Difference between revisions of "Team:NU Kazakhstan/Notebook"

 
(5 intermediate revisions by the same user not shown)
Line 11: Line 11:
 
<div class="col-lg-12">
 
<div class="col-lg-12">
 
<div class="banner-content text-center">
 
<div class="banner-content text-center">
<h1 style="color: #fff; border-bottom: none; font-weight: bold!important">Notebook. PROTOCOLS.</h1>
+
<h1 style="color: #fff; border-bottom: none; font-weight: bold!important">Overview & Background</h1>
 
</div>
 
</div>
 
</div>
 
</div>
Line 22: Line 22:
 
<div class="container">
 
<div class="container">
 
<div class="container">
 
<div class="container">
<h3 class="text-heading"><span>PROTOCOLS</span> <a href="#"><span style="border-bottom: 1px dashed #777; ">&nbsp;PROJECT TIMELINE&nbps;</span></a></h3>
+
<h3 class="text-heading"><span>PROTOCOLS</span> <a href="https://2018.igem.org/Team:NU_Kazakhstan/Project_Timeline"><span style="border-bottom: 1px dashed #777; ">&nbsp; PROJECT TIMELINE</span></a></h3>
 
</div>
 
</div>
 
</div>
 
</div>
Line 34: Line 34:
 
<li>3. Leave it under continuous illumination and shaking on the shaker at room temperature in the hood</li>
 
<li>3. Leave it under continuous illumination and shaking on the shaker at room temperature in the hood</li>
 
<li>4. Check OD at 750nm</li>
 
<li>4. Check OD at 750nm</li>
<ol>
+
</ol>
  
 
<u><b>Preparation of BG11-media</b></u>
 
<u><b>Preparation of BG11-media</b></u>
 
<b>Stock solutions for BG-11:<br>
 
<b>Stock solutions for BG-11:<br>
&nbsp;A) Stock 1:</b><br>
+
&nbsp;<b>A) Stock 1:</b><br>
 
<table>
 
<table>
 
<tr><td>Na2MG EDTA</td><td>0.1g/liter</td></tr>
 
<tr><td>Na2MG EDTA</td><td>0.1g/liter</td></tr>
tr><td>NFerric ammonium citrate</td><td>0.6g/liter</td></tr>
+
<tr><td>NFerric ammonium citrate</td><td>0.6g/liter</td></tr>
tr><td>NCitric acid . 1H2O</td><td>0.6g/liter</td></tr>
+
<tr><td>NCitric acid . 1H2O</td><td>0.6g/liter</td></tr>
tr><td>NCaCl2 . 2H2O</td><td>3.6g/liter</td></tr>
+
<tr><td>NCaCl2 . 2H2O</td><td>3.6g/liter</td></tr>
 
</table>
 
</table>
 
Filter sterilize into a sterile bottle or autoclave
 
Filter sterilize into a sterile bottle or autoclave
 +
<br>
 +
&nbsp; <b>Stock 2:</b><br>
 +
<table>
 +
<tr><td>MgSO4 . 7H2O</td><td>7.5g/liter</td></tr>
 +
</table>
 +
Filter sterilize into a sterile bottle or autoclave
 +
<br>
 +
&nbsp;S<b>tock 3:</b><br>
 +
<table>
 +
<tr><td>K2HPO4 . 3H2O</td><td>4.0g/liter</td></tr>
 +
<tr><td>or K2HPO4</td><td>3.05g/liter</td></tr>
 +
</table>
 +
Filter sterilize into a sterile bottle or autoclave
 +
<br>
 +
 +
<br><b>Stock 5 (Microelements):</b></br>
 +
 +
<table>
 +
<tr><td>H3BO3</td><td>2.86g/liter</td></tr>
 +
<tr><td>MnCl2 . 4H2O</td><td>1.81g/liter</td></tr>
 +
<tr><td>ZnSO4 . 7H2O</td><td>0.222g/liter</td></tr>
 +
<tr><td>CuSO4 . 5H2O</td><td>0.079g/liter</td></tr>
 +
<tr><td>COCl2 . 6H2O</td><td>0.050g/liter</td></tr>
 +
<tr><td>NaMoO4 . 2H2O</td><td>0.391g/liter</td></tr>
 +
<tr><td>or MoO4 (85%)</td><td>0.018g/liter</td></tr>
 +
</table>
 +
 
</div>
 
</div>
 
</section>
 
</section>

Latest revision as of 07:34, 12 October 2018

Bioremediation of Sour Crude Oil Waste using Cyanobacteria




Subculture of Cyanobacteria
  1. 1. Resuspend and take 200μL of cyanobacteria from the old solution of BG11-media
  2. 2. Place into fresh 50 mL BG11-media
  3. 3. Leave it under continuous illumination and shaking on the shaker at room temperature in the hood
  4. 4. Check OD at 750nm
Preparation of BG11-media Stock solutions for BG-11:
 A) Stock 1:
Na2MG EDTA0.1g/liter
NFerric ammonium citrate0.6g/liter
NCitric acid . 1H2O0.6g/liter
NCaCl2 . 2H2O3.6g/liter
Filter sterilize into a sterile bottle or autoclave
  Stock 2:
MgSO4 . 7H2O7.5g/liter
Filter sterilize into a sterile bottle or autoclave
 Stock 3:
K2HPO4 . 3H2O4.0g/liter
or K2HPO43.05g/liter
Filter sterilize into a sterile bottle or autoclave

Stock 5 (Microelements):
H3BO32.86g/liter
MnCl2 . 4H2O1.81g/liter
ZnSO4 . 7H2O0.222g/liter
CuSO4 . 5H2O0.079g/liter
COCl2 . 6H2O0.050g/liter
NaMoO4 . 2H2O0.391g/liter
or MoO4 (85%)0.018g/liter