DNA replicons for plant genome engineering.
Journal: 2014/November - Plant Cell
ISSN: 1532-298X
Abstract:
Sequence-specific nucleases enable facile editing of higher eukaryotic genomic DNA; however, targeted modification of plant genomes remains challenging due to ineffective methods for delivering reagents for genome engineering to plant cells. Here, we use geminivirus-based replicons for transient expression of sequence-specific nucleases (zinc-finger nucleases, transcription activator-like effector nucleases, and the clustered, regularly interspaced, short palindromic repeat/Cas system) and delivery of DNA repair templates. In tobacco (Nicotiana tabacum), replicons based on the bean yellow dwarf virus enhanced gene targeting frequencies one to two orders of magnitude over conventional Agrobacterium tumefaciens T-DNA. In addition to the nuclease-mediated DNA double-strand breaks, gene targeting was promoted by replication of the repair template and pleiotropic activity of the geminivirus replication initiator proteins. We demonstrate the feasibility of using geminivirus replicons to generate plants with a desired DNA sequence modification. By adopting a general plant transformation method, plantlets with a desired DNA change were regenerated in <6 weeks. These results, in addition to the large host range of geminiviruses, advocate the use of replicons for plant genome engineering.
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Plant Cell 26(1): 151-163

DNA Replicons for Plant Genome Engineering<sup><a href="#fn1" rid="fn1" class=" fn">[W]</a></sup><sup><a href="#fn2" rid="fn2" class=" fn">[OPEN]</a></sup>

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Author Profile:
Department of Genetics, Cell Biology, and Development, Center for Genome Engineering, University of Minnesota, Minneapolis, Minnesota 55455
Address correspondence to ude.nmu@satyov.
The author responsible for distribution of materials integral to the findings presented in this article in accordance with the policy described in the Instructions for Authors (www.plantcell.org) is: Daniel F. Voytas (ude.nmu@satyov).
www.plantcell.org/cgi/doi/10.1105/tpc.113.119792
www.plantcell.org/cgi/doi/10.1105/tpc.113.119792
Received 2013 Oct 21; Revised 2013 Dec 8; Accepted 2013 Dec 18.

Abstract

Sequence-specific nucleases enable facile editing of higher eukaryotic genomic DNA; however, targeted modification of plant genomes remains challenging due to ineffective methods for delivering reagents for genome engineering to plant cells. Here, we use geminivirus-based replicons for transient expression of sequence-specific nucleases (zinc-finger nucleases, transcription activator–like effector nucleases, and the clustered, regularly interspaced, short palindromic repeat/Cas system) and delivery of DNA repair templates. In tobacco (Nicotiana tabacum), replicons based on the bean yellow dwarf virus enhanced gene targeting frequencies one to two orders of magnitude over conventional Agrobacterium tumefaciens T-DNA. In addition to the nuclease-mediated DNA double-strand breaks, gene targeting was promoted by replication of the repair template and pleiotropic activity of the geminivirus replication initiator proteins. We demonstrate the feasibility of using geminivirus replicons to generate plants with a desired DNA sequence modification. By adopting a general plant transformation method, plantlets with a desired DNA change were regenerated in <6 weeks. These results, in addition to the large host range of geminiviruses, advocate the use of replicons for plant genome engineering.

Abstract
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Acknowledgments

We thank members of the Voytas lab for the helpful discussion and insights with this work. We thank Dominique Robertson for the kind donation of the CaLCuV plasmids. This research was supported by a grant to D.F.V. from the National Science Foundation (DBI 0923827) and by a grant to J.G.-H. from Fundación Alfonso Martín Escudero.

Acknowledgments

AUTHOR CONTRIBUTIONS

N.J.B. and D.F.V. designed the research. N.J.B., J.G.-H., and T.C. performed the experiments. N.J.B. analyzed the data. N.J.B., T.C., and P.A.A. contributed reagents/materials/analysis tools. N.J.B. and D.F.V. wrote the article.

AUTHOR CONTRIBUTIONS

Notes

Glossary

NHEJnonhomologous end joining
ZFNzinc-finger nuclease
TALENtranscription activator–like effector nuclease
CRISPRclustered, regularly interspaced, short palindromic repeat
CasCRISPR-associated protein
LIRlarge intergenic region
CaLCuVcabbage leaf curl virus
BeYDVbean yellow dwarf virus
SIRshort intergenic region
GVRgeminivirus replicon
GUSβ-glucuronidase
sgRNAsynthetic guide RNA
Notes

Glossary

NHEJnonhomologous end joining
ZFNzinc-finger nuclease
TALENtranscription activator–like effector nuclease
CRISPRclustered, regularly interspaced, short palindromic repeat
CasCRISPR-associated protein
LIRlarge intergenic region
CaLCuVcabbage leaf curl virus
BeYDVbean yellow dwarf virus
SIRshort intergenic region
GVRgeminivirus replicon
GUSβ-glucuronidase
sgRNAsynthetic guide RNA
Glossary

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