Difference between revisions of "Team:Marburg/Description"

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                       <br>
 
                       <br>
 
                       In recent years, the CRISPR system has enabled precise gene editing. Gene editing is well
 
                       In recent years, the CRISPR system has enabled precise gene editing. Gene editing is well
                       feasible in UTEX 2973 with the CRISPR technology and an alternative nuclease Cpf1 from the
+
                       feasible in UTEX 2973 with the CRISPR technology and an alternative nuclease Cas12a from the
 
                       organism <i>Francisella novicida</i> as Cas9 is toxic to cyanobacteria <a
 
                       organism <i>Francisella novicida</i> as Cas9 is toxic to cyanobacteria <a
 
                         hre="https://www.nature.com/articles/srep39681"> (Ungerer & Pakrasi, 2016)</a>.<br>
 
                         hre="https://www.nature.com/articles/srep39681"> (Ungerer & Pakrasi, 2016)</a>.<br>
Line 440: Line 440:
 
                 The most commonly used system is the CRISPR/Cas9 system, but another attractive system is CRISPR/Cas12a,
 
                 The most commonly used system is the CRISPR/Cas9 system, but another attractive system is CRISPR/Cas12a,
 
                 also called
 
                 also called
                 CRISPR/Cpf1. The main differences are that Cas9 introduces blunt ends when cutting DNA, while Cas12a
+
                 CRISPR/Cas12a. The main differences are that Cas9 introduces blunt ends when cutting DNA, while Cas12a
 
                 produces sticky ends
 
                 produces sticky ends
 
                 and that Cas9 requires a tracrRNA for crRNA maturation, while Cas12a only needs the crRNA as a guide. In
 
                 and that Cas9 requires a tracrRNA for crRNA maturation, while Cas12a only needs the crRNA as a guide. In

Revision as of 14:53, 8 December 2019

D E S C R I P T I O N


We proudly present our project SYNTEX. We are establishing the new chassis Synechocococcus elongatus UTEX 2973 for phototrophic Synthetic Biology.


SYNECHOCOCCUS
ELONGATUS


An extensive review on the history of our chassis, recent findings and its potential future.

STRAIN
ENGINEERING


Here we show the results of our Strain Engineering project to tame our "wolf".

MARBURG
COLLECTION 2.0


We present to you the Marburg Collection 2.0, an extensive addition to the previosly established part collection that focuses around cyanobacteria.

P R O J E C T
I N S P I R A T I O N


The inspiration for our project.

R E F E R E N C E S


Here we list up our references.