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peer reviewed · Bioinformatics

Plant Spatio-Temporal Integration Network (PSTN): A framework for dynamic single-cell and spatial transcriptomics in fungal–plant interactions

Yuheng Zhu and colleagues report that pSTN links single-cell and spatial transcriptomics across infection time points instead of integrating each stage separately.

Author affiliations

  • Jilin University
  • China Agricultural University

In plain English

The framework learns cell-to-space mappings while encouraging neighboring time points to agree, aiming to preserve both stage-specific biology and temporal continuity during rice-blast infection.

How the study worked

A plain-language walk through the work behind the result.

  1. Integrated matched rice single-cell and spatial measurements at 0, 12, and 24 hours.

  2. Compared against Tangram, SpaGE, cell2location, and DestVI across three gene-set sizes.

What they found

  • At 4,000 highly variable genes, reported mean squared error stayed below 0.09 at all stages.
  • An independent mouse-cortex benchmark supported only the static reconstruction component across systems.

Why it matters

Longitudinal spatial studies need methods that model time explicitly rather than treating each tissue snapshot as unrelated.

The catch

  • The cross-system benchmark tests static reconstruction, not the full temporal claim.
  • Results remain limited to the datasets described in the accepted manuscript.

Evidence ledger

Sources behind this brief

  1. 01
    Primary source

    Bioinformatics accepted manuscript

    peer reviewed · Accessed August 24, 2026

  2. 02
    Supporting context

    PSTN repository

    author reported result · Accessed August 24, 2026