Team:INSA-Lyon/Results
From 2014.igem.org
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<p>Then, strains were assayed for biofilm nickel absorption on liquid cultures using the calibration curve, measuring the OD of the complex formed for each strain at 554nm.<br/> | <p>Then, strains were assayed for biofilm nickel absorption on liquid cultures using the calibration curve, measuring the OD of the complex formed for each strain at 554nm.<br/> | ||
- | Although quantification is possible, this technique lacks precision and is more suited for <b>qualitative</b> studies. However, it is a cheaper alternative to | + | Although quantification is possible, this technique lacks precision and is more suited for <b>qualitative</b> studies. However, it is a cheaper alternative to ICP-MS. </p> |
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<p>Nickel-DMG complex colorimetry measurement follows a <b>linear regression</b> from a concentration of 20uM to 100uM, linked to the gradient from transparency (at [20uM]) to pink (at [100uM]). This visual method allows us to compare the Ni chelation between our strains. The more pale the color is, the more Ni has been chelated. The culture supernatant of CsgA- bacteria from strain with the part <a href="http://parts.igem.org/wiki/index.php?title=Part:BBa_K1404008">BBa_K1404008</a> is less colored than the others, which shows that only this part allows to capture more nickel. | <p>Nickel-DMG complex colorimetry measurement follows a <b>linear regression</b> from a concentration of 20uM to 100uM, linked to the gradient from transparency (at [20uM]) to pink (at [100uM]). This visual method allows us to compare the Ni chelation between our strains. The more pale the color is, the more Ni has been chelated. The culture supernatant of CsgA- bacteria from strain with the part <a href="http://parts.igem.org/wiki/index.php?title=Part:BBa_K1404008">BBa_K1404008</a> is less colored than the others, which shows that only this part allows to capture more nickel. | ||
- | These results show that <b>the part | + | These results show that <b>the part BBa_CsgA-His2 confers increased chelation</b> to strain CsgA-. It is shown that it chelates more than part <a href="http://parts.igem.org/wiki/index.php?title=Part:BBa_K1404006">BBa_CsgA-WT</a> and part <a href="http://parts.igem.org/wiki/index.php?title=Part:BBa_K1404007">BBa_CsgA-His1</a>. </p> |
- | <p>A second method has been used, more <b>quantitative</b> and more precise (but more expensive) : <b> | + | <p>A second method has been used, more <b>quantitative</b> and more precise (but more expensive) : <b> ICP-MS </b>. The metal content of the bacterial pellets were assayed. The quantity of chelated nickel for each strain has been compared to the quantity of curlis formed by each strain.</p> |
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<p>Significant differences are indicated using lowercase letters, and different letters indicate significant differences (Tukey’s test, p < 0.05). Error bars represent standard deviations.</p> | <p>Significant differences are indicated using lowercase letters, and different letters indicate significant differences (Tukey’s test, p < 0.05). Error bars represent standard deviations.</p> | ||
- | <p>Taken together, these results show that the CsgA- Strain with part <a href="http://parts.igem.org/wiki/index.php?title=Part:BBa_K1404008"> | + | <p>Taken together, these results show that the CsgA- Strain with part <a href="http://parts.igem.org/wiki/index.php?title=Part:BBa_K1404008">BBa_CsgA-His2</a> chelates twice more than strain CsgA- with part <a href="http://parts.igem.org/wiki/index.php?title=Part:BBa_K1404007">BBa_CsgA-His1</a>. That means that <b>only two His-tags on C-term can improve the natural nickel chelation capacities of CsgA </b>. CsgA with a single His-tag did not perform better than a wild-type CsgA. Potentially, further increasing the amount of His-tags could improve the nickel accumulation capacities of CsgA. </p> |
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Revision as of 21:38, 17 October 2014