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− | <div id="pagebanner" style="background-image:url(https://static.igem.org/mediawiki/2018/ | + | <div id="pagebanner" style="background-image:url(https://static.igem.org/mediawiki/2018/c/cc/T--ECUST--rustremoverbanner.png);"> |
<div id="bannerspace"> | <div id="bannerspace"> | ||
<div id="bannerquote">Rust Remover</div> | <div id="bannerquote">Rust Remover</div> | ||
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<p>Secondly,We want to construct recombinant plasmids.Gene cluster of enterobactin is inserted into vector pET28 . </p> | <p>Secondly,We want to construct recombinant plasmids.Gene cluster of enterobactin is inserted into vector pET28 . </p> | ||
<p>However, because the gene cluster is too long, we have not successfully constructed the recombinant plasmid. In order to test the derusting effect of enterobactin ,we cultured E. coli in iron-free medium,where E.coli can express enterobactin.Then we purified the enterobactin from the culture solution,which can be used as rust removal experiment next. </p> | <p>However, because the gene cluster is too long, we have not successfully constructed the recombinant plasmid. In order to test the derusting effect of enterobactin ,we cultured E. coli in iron-free medium,where E.coli can express enterobactin.Then we purified the enterobactin from the culture solution,which can be used as rust removal experiment next. </p> | ||
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<figure> | <figure> | ||
− | <figure class="makeresponsive" style="width: 50%;margin-left: | + | <figure class="makeresponsive" style="width: 50%;margin-left:28%;"> |
<img src="https://static.igem.org/mediawiki/2018/e/e7/T--ECUST--r2.jpg" class="z2"> | <img src="https://static.igem.org/mediawiki/2018/e/e7/T--ECUST--r2.jpg" class="z2"> | ||
<figcaption><b>Figure 2.plasmid construction</b></figcaption> | <figcaption><b>Figure 2.plasmid construction</b></figcaption> | ||
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<p>We use Aronw detection method to detect concentration of enterobactin in supernatant, and concentration of enterobactin is 22.195 μM. Then we purify enterobactin. After centrifugation, clear supernatant was acidifiedwith 10 N HCI (15 pJ) resulting in an approximate pH of 2 and extracted twice with ethylacetate (3 ml). The solvent was evaporated and the residue dissolved in 1 ml 10% acetonitrile/water (0.1% TFA) Then concentrarion of enterobactin is measured and it is 346.51 μM. </p> | <p>We use Aronw detection method to detect concentration of enterobactin in supernatant, and concentration of enterobactin is 22.195 μM. Then we purify enterobactin. After centrifugation, clear supernatant was acidifiedwith 10 N HCI (15 pJ) resulting in an approximate pH of 2 and extracted twice with ethylacetate (3 ml). The solvent was evaporated and the residue dissolved in 1 ml 10% acetonitrile/water (0.1% TFA) Then concentrarion of enterobactin is measured and it is 346.51 μM. </p> | ||
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<figure> | <figure> | ||
<figure class="makeresponsive" style="width: 50%;margin-left:25%;"> | <figure class="makeresponsive" style="width: 50%;margin-left:25%;"> | ||
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<p>After experiment, we can see that enterobactin of this concentration has the largest rust removal rate of about 20%, which is similar to oxalic acid at rhe same concentration. </p> | <p>After experiment, we can see that enterobactin of this concentration has the largest rust removal rate of about 20%, which is similar to oxalic acid at rhe same concentration. </p> | ||
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<figure> | <figure> | ||
<figure class="makeresponsive" style="width: 80%;margin-left:10%;"> | <figure class="makeresponsive" style="width: 80%;margin-left:10%;"> |
Latest revision as of 02:51, 18 October 2018