Difference between revisions of "Team:Marburg/Design"

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     <section class="section grid">
 
     <section class="section grid">
 
       <div class="sub"
 
       <div class="sub"
         onclick="popup('model1')">
+
         onclick="popup('strain_engineering')">
 
         <div class="sub-header">
 
         <div class="sub-header">
 
           <h1>
 
           <h1>
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       </div>
 
       </div>
 
       <div class="sub"
 
       <div class="sub"
         onclick="popup('model2')">
+
         onclick="popup('toolbox')">
 
         <div class="sub-header">
 
         <div class="sub-header">
 
           <h1>
 
           <h1>
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         </div>
 
         </div>
 
       </div>
 
       </div>
       <div id="model1"
+
       <div id="strain_engineering"
 
         class="popup">
 
         class="popup">
 
         <div class="popup-container">
 
         <div class="popup-container">
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             </h1>
 
             </h1>
 
             <button type="button"
 
             <button type="button"
               onclick="hide('model1')">X</button>
+
               onclick="hide('strain_engineering')">X</button>
 
           </div>
 
           </div>
 
           <div class="popup-content"
 
           <div class="popup-content"
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                 <label for="collapsible1"
 
                 <label for="collapsible1"
 
                   class="lbl-toggle">
 
                   class="lbl-toggle">
Natural Competence
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                  Natural Competence
<hr style="width: unset;">
+
                  <hr style="width: unset;">
</label>
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                </label>
 
                 <div class="collapsible-content">
 
                 <div class="collapsible-content">
 
                   <div class="content-inner">
 
                   <div class="content-inner">
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                 <label for="collapsible2"
 
                 <label for="collapsible2"
 
                   class="lbl-toggle">
 
                   class="lbl-toggle">
CRISPR gene editing
+
                  CRISPR gene editing
<hr style="width: unset;">
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                  <hr style="width: unset;">
</label>
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                </label>
 
                 <div class="collapsible-content">
 
                 <div class="collapsible-content">
 
                   <div class="content-inner">
 
                   <div class="content-inner">
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                 <label for="collapsible3"
 
                 <label for="collapsible3"
 
                   class="lbl-toggle">
 
                   class="lbl-toggle">
Cyanobacterial shuttle vectors
+
                  Cyanobacterial shuttle vectors
<hr style="width: unset;">
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                  <hr style="width: unset;">
</label>
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                </label>
 
                 <div class="collapsible-content">
 
                 <div class="collapsible-content">
 
                   <div class="content-inner">
 
                   <div class="content-inner">
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         </div>
 
         </div>
 
       </div>
 
       </div>
       <div id="model2"
+
       <div id="toolbox"
 
         class="popup">
 
         class="popup">
 
         <div class="popup-container">
 
         <div class="popup-container">
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             </h1>
 
             </h1>
 
             <button type="button"
 
             <button type="button"
               onclick="hide('model2')">X</button>
+
               onclick="hide('toolbox')">X</button>
 
           </div>
 
           </div>
 
           <div class="popup-content"
 
           <div class="popup-content"
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                 <label for="collapsiblebal1"
 
                 <label for="collapsiblebal1"
 
                   class="lbl-toggle">
 
                   class="lbl-toggle">
The Marburg Collection: a recap
+
                  The Marburg Collection: a recap
<hr style="width: unset;">
+
                  <hr style="width: unset;">
</label>
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                </label>
 
                 <div class="collapsible-content">
 
                 <div class="collapsible-content">
 
                   <div class="content-inner">
 
                   <div class="content-inner">
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                 <label for="collapsiblebla2"
 
                 <label for="collapsiblebla2"
 
                   class="lbl-toggle">
 
                   class="lbl-toggle">
Design of placeholders
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                  Design of placeholders
<hr style="width: unset;">
+
                  <hr style="width: unset;">
</label>
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                </label>
 
                 <div class="collapsible-content">
 
                 <div class="collapsible-content">
 
                   <div class="content-inner">
 
                   <div class="content-inner">
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                 <label for="collapsible2na"
 
                 <label for="collapsible2na"
 
                   class="lbl-toggle">
 
                   class="lbl-toggle">
Available Placeholders
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                  Available Placeholders
<hr style="width: unset;">
+
                  <hr style="width: unset;">
</label>
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                </label>
 
                 <div class="collapsible-content">
 
                 <div class="collapsible-content">
 
                   <div class="content-inner">
 
                   <div class="content-inner">
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                   class="lbl-toggle">
 
                   class="lbl-toggle">
 
                   Design of the first panS based MoClo compatible shuttle vector
 
                   Design of the first panS based MoClo compatible shuttle vector
<hr style="width: unset;">
+
                  <hr style="width: unset;">
 
                 </label>
 
                 </label>
 
                 <div class="collapsible-content">
 
                 <div class="collapsible-content">
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                 <label for="collapsibleih2"
 
                 <label for="collapsibleih2"
 
                   class="lbl-toggle">
 
                   class="lbl-toggle">
Designing the characterization of BioBricks
+
                  Designing the characterization of BioBricks
<hr style="width: unset;">
+
                  <hr style="width: unset;">
</label>
+
                </label>
 
                 <div class="collapsible-content">
 
                 <div class="collapsible-content">
 
                   <div class="content-inner">
 
                   <div class="content-inner">
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                 <label for="collapsiblenoo2"
 
                 <label for="collapsiblenoo2"
 
                   class="lbl-toggle">
 
                   class="lbl-toggle">
Modular Engineering of Genome Areas (M.E.G.A.)
+
                  Modular Engineering of Genome Areas (M.E.G.A.)
<hr style="width: unset;">
+
                  <hr style="width: unset;">
</label>
+
                </label>
 
                 <div class="collapsible-content">
 
                 <div class="collapsible-content">
 
                   <div class="content-inner">
 
                   <div class="content-inner">
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                   class="lbl-toggle">
 
                   class="lbl-toggle">
 
                   Finding new artificial Neutral integration Site options (a.N.S.o.)
 
                   Finding new artificial Neutral integration Site options (a.N.S.o.)
<hr style="width: unset;">
+
                  <hr style="width: unset;">
 
                 </label>
 
                 </label>
 
                 <div class="collapsible-content">
 
                 <div class="collapsible-content">
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                     <p>
 
                     <p>
 
                       Artificial neutral integration Site options (aNSo) for our purpose in <i>Synechococcus
 
                       Artificial neutral integration Site options (aNSo) for our purpose in <i>Synechococcus
                      elongatus</i> needed to fulfil three criteria, to be genuinely considered as potential
+
                        elongatus</i> needed to fulfil three criteria, to be genuinely considered as potential
 
                       candidates.<br>
 
                       candidates.<br>
 
                       A highly precise algorithm was implemented in a Python script to find these potential candidates
 
                       A highly precise algorithm was implemented in a Python script to find these potential candidates
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                       compatible. All sequences that contained such restriction site were discarded. Executing this
 
                       compatible. All sequences that contained such restriction site were discarded. Executing this
 
                       newly developed and unique algorithm resulted in two unique aNSo's within the genome of <i>S.
 
                       newly developed and unique algorithm resulted in two unique aNSo's within the genome of <i>S.
                      elongatus</i>.
+
                        elongatus</i>.
 
                     </p>
 
                     </p>
 
                     <figure style="text-align: center;">
 
                     <figure style="text-align: center;">
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                 <label for="collapsible1002"
 
                 <label for="collapsible1002"
 
                   class="lbl-toggle">
 
                   class="lbl-toggle">
Design neutral integration sites
+
                  Design neutral integration sites
<hr style="width: unset;">
+
                  <hr style="width: unset;">
</label>
+
                </label>
 
                 <div class="collapsible-content">
 
                 <div class="collapsible-content">
 
                   <div class="content-inner">
 
                   <div class="content-inner">
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                           <b>Step 1:</b> Find your integration site.<br>
 
                           <b>Step 1:</b> Find your integration site.<br>
 
                           For more on this see <a href="https://2019.igem.org/Team:Marburg/Model">Modeling: integration
 
                           For more on this see <a href="https://2019.igem.org/Team:Marburg/Model">Modeling: integration
                          sites</a>
+
                            sites</a>
 
                         </li>
 
                         </li>
 
                         <li>
 
                         <li>
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                   class="lbl-toggle">
 
                   class="lbl-toggle">
 
                   Fluorescence reporters for characterization of parts
 
                   Fluorescence reporters for characterization of parts
<hr style="width: unset;">
+
                  <hr style="width: unset;">
 
                 </label>
 
                 </label>
 
                 <div class="collapsible-content">
 
                 <div class="collapsible-content">
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                       <a href="https://2019.igem.org/Team:Marburg/Results"></a>results: growth rates</a>), which is
 
                       <a href="https://2019.igem.org/Team:Marburg/Results"></a>results: growth rates</a>), which is
 
                       previously described <a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC216614/">(Kallas,
 
                       previously described <a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC216614/">(Kallas,
                      Castenholz et al.)</a>. Cyanobacteria are not equipped to regulate their internal pH very well,
+
                        Castenholz et al.)</a>. Cyanobacteria are not equipped to regulate their internal pH very well,
 
                       yet they still depend on a stable proton gradient to keep up their photosynthetic machinery
 
                       yet they still depend on a stable proton gradient to keep up their photosynthetic machinery
 
                       <a href="https://jb.asm.org/content/190/19/6318">(Billini et al.)</a>. We present phlurion2, a
 
                       <a href="https://jb.asm.org/content/190/19/6318">(Billini et al.)</a>. We present phlurion2, a

Revision as of 19:06, 7 December 2019

D E S I G N


"Always plan ahead. It wasn’t raining when Noah build the ark."
- Richard Cushing

What does expanding the golden gate based Marburg Collection, automating time consuming lab work and establishing the CRISPR/Cpf1 system in Synechococcus elongatus UTEX 2973 have in common?
To achieve these objectives, it is always necessary to have a comprehensive theoretical preparation. It all starts with literature research, summarizing the current state of the art and based on this developing own ideas. To have the theoretical background settled before the lab work starts is a key point of every project and consumes many hours.
Because in the near future phototrophic organisms will get more and more relevance for biotechnological applications, we want to establish the use of Synechococcus elongatus as a phototrophic organism for synthetic biology. Following the principles of synthetic biology to simplify the process of engineering of biological systems, we set it our goal to establish Synechococcus elongatus UTEX 2973 as the fastest and most accessible phototrophic chassis to date, providing it as a wind tunnel for phototrophic organisms with user friendly and standardized workflows.
In order to achieve these goals, a lot of effort has been put into designing, building, testing, evaluating and learning. Further, these steps had to be iterated over and over again to elaborate our standardized designs. By providing you our theoretical background we want to give you an insight in our decision-making.


S T R A I N
E N G I N E E R I N G


We modified Synechococcus elongatus UTEX 2973 to establish the CRISPR/Cpf1 system in our organism.

T O O L B O X


We expanded last years Marburg Collection and made the parts suitable for Synechococcus elongatus UTEX 2973.