Difference between revisions of "Team:NYMU-Taipei/Nitrogen starvation"

Line 315: Line 315:
 
</a>
 
</a>
 
<p style="padding-top:10px;"></p>
 
<p style="padding-top:10px;"></p>
<h4>PCC 6803 gDNA extraction</h4>
+
<p>  We expected the engineered <i>E.coli</i> with NrtA gene could express NrtA protein. When we co-culture it with microalgae, the NrtA protein would capture nitrate and nitrite, and the microalgae would undergo nitrogen starvation and produce more oil. To test our hypothesis, first, we should verify NrtA protein could capture nitrate and nitrite, and then second, test whether the engineered <i>E.coli</i> could decrease nitrate and nitrite in the environment. </p>
 +
<h4></h4>
 +
<h4>NrtA Protein</h4>
 +
<p>  To test whether NrtA protein could capture nitrate and nitrite, we used French Pressure Press to isolate NrtA protein, and used Cayman Nitrate/Nitrite Colorimetric Assay Kit to measure the nitrate and nitrite concentration in the medium with NrtA protein. (You can see the detail in our Notebook page: <a href="https://2017.igem.org/Team:NYMU-Taipei/Notebook">click</a>.)</p>
 +
<p>  Here are our results.</p>
 +
<div style="width:70%">
 +
<img src="https://static.igem.org/mediawiki/parts/8/8c/T--NYMU-Taipei--NS_NrtA_func_1.png" style="width:95%">
 +
<p style="font-size:16px;">Figure1. Nitrate concentration of cell lysate.
 +
<br>Blank: nitrate concentration assay kit assay buffer.
 +
<br>BG11: microalgae culture medium buffer.
 +
<br>CC: competent cell.
 +
<br>NrtA: isolated NrtA protein.
 +
</p>
 +
<br>
 +
<img src="https://static.igem.org/mediawiki/2017/e/ec/NYMU_2017_awards_basicpart_3.jpg" style="width:95%">
 +
<p style="font-size:16px;">Table1. Dunnett’s T3 test of nitrate concentration of cell lysate.
 +
<br>Blank: nitrate concentration assay kit assay buffer.
 +
<br>BG11: microalgae culture medium buffer.
 +
<br>CC: competent cell.
 +
<br>NrtA: isolated NrtA protein.
 +
</p>
 +
</div>
 +
<br>
 +
<p>  The nitrate and nitrite concentration of competent cell and NrtA was significant different. The results indicated that NrtA protein can capture nitrite and nitrate! This is a milestone of our project!</p>
 +
 +
 +
<h4></h4>
 +
<h4>The Engineered <i>E.coli</i> with NrtA Gene</h4>
 +
<p>  Then we wanted to know whether the engineered <i>E.coli</i> could decrease nitrate and nitrite in the environment. We used Cayman Nitrate/Nitrite Colorimetric Assay Kit to measure the nitrate and nitrite concentration of the supernatant of the engineered <i>E.coli</i> liquid culture.</p>
 +
<p>Here are our results.</p>
 +
<div style="width:70%">
 +
<img src="https://static.igem.org/mediawiki/2017/0/0d/NYMU_2017_awards_basicpart_2.jpg" style="width:95%">
 +
<p style="font-size:16px;">Figure 2. Nitrate concentration of cell.
 +
<br>Blank: nitrate concentration assay kit assay buffer.
 +
<br>BG11: microalgae culture medium buffer.
 +
<br>CC: competent cell.
 +
<br>NrtA: the supernatant of the engineered E.coli liquid culture.
 +
</p>
 +
<br>
 +
<img src="https://static.igem.org/mediawiki/2017/e/ec/NYMU_2017_awards_basicpart_3.jpg" style="width:95%">
 +
<p style="font-size:16px;">Table 2. Dunnett’s T3 test of nitrate concentration of cell.
 +
<br>Blank: nitrate concentration assay kit assay buffer.
 +
<br>BG11: microalgae culture medium buffer.
 +
<br>CC: competent cell.
 +
<br>NrtA: the supernatant of the engineered E.coli liquid culture.
 +
</p>
 +
</div>
 +
<p>  The nitrate and nitrite concentration of NrtA and competent cell had slight but not significant difference. The result implied that NrtA protein could capture nitrate and nitrite while the engineered <i>E.coli</i> with NrtA gene couldn’t. The engineered <i>E.coli</i> with NrtA gene could express NrtA protein, while NrtA protein might be inside the cell, so nitrate and nitrite concentration outside the cell didn’t change a lot. To make NrtA protein become a secreted protein, we are trying to construct signal peptide sequence, so that NrtA protein can be released to the medium.</p>
 +
 +
 +
 +
 
<!--close-->
 
<!--close-->
 
<center>
 
<center>

Revision as of 17:54, 28 October 2017