Team:Peking University/Modeling

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!align="center"|[[Team:Peking_University/Team|The Team]]
!align="center"|[[Team:Peking_University/Team|The Team]]
!align="center"|[[Team:Peking_University/Project|The Project]]
!align="center"|[[Team:Peking_University/Project|The Project]]
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!align="center"|[[Team:Peking_University/Parts|Parts Submitted to the Registry]]
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!align="center"|[[Team:Peking_University/Parts|Parts]]
!align="center"|[[Team:Peking_University/Modeling|Modeling]]
!align="center"|[[Team:Peking_University/Modeling|Modeling]]
!align="center"|[[Team:Peking_University/Misc&Fun|Misc&Fun]]
!align="center"|[[Team:Peking_University/Misc&Fun|Misc&Fun]]
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=Mathematical Analysis=
=Mathematical Analysis=
==Introduction==
==Introduction==
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<br><br>
 
The circuit constructed in vivo in eukaryotic system plays random mutation and artificial function, which theoretically involves proteins and RNAs. However, it remains a question for the efficiency of the random mutation, or the mutation spread space over time. Here we represent a mathematical analysis to solve these problems theoretically.
The circuit constructed in vivo in eukaryotic system plays random mutation and artificial function, which theoretically involves proteins and RNAs. However, it remains a question for the efficiency of the random mutation, or the mutation spread space over time. Here we represent a mathematical analysis to solve these problems theoretically.
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==Goal==
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#Give out sequence spread space by mutation over time
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[[Image:Model1.jpg|350px]]
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#Calculate for the efficiency from a specific sequence to a goal sequence over a fixed time
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[[Image:Model2.jpg|400px]]
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==Details==
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#Part 1 [[Mutation Model]]
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#Part 2 [[Genetic Circuit]]
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#Part 3 [[Integration of Two Models]]
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|[[Team:Peking_University|Home Page]]
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Latest revision as of 04:36, 30 October 2008


Home The Team The Project Parts Modeling Misc&Fun [http://www.openwetware.org/wiki/IGEM:Peking_University/2008 Our OWW] [http://www.openwetware.org/wiki/IGEM:Peking_University/2008/Notebook Notebook]


Contents

Mathematical Analysis

Introduction

The circuit constructed in vivo in eukaryotic system plays random mutation and artificial function, which theoretically involves proteins and RNAs. However, it remains a question for the efficiency of the random mutation, or the mutation spread space over time. Here we represent a mathematical analysis to solve these problems theoretically.

Goal

  1. Give out sequence spread space by mutation over time
  2. Calculate for the efficiency from a specific sequence to a goal sequence over a fixed time

Details

  1. Part 1 Mutation Model
  2. Part 2 Genetic Circuit
  3. Part 3 Integration of Two Models
Home Page