Team:ETH Zurich
From 2008.igem.org
m (→The Team) |
m (→The Team) |
||
Line 32: | Line 32: | ||
<br><strong>Advisors</strong><br> | <br><strong>Advisors</strong><br> | ||
[http://www.ipe.ethz.ch/laboratories/bpl/people/panke Sven Panke],[http://www.ipe.ethz.ch/laboratories/bpl/people/meyer Andreas Jörg Meyer],[http://www.csb.ethz.ch/people/joergs Jörg Stelling] | [http://www.ipe.ethz.ch/laboratories/bpl/people/panke Sven Panke],[http://www.ipe.ethz.ch/laboratories/bpl/people/meyer Andreas Jörg Meyer],[http://www.csb.ethz.ch/people/joergs Jörg Stelling] | ||
+ | <br clear="all" /> | ||
== Site Map == | == Site Map == |
Revision as of 23:40, 26 October 2008
Project Abstract'Random walks towards the minimal genome' "This year's ETH Zurich project tackles a fundamental problem of synthetic biology: the minimal genome.
Exploring the minimal set of genes that is able to support life is not only a question of significant biological interest, it is also a crucial step towards the implementation of orthogonal functionalities into a rationally designed complex biological system. An organism carrying a minimal genome would provide a simple chassis for biological engineering.
We attempted to exploit the power of accelerated evolution for a genome reduction strategy. Our approach is based on an iterative cycle of genome reduction and strain selection.
We propose a novel method to randomly delete chromosomal DNA fragments by controlled expression of restriction enzymes and ligases in vivo. Furthermore we develop a chemostat-based selective condition to select for cells with a smaller genome size by constraining nucleotide availability. Computationally, we analyze the genome for the optimal restriction enzyme, and perform flux balance analysis on a genome scale model to predict growth of reduced genome strains. Finally, we simulate the restriction enzyme expression and the progression of selection." The TeamUndergraduate Students Site Map
|