<p>Genome editing is transforming plant biology by enabling precise DNA modifications. However, delivery of editing systems into plants remains challenging, often requiring slow, genotype-specific methods such as tissue culture or transformation<sup><CitationRef CitationID="CR1">1</CitationRef></sup>. Plant viruses, which naturally infect and spread to most tissues, present a promising delivery system for editing reagents. However, many viruses have limited cargo capacities, restricting their ability to carry large CRISPR-Cas systems. Here we engineered tobacco rattle virus (TRV) to carry the compact RNA-guided TnpB enzyme ISYmu1 and its guide RNA. This innovation allowed transgene-free editing of <i>Arabidopsis thaliana</i> in a single step, with edits inherited in the subsequent generation. By overcoming traditional reagent delivery barriers, this approach offers a novel platform for genome editing, which can greatly accelerate plant biotechnology and basic research.</p>

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Viral delivery of an RNA-guided genome editor for transgene-free germline editing in Arabidopsis

  • Trevor Weiss,
  • Maris Kamalu,
  • Honglue Shi,
  • Zheng Li,
  • Jasmine Amerasekera,
  • Zhenhui Zhong,
  • Benjamin A. Adler,
  • Michelle M. Song,
  • Kamakshi Vohra,
  • Gabriel Wirnowski,
  • Sidharth Chitkara,
  • Charlie Ambrose,
  • Noah Steinmetz,
  • Ananya Sridharan,
  • Diego Sahagun,
  • Jillian F. Banfield,
  • Jennifer A. Doudna,
  • Steven E. Jacobsen

摘要

Genome editing is transforming plant biology by enabling precise DNA modifications. However, delivery of editing systems into plants remains challenging, often requiring slow, genotype-specific methods such as tissue culture or transformation1. Plant viruses, which naturally infect and spread to most tissues, present a promising delivery system for editing reagents. However, many viruses have limited cargo capacities, restricting their ability to carry large CRISPR-Cas systems. Here we engineered tobacco rattle virus (TRV) to carry the compact RNA-guided TnpB enzyme ISYmu1 and its guide RNA. This innovation allowed transgene-free editing of Arabidopsis thaliana in a single step, with edits inherited in the subsequent generation. By overcoming traditional reagent delivery barriers, this approach offers a novel platform for genome editing, which can greatly accelerate plant biotechnology and basic research.