Difference between revisions of "Team:Vilnius-Lithuania/Description"

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         <h2>Applications</h2>
 
         <h2>Applications</h2>
 
         <p><ul>
 
         <p><ul>
                         <li><h5>Everyday lab work</h5><br></br>Easy to assemble and control multi-plasmid system. With our framework there is no need to limit your research to a particular plasmid copy number just because there are no right replicons to choose from. With SynORI you can easily create a vector with a desired copy number that suits your needs.</li>
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                         <li><h5>Everyday lab work</h5><br>Easy to assemble and control multi-plasmid system. With our framework there is no need to limit your research to a particular plasmid copy number just because there are no right replicons to choose from. With SynORI you can easily create a vector with a desired copy number that suits your needs.</li>
 
                         <li><h5>Biological computing</h5> - the ability to choose from a wide range of copy number options and their control type will make synthetic biology engineering much more flexible and predictable. Regulation of plasmid copy number is equivalent to adding a global parameter into a computer system. This enables the coordination of multiple gene group expression.
 
                         <li><h5>Biological computing</h5> - the ability to choose from a wide range of copy number options and their control type will make synthetic biology engineering much more flexible and predictable. Regulation of plasmid copy number is equivalent to adding a global parameter into a computer system. This enables the coordination of multiple gene group expression.
 
</li>
 
</li>

Revision as of 11:15, 1 November 2017

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Description

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Find out why plasmid copy number and multiple plasmid systems are so important, what is SynORI, how does it work, and how can you apply it.

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