Difference between revisions of "Team:Marburg/Description"

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                     Just until recently Synthetic Biology was lacking a genetic platform for
 
                     Just until recently Synthetic Biology was lacking a genetic platform for
                     cyanobacterial hosts: the introduction of the panS based  
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                     cyanobacterial hosts: The introduction of the panS based  
                     self-replicating shuttle vector  marks the first useable plasmid (Chen  
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                     self-replicating shuttle vector  marks the first useable plasmid <a href="https://www.ncbi.nlm.nih.gov/pubmed/27902432 ">(Chen  
                     et al., 2016), however it is not MoClo compatible. Therefore  
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                     <i>et al.</i>, 2016)</a>, however it is not MoClo compatible. Therefore <a href="http://parts.igem.org/Part:BBa_K3228069">BBa_K3228069</a>
                    BBa_K3228069 is in our eyes the most important addition to our Marburg  
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                    is in our eyes the most important addition to our Marburg  
 
                     Collection 2.0. This part contains the minimal replication region of  
 
                     Collection 2.0. This part contains the minimal replication region of  
 
                     panS for cyanobacteria and a spectinomycin cassette; additionally the  
 
                     panS for cyanobacteria and a spectinomycin cassette; additionally the  
                     ColE1 origin of replication can be used for cloning in E. coli and V.  
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                     ColE1 origin of replication can be used for cloning in <i>E. coli</i> and <i>V.  
                     natriegens. A second version with different flanks and a kanamycin  
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                     natriegens</i>. A second version with different flanks and a kanamycin  
 
                     resistance enables the construction of LVL 2 plasmids that can contain  
 
                     resistance enables the construction of LVL 2 plasmids that can contain  
 
                     up to seven genes. We utilized the broad host-range flexibility of the  
 
                     up to seven genes. We utilized the broad host-range flexibility of the  
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                                   " alt="design build test cycle">
 
                                   " alt="design build test cycle">
 
                                     <figcaption style="max-width: 2400px; text-align: center">
 
                                     <figcaption style="max-width: 2400px; text-align: center">
                                         Fig.1 - design build test cycle
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                                         Fig.2: MoClo compatible shuttle vector for cyanobacteria.
 
                                     </figcaption>
 
                                     </figcaption>
 
                                 </figure>
 
                                 </figure>
  
 
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<br>
 
                      
 
                      
 +
                    <h2 class="title">Characterizing parts for our new chassis</h2>
 
                      
 
                      
                    Characterizing parts for our new chassis
 
 
                     To make sure that scientists are able to use our toolbox as convenient  
 
                     To make sure that scientists are able to use our toolbox as convenient  
                     as they do now with Vibrio natriegens, it is necessary to characterize  
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                     as they do now with <i>Vibrio natriegens</i>, it is necessary to characterize  
 
                     our part collection for our new chassis.  
 
                     our part collection for our new chassis.  
 
                     We established a workflow suited to cyanobacteria to characterize all  
 
                     We established a workflow suited to cyanobacteria to characterize all  
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                     conditions in well plates had to be done. We evaluated many  
 
                     conditions in well plates had to be done. We evaluated many  
 
                     possibilities regarding growth of precultures and measuring procedures  
 
                     possibilities regarding growth of precultures and measuring procedures  
                     and present you the best way to measure activities in UTEX2973.
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                     and present you the best way to measure activities in UTEX 2973.
                      
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                     <br>
 
                      
 
                      
 
                     <h2 class="title">Modular Engineering of Genome Areas (M.E.G.A.)</h2>   
 
                     <h2 class="title">Modular Engineering of Genome Areas (M.E.G.A.)</h2>   
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                     insert one or more genes into an integration site on the target genome.  
 
                     insert one or more genes into an integration site on the target genome.  
 
                     Next to three conventional integration sites for cyanobacteria (NSI to  
 
                     Next to three conventional integration sites for cyanobacteria (NSI to  
                     NSIII) that are used worldwide (Holtman et al., 2005) we used a rational
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                     NSIII) that are used worldwide <a href="https://www.ncbi.nlm.nih.gov/pubmed/16303742">(Holtman <i>et al.</i>, 2005)</a> we used a rational
 
                     design approach to create two new ones (artificial neutral integration  
 
                     design approach to create two new ones (artificial neutral integration  
 
                     site options, aNSo I and aNSo II) that, according to RNA-sequencing data
 
                     site options, aNSo I and aNSo II) that, according to RNA-sequencing data
                     (See: design of integration sites in modelling), don’t show any  
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                     <a href="https://2019.igem.org/Team:Marburg/Model#model2">(See: design of integration sites in modelling)</a>, don’t show any  
 
                     transcriptional activity from neighboring genes. Therefore they are  
 
                     transcriptional activity from neighboring genes. Therefore they are  
 
                     perfect candidates for a stable expression independent from cellular  
 
                     perfect candidates for a stable expression independent from cellular  
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                                   " alt="design build test cycle">
 
                                   " alt="design build test cycle">
 
                                     <figcaption style="max-width: 2400px; text-align: center">
 
                                     <figcaption style="max-width: 2400px; text-align: center">
                                         Fig.1 - design build test cycle
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                                         Fig.3: Integration into the genome.
 
                                     </figcaption>
 
                                     </figcaption>
 
                                 </figure>
 
                                 </figure>
 +
<br>
  
  
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                     for biotechnological processes.
 
                     for biotechnological processes.
 
                      
 
                      
                      
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                     <br>
 
                      
 
                      
 
                     <h3 class="title"> Presenting a broad range arsenal of reporters for the green expansion </h3>
 
                     <h3 class="title"> Presenting a broad range arsenal of reporters for the green expansion </h3>
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                     From cyanobacteria specific well established reporters like sYFP to  
 
                     From cyanobacteria specific well established reporters like sYFP to  
 
                     mTurqoise, an alternative than be used in conjunction with YFP for a  
 
                     mTurqoise, an alternative than be used in conjunction with YFP for a  
                     dual fluorescent reporter system (Link to terminator text from johanna
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                     dual fluorescent reporter system <a href="https://2019.igem.org/Team:Marburg/Composite_Part">(best composite part)</a> we offer a variety of fluorescence based  
                    in best composite part) we offer a variety of fluorescence based  
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                     reporters for part characterizations.
 
                     reporters for part characterizations.
 
                     To harness the incredible potential of novel findings in luminescence,  
 
                     To harness the incredible potential of novel findings in luminescence,  
 
                     we also provide a set luminescence reporters based on NanoLuc, that  
 
                     we also provide a set luminescence reporters based on NanoLuc, that  
                     strikes out as a completely cell independent, orthogonal reporter: the
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                     strikes out as a completely cell independent, orthogonal reporter: The
 
                     mutated version teLuc is especially well suited for cyanobacteria as it  
 
                     mutated version teLuc is especially well suited for cyanobacteria as it  
 
                     bypasses the natural absorption of cyanobacterial photopigments and  
 
                     bypasses the natural absorption of cyanobacterial photopigments and  
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                     NanoLuc as a dual luminescence reporter system.   
 
                     NanoLuc as a dual luminescence reporter system.   
 
                     Additionally we provide two reporters that have the ability to sense two
 
                     Additionally we provide two reporters that have the ability to sense two
                     very crucial cellular parameters in cyanobacteria: phluorin2 for the  
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                     very crucial cellular parameters in cyanobacteria: Phluorin2 for the  
 
                     detection of intracellular pH values that are crucial for rapid growth  
 
                     detection of intracellular pH values that are crucial for rapid growth  
 
                     and rxYFP for the detection of the redox status, that can have crippling
 
                     and rxYFP for the detection of the redox status, that can have crippling

Revision as of 12:15, 7 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.


SYNECHOCOCCUS
ELONGATUS


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

STRAIN
ENGINEERING


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

MARBURG
COLLECTION 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