Team:Oxford/biosensor construction
From 2014.igem.org
(Difference between revisions)
Line 289: | Line 289: | ||
<div class="white_news_block"> | <div class="white_news_block"> | ||
<h1>Introduction: how we constructed our biosensor</h1> | <h1>Introduction: how we constructed our biosensor</h1> | ||
- | In order to be able to use our model and to determine whether DcmR acts as a repressor or activator in the presence of DCM we designed and constructed the following two plasmid system. We primarily used Gibson assembly methods and source most of the necessary DNA from gblocks(synthesised oligonucleotides) we had designed based in the sequenced genome of Methylobacterium DM4. This system will also form the DCM biosensor and will be integrated with an | + | In order to be able to use our model and to determine whether DcmR acts as a repressor or activator in the presence of DCM we designed and constructed the following two plasmid system. We primarily used Gibson assembly methods and source most of the necessary DNA from gblocks(synthesised oligonucleotides) we had designed based in the sequenced genome of Methylobacterium DM4. This system will also form the DCM biosensor and will be integrated with an electronic circuit to complement this genetic one: |
</div> | </div> | ||
Revision as of 13:47, 24 September 2014