Molecular biology needs a map: spatial in situ approaches in plant science

Молекулярной биологии нужна карта: пространственные подходы in situ в науке о растениях
T. Pasternak, О. M. Yaroshko
2026-01-19

chromatin dynamicsgene expressionin situ methodssingle-cell resolutionspatial cell biology
Plants are multicellular organisms composed of diverse cell types, each with its own distinct mRNA, protein and metabolite profile. In addition, each cell type exhibits developmental gradients that require fine-tuned balancing with neighbouring cells in terms of cell geometry and chromatin status. These factors highlight the need for precise knowledge of gene expression and chromatin dynamics during stress responses at the single-cell level in planta, linked to cell position and fate. In this viewpoint, we discuss the importance of spatial cell biology in situ methods in modern plant research and briefly compare it with the methods currently available for studying single-cell resolution.
1
Cell-specific developmental gradients depend on coordination with neighboring cells, including regulation of cell geometry and chromatin status.
2
Plant tissues contain diverse cell types with distinct mRNA, protein, and metabolite profiles, making spatially resolved analysis essential.
3
The viewpoint emphasizes spatial in situ cell-biology methods as important tools for modern plant research and compares them with currently available single-cell approaches.
4
Understanding plant stress responses requires single-cell measurements of gene expression and chromatin dynamics linked to each cell’s position and fate in planta.

plant cells and tissues in situ

spatially resolved single-cell gene expression and chromatin dynamics during stress responses, linked to cell position and fate

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2026-01-19
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T. Pasternak
О. M. Yaroshko
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