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      PEG-mediated, Stable, Nuclear and Chloroplast Transformation of Cyanidioschizon merolae

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          Abstract

          The ability to achieve nuclear or chloroplast transformation in plants has been a long standing goal, especially in microalgae research. Over past years there has been only little success, but transient and stable nuclear transformation has been achieved in multiple species. Our newly developed method allows for relatively simple transformation of Cyanidioschizon merolae in both nuclear and chloroplast genome by means of homologous recombination between the genome and a transformation vector. The use of chloramphenicol resistance gene as the selectable marker allows for plate-based efficient selection of mutant colonies. Overall, the method allows the generation of mutant strains within 6 months.

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          Author and article information

          Journal
          Bio Protoc
          Bio Protoc
          Bio Protoc
          Bio-Protoc
          Bio-protocol
          Bio-Protocol (1075 Lorne Way, Sunnyvale, CA 94087, USA )
          2331-8325
          05 September 2019
          05 September 2019
          : 9
          : 17
          : e3355
          Affiliations
          [1]Faculty of Biology, University of Warsaw, Miecznikowa 1, 02-096, Warsaw, Poland
          Author notes
          *For correspondence: maximus@ 123456biol.uw.edu.pl
          Article
          PMC7854100 PMC7854100 7854100 3355
          10.21769/BioProtoc.3355
          7854100
          33654854
          9cdd542e-5302-44f3-b795-b3e2649dd167
          Copyright © 2019 The Authors; exclusive licensee Bio-protocol LLC.
          History
          : 22 March 2019
          : 22 August 2019
          : 22 August 2019
          Categories
          Methods Article
          Biology
          Clinical Protocols

          Nuclear transformation,Chloramphenicol selection,Mutant selection,PEG mediated vector delivery,Chloroplast transformation,Cyanidioschizon merolae

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