Difference between revisions of "Team:Marburg/Description"

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                             it easier to engineer the system but also because of its growth speed that surpasses that of plants.
 
                             it easier to engineer the system but also because of its growth speed that surpasses that of plants.
 
                             In recent years phototrophs became the notorious revolutionizers of “green biotechnology”: as
 
                             In recent years phototrophs became the notorious revolutionizers of “green biotechnology”: as
                             photoautotrophic organisms, they only require CO<sup>2</sup> and sunlight as carbon and energy sources to
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                             photoautotrophic organisms, they only require CO<sub>2</sub> and sunlight as carbon and energy sources to
 
                             generate biomass.<br>
 
                             generate biomass.<br>
 
          
 
          
 
          
 
          
 
                             <br> The following introduction serves as an overview over our new chassis
 
                             <br> The following introduction serves as an overview over our new chassis
                             Synechococcus elongatus UTEX 2973, based on the latest research results.<br>
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                             <i>Synechococcus elongatus</i> UTEX 2973, based on the latest research results.<br>
 
                             <br>
 
                             <br>
 
          
 
          
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                             <div class="wrap-collabsible">
 
                             <div class="wrap-collabsible">
 
                                 <input id="UTEX text" class="toggle" type="checkbox">
 
                                 <input id="UTEX text" class="toggle" type="checkbox">
                                 <label for="UTEX text" class="lbl-toggle">Comparison to the well-studied organism Synechococcus
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                                 <label for="UTEX text" class="lbl-toggle">Comparison to the well-studied organism <i>Synechococcus
                                     elongatus PCC 7942</label>
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                                     elongatus </i> PCC 7942</label>
 
                                 <div class="collapsible-content">
 
                                 <div class="collapsible-content">
 
                                     <div class="content-inner">
 
                                     <div class="content-inner">
 
                                         <p>
 
                                         <p>
 
                                             Genome sequencing has proven that our strain is 99.8% identical to the much better
 
                                             Genome sequencing has proven that our strain is 99.8% identical to the much better
                                             studied strain Synechococcus elongatus PCC 7942, which is surprising since both
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                                             studied strain <i>Synechococcus elongatus</i> PCC 7942, which is surprising since both
 
                                             strains were isolated from completely different locations. While UTEX 2973 tolerates
 
                                             strains were isolated from completely different locations. While UTEX 2973 tolerates
 
                                             high light intensities, PCC 7942 is photoinhibited by light intensities of less than
 
                                             high light intensities, PCC 7942 is photoinhibited by light intensities of less than
 
                                             half of those which UTEX 2973 can withstand. In electron microscopic examinations
 
                                             half of those which UTEX 2973 can withstand. In electron microscopic examinations
 
                                             carboxysomes and polyphosphate bodies were found in both strains. Most conspicuous
 
                                             carboxysomes and polyphosphate bodies were found in both strains. Most conspicuous
                                             are the spherical, 30nm sized electron-dense bodies in PCC 7942, which are not
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                                             are the spherical, 30 nm sized electron-dense bodies in PCC 7942, which are not
 
                                             present in UTEX 2973. It is assumed that the bodies are carbon stored in the form of
 
                                             present in UTEX 2973. It is assumed that the bodies are carbon stored in the form of
 
                                             glycogen. UTEX 2973 does not generate glycogen storage and uses the carbon directly
 
                                             glycogen. UTEX 2973 does not generate glycogen storage and uses the carbon directly
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                                             Research has also proven that several changes in the photosynthetic apparatus cause
 
                                             Research has also proven that several changes in the photosynthetic apparatus cause
 
                                             decreased phycobilisomes but enhancement of Photosystem I, cytochrome f and
 
                                             decreased phycobilisomes but enhancement of Photosystem I, cytochrome f and
                                             plastocyanin contents (Ungerer et al., 2018).<br>
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                                             plastocyanin contents <a href="https://www.pnas.org/content/115/50/E11761.short?rss=1"> (Ungerer et al., 2018) </a> .<br>
 
                                             The most notable advantage is UTEX’ unparalleled doubling time. PCC 7942 takes more
 
                                             The most notable advantage is UTEX’ unparalleled doubling time. PCC 7942 takes more
 
                                             than twice as long, while only producing a third of its biomass. In an experiment
 
                                             than twice as long, while only producing a third of its biomass. In an experiment
 
                                             under the same initial conditions, the dry weight of UTEX 2973 also increased to
 
                                             under the same initial conditions, the dry weight of UTEX 2973 also increased to
                                             0.87 mg/ml, compared to only 0.33 mg/ml in PCC 7942 (Yu et al., 2015). Unlike UTEX
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                                             0.87 mg/ml, compared to only 0.33 mg/ml in PCC 7942 <a href="https://www.nature.com/articles/srep08132" > (Yu et al., 2015) </a>. Unlike UTEX
 
                                             2973, PCC 7942 is naturally competent due to its porin-like proteins. These proteins
 
                                             2973, PCC 7942 is naturally competent due to its porin-like proteins. These proteins
 
                                             are encoded on the inverted region in the genome so that inversion in UTEX 2973 can
 
                                             are encoded on the inverted region in the genome so that inversion in UTEX 2973 can
 
                                             be reversed.<br>
 
                                             be reversed.<br>
 
                                             <br>
 
                                             <br>
                                             But what allows UTEX 2973 to have such vital advantages?<br>
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                                             <b> But what allows UTEX 2973 to have such vital advantages? </b><br>
 
                                             <br>
 
                                             <br>
 
                                             When comparing both strains, one can observe that their content of amino acids
 
                                             When comparing both strains, one can observe that their content of amino acids

Revision as of 15:45, 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