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A single-cell screening platform accelerates functional genetics in plants.

Nature biotechnology · 5 May 2026 · 10.1038/s41587-026-03094-4

Abstract

Elucidating gene function in highly redundant genetic programs such as signaling pathways is challenging in model and nonmodel plants with current whole-plant genetic screening tools. Many of these challenges could be overcome if screens were instead carried out using individual cells harboring genetic perturbations. Here we report a single-cell screening platform, PIVOT (protoplast isolation after virus overexpression in planta), to accelerate identification and functional characterization of plant genes. We use Nicotiana benthamiana as a heterologous host to test gene libraries arrayed in a single leaf. PIVOT harnesses viral superinfection exclusion to ensure single multiplicity of infection per cell during pooled library delivery. Additionally, we engineer a cell-surface protein as a phenotypic marker for isolating cells of interest from a heterogeneous population. Using this system, we recover regulators of cytokinin signaling from an Arabidopsis open reading frame library. We anticipate PIVOT will be broadly applicable for high-throughput, single-cell functional genetic screening across the plant kingdom.

Plant phenotyping relevance

植物の単一細胞スクリーニング基盤を開発し、細胞表面の表現型マーカーで関心細胞を分離する技術が研究の中心であるため、植物表現型取得・選別法として含める。

abstractHere we report a single-cell screening platform, PIVOT (protoplast isolation after virus overexpression in planta), to accelerate identification and functional characterization of plant genes.
abstractAdditionally, we engineer a cell-surface protein as a phenotypic marker for isolating cells of interest from a heterogeneous population.

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