMQ3C-11.</b><br> | |
− | + | <i>The graph shows the detected presence of all 6 tested compounds, validating successful expression of all parts within pMQ3C-11, including ECH-Ppu.</i> | |
− | < | + | </figcaption> |
− | < | + | </figure> |
− | + | </html> | |
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Latest revision as of 13:08, 2 October 2024
Applications of BBa_K5443013
We showed that the ECH-Ppu enzyme from Pseudomonas putida was functional in E. coli as part of a vanillin biosynthetic pathway. This was evidenced by detectable production of vanillin (0.2 ppm), determined by LC-MS analysis of our tested clone pMQ3C-11 (Fig. 1).
As functional ECH-Ppu is essential for vanillin production in this pathway, detectable presence of vanillin shows at least partial success of our construct pMQ3C-11.