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            Viruses as vectors for the delivery of gene-editing reagents

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            Author(s)
            Ellison, Evan E.
            Chamness, James C.
            Voytas, Daniel F.
            Language
            English
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            Abstract
            A significant challenge for plant gene editing is the delivery of editing reagents to germline or regenerable cells to recover heritable genetic modifications. Reagent delivery using biolistics or Agrobacterium is only possible with a limited range of species and genotypes, and inefficient editing or lengthy tissue culture steps further limit throughput. Viruses are natural vectors for nucleic acids, and both DNA and RNA plant viruses have been engineered to extend or replace conventional vectors for delivery of gene editing reagents. Here, we review aspects of viral biology essential for engineering vectors, highlight landmark studies using viruses to overcome traditional limitations in gene editing, and outline important considerations for the use of viral vectors in new systems or for new targets. Motivated by fundamental differences in both their infection modes and utility as vectors, DNA and RNA viruses are treated separately.
            URI
            https://doab-dev.siscern.org/handle/20.500.12854/177778
            Keywords
            DNA viruses; replicons; homology-directed repair; RNA viruses; mutagenesis; gene editing; thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TV Agriculture and farming::TVK Agronomy and crop production; thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TV Agriculture and farming::TVF Sustainable agriculture; thema EDItEUR::P Mathematics and Science::PS Biology, life sciences::PST Botany and plant sciences
            DOI
            10.19103/AS.2020.0082.28
            ISBN
            9781786769213
            Publication date and place
            Cambridge, 2021
            Grantor
            • University of Minnesota
            Imprint
            Burleigh Dodds Science Publishing
            Series
            Burleigh Dodds Series in Agricultural Science,
            Pages
            26
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              This project received funding from the European Union’s Horizon 2020 research and innovation programme under grant agreement No 871069.

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