Difference between revisions of "Team:Marburg/Description"

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                                             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
 
                                             varies greatly: the amount of amino acids in UTEX 2973 lies at 53% whereas in PCC
 
                                             varies greatly: the amount of amino acids in UTEX 2973 lies at 53% whereas in PCC
                                             7942 it is 40.9% (Mueller, Ungerer, Pakrasi, & Maranas, 2017). This results in a
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                                             7942 it is 40.9% <a href="https://www.nature.com/articles/srep41569" > (Mueller, Ungerer, Pakrasi & Maranas, 2017) </a>. This results in a
 
                                             different composition of the biomass, which is due to the discovered single
 
                                             different composition of the biomass, which is due to the discovered single
 
                                             nucleotide polymorphisms (SNP’s). Among other things, they cause an increased
 
                                             nucleotide polymorphisms (SNP’s). Among other things, they cause an increased
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                                 <br>
 
                                 <br>
 
                                 UTEX 2973 differs from PCC 7942 in 55 single nucleotide polymorphisms and insertion-deletions,
 
                                 UTEX 2973 differs from PCC 7942 in 55 single nucleotide polymorphisms and insertion-deletions,
                                 as well as a 188.6 kb inversion and a six open reading frame deletion (Mueller, Ungerer,
+
                                 as well as a 188.6 kb inversion and a six open reading frame deletion <a href="https://www.nature.com/articles/srep41569" > (Mueller, Ungerer, Pakrasi & Maranas, 2017) </a>. Thereby these mutations must contain the genetic determinant for UTEX’ rapid growth rate.<br>
                                Pakrasi, & Maranas, 2017). Thereby these mutations must contain the genetic determinant for
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                                UTEX’ rapid growth rate.<br>
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                                 Three genes have been discovered as potentially being involved in better growth. AtpA encodes
 
                                 Three genes have been discovered as potentially being involved in better growth. AtpA encodes
 
                                 for the alpha subunit of an ATP-synthase with an apparent higher specific activity. The
 
                                 for the alpha subunit of an ATP-synthase with an apparent higher specific activity. The
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                                 relieve a photosynthetic bottleneck, increasing the capacity for photosynthetic electron flow.
 
                                 relieve a photosynthetic bottleneck, increasing the capacity for photosynthetic electron flow.
 
                                 This ensures the usage of higher light intensities while producing more ATP and NADPH to fix
 
                                 This ensures the usage of higher light intensities while producing more ATP and NADPH to fix
                                 CO2. All this ultimately leads to better growth of UTEX 2973. In this experiment, the SNP’s in
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                                 CO<sub>2</sub>. All this ultimately leads to better growth of UTEX 2973. In this experiment, the SNP’s in
                                 UTEX 2973 were inserted into PCC 7942, thereby significantly improving its growth rate (Ungerer
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                                 UTEX 2973 were inserted into PCC 7942, thereby significantly improving its growth rate.<br>
                                et al., 2018).<br>
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                                 Thus, these minimal genetic changes cause a huge impact in growth rate and CO<sub>2</sub> absorption, which
                                 Thus, these minimal genetic changes cause a huge impact in growth rate and CO2 absorption, which
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                                 proves UTEX 2973 to be second to nothing. photorespiration and the synthesis of glyoxylate, a
 
                                 proves UTEX 2973 to be second to nothing. photorespiration and the synthesis of glyoxylate, a
 
                                 precursor of several amino acids. Some SNPs alter kinetic parameters of metabolic enzymes and
 
                                 precursor of several amino acids. Some SNPs alter kinetic parameters of metabolic enzymes and
 
                                 increase the production of biomass components. Most striking is the difference in the rate of
 
                                 increase the production of biomass components. Most striking is the difference in the rate of
                                 carbon uptake and its allocation in biomass. UTEX 2973 absorbs CO2 2.06 times more efficiently
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                                 carbon uptake and its allocation in biomass. UTEX 2973 absorbs CO<sub>2</sub> 2.06 times more efficiently
 
                                 than PCC 7942.<br>
 
                                 than PCC 7942.<br>
 
                                 <br>
 
                                 <br>
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                                 <b>Field of application</b>
 
                                 <b>Field of application</b>
 
                                 <br>
 
                                 <br>
                                 Synechococcus elongatus UTEX 2973 has the potential to change paradigms in Synthetic
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                                 <i>Synechococcus elongatus </i> UTEX 2973 has the potential to change paradigms in Synthetic
 
                                 Biology:<br>
 
                                 Biology:<br>
 
                                 With its incredibly low doubling time for phototroph standards, UTEX 2973 is eligible for rapid
 
                                 With its incredibly low doubling time for phototroph standards, UTEX 2973 is eligible for rapid
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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.1: Design-Build-Test cycle
 
                                     </figcaption>
 
                                     </figcaption>
 
                                 </figure>
 
                                 </figure>
 
                                 <br>
 
                                 <br>
 +
 
                                 If an assembly didn't work, it's easy to locate the error, optimize the construct design and get
 
                                 If an assembly didn't work, it's easy to locate the error, optimize the construct design and get
 
                                 the desired result quickly.<br>
 
                                 the desired result quickly.<br>
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                                 already possible to easily work with it.<br>
 
                                 already possible to easily work with it.<br>
 
                                 <br>
 
                                 <br>
 +
<p>
 
                                 In "Green biotechnology” our chassis can be used to sustainably produce carbon neutral platform
 
                                 In "Green biotechnology” our chassis can be used to sustainably produce carbon neutral platform
 
                                 chemicals without fossil fuels. These platform chemicals can be used to produce biofuels and
 
                                 chemicals without fossil fuels. These platform chemicals can be used to produce biofuels and
                                 bioplastics or carbohydrate feedstocks (Song, Tan, Liang, & Lu, 2016). Innovations like these
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                                 bioplastics or carbohydrate feedstocks <a href="https://www.ncbi.nlm.nih.gov/pubmed/27079574">(Song, Tan, Liang, & Lu, 2016) </a>.
 +
Innovations like these
 
                                 are needed to propel the development of a sustainable, fossil fuel independent industry of
 
                                 are needed to propel the development of a sustainable, fossil fuel independent industry of
 
                                 tomorrow.
 
                                 tomorrow.
 
                                 Many secondary metabolites have pharmaceutical benefits, such as amino acids, fatty acids,
 
                                 Many secondary metabolites have pharmaceutical benefits, such as amino acids, fatty acids,
                                 macrolides, lipopeptides and amides (Yu et al., 2015). The cyanobacteria strain Synechocystis
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                                 macrolides, lipopeptides and amides <a href="https://www.nature.com/articles/srep08132"> (Yu et al., 2015)</a>. The cyanobacteria strain <i>Synechocystis
                                 sp. PCC 6803 already serves as a brilliant example for the application of cyanobacteria: it has
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                                 sp. </i> PCC 6803 already serves as a brilliant example for the application of cyanobacteria: it has
 
                                 been genetically modified to secrete fatty acids and thus to avoid costly biomass recovery in
 
                                 been genetically modified to secrete fatty acids and thus to avoid costly biomass recovery in
                                 the production of photosynthetically produced, sustainable biofuels (Liu, Sheng, & Curtiss,
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                                 the production of photosynthetically produced, sustainable biofuels  
                                2011).<br>
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<a href="https://www.ncbi.nlm.nih.gov/pubmed/21482809"> (Liu, Sheng, & Curtiss, 2011) </a>.
                                <br>
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<br> <br>
 
                                 Establishing UTEX 2973 with its versatile capabilities could pave the way to making industrial
 
                                 Establishing UTEX 2973 with its versatile capabilities could pave the way to making industrial
 
                                 biotechnology more sustainable and thus be a solution to combating climate change, one of the
 
                                 biotechnology more sustainable and thus be a solution to combating climate change, one of the
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                                 In recent years, the CRISPR system has enabled precise gene editing. Gene editing is well
 
                                 In recent years, the CRISPR system has enabled precise gene editing. Gene editing is well
 
                                 feasible in UTEX 2973 with the CRISPR technology and an alternative nuclease Cpf1 from the
 
                                 feasible in UTEX 2973 with the CRISPR technology and an alternative nuclease Cpf1 from the
                                 organism Francisella novicida as Cas9 is toxic to cyanobacteria (Ungerer & Pakrasi, 2016).<br>
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                                 organism <i>Francisella novicida</i> as Cas9 is toxic to cyanobacteria <a hre="https://www.nature.com/articles/srep39681"> (Ungerer & Pakrasi, 2016)</a>.<br>
 
                                 Despite the loss of its natural competence, UTEX 2973 is a suitable candidate for genetic
 
                                 Despite the loss of its natural competence, UTEX 2973 is a suitable candidate for genetic
 
                                 engineering.
 
                                 engineering.
                                 DNA can be easily introduced into UTEX 2973 trough triparental conjugation via E. coli and the
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                                 DNA can be easily introduced into UTEX 2973 trough triparental conjugation via <i>E. coli </i> and the
 
                                 self-replicating vector pANS. Shuttle vectors are of great interest as they lead to higher gene
 
                                 self-replicating vector pANS. Shuttle vectors are of great interest as they lead to higher gene
 
                                 expression compared to genome integration. In addition, they retain large DNA inserts in the
 
                                 expression compared to genome integration. In addition, they retain large DNA inserts in the
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                                 We developed facile-transforming shuttle-vectors and thus, we were able to extend the genetic
 
                                 We developed facile-transforming shuttle-vectors and thus, we were able to extend the genetic
 
                                 toolbox and simplify genetic engineering.<br>
 
                                 toolbox and simplify genetic engineering.<br>
                      
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                     </p>
 
                     </p>
 
                     </p>
 
          
 
          

Revision as of 15:59, 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