Difference between revisions of "Team:Marburg/Results"

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                             which
 
                             which
 
                             can be done in a single reaction, further simplifying the cloning process of CRISPR/Cas12a constructs.
 
                             can be done in a single reaction, further simplifying the cloning process of CRISPR/Cas12a constructs.
                             As shown before <b>[Link to design of Natural Competence]</b>, the cloning process with the pSL2680 can take
+
                             As shown <a href=https://2019.igem.org/Team:Marburg/Design> before</a> , the cloning process with the pSL2680 can take
 
                             over a
 
                             over a
 
                             week, is tedious work and is accompanied by another couple of days waiting for colonies. In comparison, our
 
                             week, is tedious work and is accompanied by another couple of days waiting for colonies. In comparison, our
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                         </figure>
 
                         </figure>
 
                  
 
                  
                     Our next step was the characterization of the cyanobacterial shuttle vector mentioned in our design section <b>[Link to
+
                     Our next step was the characterization of the cyanobacterial shuttle vector mentioned in our <a href=https://2019.igem.org/Team:Marburg/Design> design </a> section.
                    design]</b>.
+
 
                     In an extensive flow cytometry experiment we assessed the fluorescence of a transformed YFP-construct in our cured
 
                     In an extensive flow cytometry experiment we assessed the fluorescence of a transformed YFP-construct in our cured
 
                     strain, showing that the shuttle vector with the minimal replication element can be maintained in<i>S. elongatus </i> UTEX
 
                     strain, showing that the shuttle vector with the minimal replication element can be maintained in<i>S. elongatus </i> UTEX
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                     <a href= https://www.microbiologyresearch.org/content/journal/micro/10.1099/mic.0.000377> (Chen et al., 2016)</a>. Our data shows a ~4,5 times higher copy number relative to pANL, meaning that the construct is
 
                     <a href= https://www.microbiologyresearch.org/content/journal/micro/10.1099/mic.0.000377> (Chen et al., 2016)</a>. Our data shows a ~4,5 times higher copy number relative to pANL, meaning that the construct is
 
                     maintained with approximately 11,7 copies per chromosome.
 
                     maintained with approximately 11,7 copies per chromosome.
               
+
                  <figure Style="text-align:center">
 +
                            <img style="height: 65ex; width: 50ex"
 +
                                src="https://static.igem.org/mediawiki/2019/d/d6/T--Marburg--Parts--qPCR-Lvl1.png"   
 +
                                alt="Copynumber Evaluation of Ori-part via qPCR">
 +
                            <figcaption> Fig. 14:  Copynumber Evaluation of Ori-part via qPCR
 +
                          </figcaption>
 +
                        </figure>
 
                      
 
                      
 
                  
 
                  

Revision as of 03:46, 22 October 2019

R E S U L T S


The way to the results we demonstrate here was full of success and failure. Therefore, it was necessary to compare and revise our theoretical plans with the practical work and the associated results. After trying our best to implement our plans, we would like to show you on this page that we have managed to realize some of our goals and are able to show some achievements for every sub-group.


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


At this page we show how to do genetic modifications on S. elongatus UTEX 2973. With these methods we succeed the transformation of plasmids in UTEX 2973.

MARBURG
COLLECTION 2.0


We added 55 new parts to the Marburg Collection, adding several new features such as the Green expansion and the first MoClo compatible shuttle vector for cyanobacteria