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phiC31 Integrase-Mediated Site-Specific Recombination in Barley

The Streptomyces phage phiC31 integrase was tested for its feasibility in excising transgenes from the barley genome through site-specific recombination. We produced transgenic barley plants expressing an active phiC31 integrase and crossed them with transgenic barley plants carrying a target locus...

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Autores principales: Kapusi, Eszter, Kempe, Katja, Rubtsova, Myroslava, Kumlehn, Jochen, Gils, Mario
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3443236/
https://www.ncbi.nlm.nih.gov/pubmed/23024817
http://dx.doi.org/10.1371/journal.pone.0045353
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author Kapusi, Eszter
Kempe, Katja
Rubtsova, Myroslava
Kumlehn, Jochen
Gils, Mario
author_facet Kapusi, Eszter
Kempe, Katja
Rubtsova, Myroslava
Kumlehn, Jochen
Gils, Mario
author_sort Kapusi, Eszter
collection PubMed
description The Streptomyces phage phiC31 integrase was tested for its feasibility in excising transgenes from the barley genome through site-specific recombination. We produced transgenic barley plants expressing an active phiC31 integrase and crossed them with transgenic barley plants carrying a target locus for recombination. The target sequence involves a reporter gene encoding green fluorescent protein (GFP), which is flanked by the attB and attP recognition sites for the phiC31 integrase. This sequence disruptively separates a gusA coding sequence from an upstream rice actin promoter. We succeeded in producing site-specific recombination events in the hybrid progeny of 11 independent barley plants carrying the above target sequence after crossing with plants carrying a phiC31 expression cassette. Some of the hybrids displayed fully executed recombination. Excision of the GFP gene fostered activation of the gusA gene, as visualized in tissue of hybrid plants by histochemical staining. The recombinant loci were detected in progeny of selfed F(1), even in individuals lacking the phiC31 transgene, which provides evidence of stability and generative transmission of the recombination events. In several plants that displayed incomplete recombination, extrachromosomal excision circles were identified. Besides the technical advance achieved in this study, the generated phiC31 integrase-expressing barley plants provide foundational stock material for use in future approaches to barley genetic improvement, such as the production of marker-free transgenic plants or switching transgene activity.
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spelling pubmed-34432362012-09-28 phiC31 Integrase-Mediated Site-Specific Recombination in Barley Kapusi, Eszter Kempe, Katja Rubtsova, Myroslava Kumlehn, Jochen Gils, Mario PLoS One Research Article The Streptomyces phage phiC31 integrase was tested for its feasibility in excising transgenes from the barley genome through site-specific recombination. We produced transgenic barley plants expressing an active phiC31 integrase and crossed them with transgenic barley plants carrying a target locus for recombination. The target sequence involves a reporter gene encoding green fluorescent protein (GFP), which is flanked by the attB and attP recognition sites for the phiC31 integrase. This sequence disruptively separates a gusA coding sequence from an upstream rice actin promoter. We succeeded in producing site-specific recombination events in the hybrid progeny of 11 independent barley plants carrying the above target sequence after crossing with plants carrying a phiC31 expression cassette. Some of the hybrids displayed fully executed recombination. Excision of the GFP gene fostered activation of the gusA gene, as visualized in tissue of hybrid plants by histochemical staining. The recombinant loci were detected in progeny of selfed F(1), even in individuals lacking the phiC31 transgene, which provides evidence of stability and generative transmission of the recombination events. In several plants that displayed incomplete recombination, extrachromosomal excision circles were identified. Besides the technical advance achieved in this study, the generated phiC31 integrase-expressing barley plants provide foundational stock material for use in future approaches to barley genetic improvement, such as the production of marker-free transgenic plants or switching transgene activity. Public Library of Science 2012-09-14 /pmc/articles/PMC3443236/ /pubmed/23024817 http://dx.doi.org/10.1371/journal.pone.0045353 Text en © 2012 Kapusi et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Kapusi, Eszter
Kempe, Katja
Rubtsova, Myroslava
Kumlehn, Jochen
Gils, Mario
phiC31 Integrase-Mediated Site-Specific Recombination in Barley
title phiC31 Integrase-Mediated Site-Specific Recombination in Barley
title_full phiC31 Integrase-Mediated Site-Specific Recombination in Barley
title_fullStr phiC31 Integrase-Mediated Site-Specific Recombination in Barley
title_full_unstemmed phiC31 Integrase-Mediated Site-Specific Recombination in Barley
title_short phiC31 Integrase-Mediated Site-Specific Recombination in Barley
title_sort phic31 integrase-mediated site-specific recombination in barley
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3443236/
https://www.ncbi.nlm.nih.gov/pubmed/23024817
http://dx.doi.org/10.1371/journal.pone.0045353
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