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March 13, 2026SHILAP Revista de lepidopterología3 citationsOpen Access

Targeting redundant gene families: A multiplexed, tissue-specific CRISPR toolbox for Arabidopsis genetic screens

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MAMoran AnfangRYReem Haj YahyaOCOmer Caldararu

Key Points

  • The study aims to improve spatial control and efficiency in CRISPR genetic screens by addressing gene redundancy in plants.
  • Development of multiplexed CRISPR libraries containing two sgRNAs per construct.
  • Implementation of a double-barcoding strategy for effective tracking of sgRNA combinations.
  • Generation of over 1,000 Arabidopsis lines targeting transporter genes across 114 gene families.
  • Increased gene coverage with the multiplexed design, targeting 707 transporter genes.
  • Improved editing efficiency and functional analysis of gene families involved in nutrient uptake.
  • Revealed hidden phenotypes through enhanced targeting capability.

Abstract

Genome-scale targeted CRISPR libraries for forward genetic screens in plants are powerful tools for functional analysis, but they suffer from limited spatial control, single sgRNA design, and poor handling of genetic redundancy. We develop multiplexed CRISPR libraries in which each construct contains two sgRNAs that simultaneously target multiple members of a gene family. The libraries can also function at the cell-type-specific and tissue levels. A double-barcoding strategy enables efficient tracking and identification of sgRNA combinations at the plant level without individually sequencing each line. Using this platform, we generate over 1,000 Arabidopsis lines that express sgRNAs targeting 707 transporter genes across 114 gene families involved in nutrient uptake. The multiplexed design increases gene coverage and editing efficiency, underscoring its improved targeting capability to reveal hidden phenotypes. This toolbox provides a scalable resource for multi-targeted genome editing and spatially precise forward genetic screens in plants.

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Cite This Study

Anfang et al. (2026) studied this question.

synapsesocial.com/papers/69b3aaa802a1e69014ccb669https://doi.org/10.1016/j.celrep.2026.117055
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