Team:Cambridge-JIC/Informatics

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<div align="center"><a href="https://2014.igem.org/wiki/index.php?title=Team:Cambridge-JIC/Informatics&action=edit">Edit this page</a></div>
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<a href="#Codon-Optimisation">See codon optimisation</a>
 
<h2>Informatics</h2>
<h2>Informatics</h2>
To introduce a novel chassis and make full advantage of its properties, we want to computationally analyse its genome in order to:
To introduce a novel chassis and make full advantage of its properties, we want to computationally analyse its genome in order to:
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<li>identify and characterise promoters, in particular looking for strong, inducible, tissue-specific or early development stage promoters. These are valuable tools to further manipulation </li>
<li>identify and characterise promoters, in particular looking for strong, inducible, tissue-specific or early development stage promoters. These are valuable tools to further manipulation </li>
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<a href="#Codon-Optimisation">See promoters</a>
<h3> Codon usage optimisation </h3>
<h3> Codon usage optimisation </h3>
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<a id="https://2014.igem.org/Team:Cambridge-JIC/Informatics#Codon-Optimisation">Codon Optimisation</a>
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<p>
<p>
Our start point was the Marchantia genome and the mRNA transcriptome predicted with the Geneious software (<a href = "http://www.geneious.com/">http://www.geneious.com/</a>). The data was given to us from Jim's lab by Bernardo. 99 000 ORFs were predicted, which seems too large to be realistic. Half of these were only 100 aa long. We set the threshold for candidate genes amongst these at 300 aa, obtaining the expected normal distribution of lengths.
Our start point was the Marchantia genome and the mRNA transcriptome predicted with the Geneious software (<a href = "http://www.geneious.com/">http://www.geneious.com/</a>). The data was given to us from Jim's lab by Bernardo. 99 000 ORFs were predicted, which seems too large to be realistic. Half of these were only 100 aa long. We set the threshold for candidate genes amongst these at 300 aa, obtaining the expected normal distribution of lengths.
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<h2>Promoter identification</h2>
<h2>Promoter identification</h2>
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<a id="https://2014.igem.org/Team:Cambridge-JIC/Informatics#Codon-Optimisation">Codon Optimisation</a>
<p>To identify potential promoter regions in Marchantia's genome, we looked for gene sequences from other species, mainly <i>Arabidopsis thaliana</i> and <i>Physcomitrella patens</i>. We were particularly interested in genes that were:
<p>To identify potential promoter regions in Marchantia's genome, we looked for gene sequences from other species, mainly <i>Arabidopsis thaliana</i> and <i>Physcomitrella patens</i>. We were particularly interested in genes that were:
<ul>
<ul>

Revision as of 17:18, 20 August 2014