Team:UC Berkeley

From 2008.igem.org

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   <a href="https://2008.igem.org/Team:UC_Berkeley/Notebook" title="Day to day notes">Notebook</a><br />
   <a href="https://2008.igem.org/Team:UC_Berkeley/Notebook" title="Day to day notes">Notebook</a><br />
   <a href="https://2008.igem.org/Team:UC_Berkeley/Team" title="Our team!">The Team</a><br />
   <a href="https://2008.igem.org/Team:UC_Berkeley/Team" title="Our team!">The Team</a><br />
 +
  <a href="https://2008.igem.org/Team:UC_Berkeley/GatewayPlasmid" title="Plasmid Scheme">Plasmid Based Gateway</a><br />
   <a> </a><br />
   <a> </a><br />
   <a href="http://spreadsheets.google.com/ccc?key=pUQEpr4ZqU9Tu4QZmdP-lKw&hl=en" title="Our Parts">Parts</a><br />
   <a href="http://spreadsheets.google.com/ccc?key=pUQEpr4ZqU9Tu4QZmdP-lKw&hl=en" title="Our Parts">Parts</a><br />

Revision as of 00:28, 14 October 2008

UCB title3.jpg

In an effort to optimize the manufacture of parts, we have designed Clonebots - a collection of devices and strains that aid in the synthesis and analysis of new parts. Our team has programmed Clonebots to perform processes critical for efficient manufacture of biological products. We created systems capable of in vivo genetic manipulations and constructed an inducible self-lysis device designed to reclaim a variety of products without the need for conventional methods of lysis. By replacing traditional mechanical operations with biologically encoded alternatives, Clonebots are capable of accomplishing many operations with a single automated liquid handling unit - a cost-effective, BioCAD-friendly approach to large-scale projects.



Links

UC Berkeley Comp Team