Difference between revisions of "Team:Marburg/Description"

Line 72: Line 72:
 
                   strain, resulting in <i>Synechococcus elongatus</i> UTEX 2973. The resulting organism is genetically
 
                   strain, resulting in <i>Synechococcus elongatus</i> UTEX 2973. The resulting organism is genetically
 
                   very
 
                   very
                   close to the well studied strain <i>Synechococcus elongatus</i> PCC 7942. With the fastest measured
+
                   closely related to the well studied strain <i>Synechococcus elongatus</i> PCC 7942. With the fastest measured
 
                   doubling time of below 90 minutes and a high tolerance to temperature and light intensity, UTEX 2973
 
                   doubling time of below 90 minutes and a high tolerance to temperature and light intensity, UTEX 2973
 
                   is a chassis to keep an eye on.
 
                   is a chassis to keep an eye on.
 
                   Cyanobacteria have big advantages compared to other phototrophic organisms such as plants or
 
                   Cyanobacteria have big advantages compared to other phototrophic organisms such as plants or
                   eukaryotic algae: next to their faster growth they also convert solar energy a lot more efficiently.
+
                   eukaryotic algae: Next to their faster growth they also convert solar energy a lot more efficiently.
 
                   The faster generation of biomass makes cyanobacteria a potential candidate for biotechnological
 
                   The faster generation of biomass makes cyanobacteria a potential candidate for biotechnological
 
                   application and their amenability to genetic modifications <a
 
                   application and their amenability to genetic modifications <a
                     href="https://www.ncbi.nlm.nih.gov/pubmed/30409802">
+
                     href="https://www.ncbi.nlm.nih.gov/pubmed/30409802" target="_blank">
 
                     (Ungerer, Wendt, Hendry, Maranas & Pakrasi, 2018) </a> make them a great platform for research.
 
                     (Ungerer, Wendt, Hendry, Maranas & Pakrasi, 2018) </a> make them a great platform for research.
 
                   Despite these advantages, cyanobacteria have
 
                   Despite these advantages, cyanobacteria have
                   still not arrived in Synthetic Biology quite as we want. With our highly optimized chassis
+
                   still not arrived in Synthetic Biology quite as expected. With our highly optimized chassis
                   <i> Synechococcus e. </i> UTEX 2973 we want to change just that.
+
                   <i> Synechococcus elongatus</i> UTEX 2973 we want to change just that.
 
                   <br>
 
                   <br>
 
                   <div class="wrap-collabsible">
 
                   <div class="wrap-collabsible">

Revision as of 17:16, 9 December 2019

D E S C R I P T I O N


We proudly present our project SYNTEX. We are establishing the new chassis Synechocococcus elongatus UTEX 2973 for phototrophic Synthetic Biology.


S Y N E C H O C O C C U S
E L O N G A T U S


An extensive review on the history of our chassis, recent findings and its potential future.

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


Here we show the results of our Strain Engineering project to tame our "wolf".

M A R B U R G
C O L L E C T I O N   2.0


We present to you the Marburg Collection 2.0, an extensive addition to the previosly established part collection that focuses around cyanobacteria.

P R O J E C T
I N S P I R A T I O N


The inspiration for our project.

R E F E R E N C E S


Here we list up our references.