>
Fa   |   Ar   |   En
   A redesigned CRISPR/Cas9 system for marker-free genome editing in Plasmodium falciparum  
   
نویسنده lu j. ,tong y. ,pan j. ,yang y. ,liu q. ,tan x. ,zhao s. ,qin l. ,chen x.
منبع parasites and vectors - 2016 - دوره : 9 - شماره : 1
چکیده    Background: a highly efficient crispr/cas9-based marker-free genome editing system has been established in plasmodium falciparum (pf). however,with the current methods,two drug-selectable markers are needed for episome retention,which may present hurdles for consecutive genome manipulations due to the limited number of available selectable markers. the loading capacity of donor dna is also unsatisfactory due to the large size of the cas9 nuclease and sgrna co-expression system,which limits the size of knock-in dna fragments. because of the inefficient end joining (ej) dna repair mechanism of pf,a suicide-rescue approach could be used to address the challenges. cas9 nuclease and sgrna were co-expressed from a single plasmid (suicide vector) with one selectable marker,and the donor dna was ligated into the other plasmid (rescue vector) containing only the ampicillin-resistance gene (ampr) and a colel replication origin (ori). nonetheless,whether this approach can mediate even the regular gene editing in pf remains unknown. this study aimed to demonstrate the basic gene editing function of this cas9-mediated suicide-rescue system. findings: the suicide and rescue vectors were constructed and co-transfected into pf3d7. this system worked as expected when used to disrupt the pfset2 gene and to insert a green fluorescent protein-renilla luciferase (gfp-ruc) fusion gene cassette of 3334 base pairs (bp) into the pf47 locus,demonstrating that the suicide vector actually induced double-strand breaks (dsbs) and that the rescue vector functioned without maintenance via drug selection. conclusions: the adapted marker-free crispr/cas9 system with only a single episome-selectable marker performs well as the current systems for general gene editing which lays a solid foundation for further studies including consecutive gene manipulations and large gene knock-ins. © 2016 lu et al.
کلیدواژه CRISPR/Cas9; Marker-free; Plasmodium falciparum
آدرس laboratory of pathogen biology,state key laboratory of respiratory disease,center for infection and immunity,guangzhou institutes of biomedicine and health (gibh),chinese academy of sciences,guangzhou science park,no. 190 kaiyuan avenue,guangzhou,guangdong province,510530, China, cas lamvac biotech co.,ltd,guangzhou science park,no. 3 lanyue road,guangzhou,guangdong province,510530, China, cas lamvac biotech co.,ltd,guangzhou science park,no. 3 lanyue road,guangzhou,guangdong province,510530, China, laboratory of pathogen biology,state key laboratory of respiratory disease,center for infection and immunity,guangzhou institutes of biomedicine and health (gibh),chinese academy of sciences,guangzhou science park,no. 190 kaiyuan avenue,guangzhou,guangdong province,510530, China, laboratory of pathogen biology,state key laboratory of respiratory disease,center for infection and immunity,guangzhou institutes of biomedicine and health (gibh),chinese academy of sciences,guangzhou science park,no. 190 kaiyuan avenue,guangzhou,guangdong province,510530, China, laboratory of pathogen biology,state key laboratory of respiratory disease,center for infection and immunity,guangzhou institutes of biomedicine and health (gibh),chinese academy of sciences,guangzhou science park,no. 190 kaiyuan avenue,guangzhou,guangdong province,510530, China, laboratory of pathogen biology,state key laboratory of respiratory disease,center for infection and immunity,guangzhou institutes of biomedicine and health (gibh),chinese academy of sciences,guangzhou science park,no. 190 kaiyuan avenue,guangzhou,guangdong province,510530, China, laboratory of pathogen biology,state key laboratory of respiratory disease,center for infection and immunity,guangzhou institutes of biomedicine and health (gibh),chinese academy of sciences,guangzhou science park,no. 190 kaiyuan avenue,guangzhou,guangdong province,510530, China, laboratory of pathogen biology,state key laboratory of respiratory disease,center for infection and immunity,guangzhou institutes of biomedicine and health (gibh),chinese academy of sciences,guangzhou science park,no. 190 kaiyuan avenue,guangzhou,guangdong province,510530, China
 
     
   
Authors
  
 
 

Copyright 2023
Islamic World Science Citation Center
All Rights Reserved