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Fluorescence-activated multi-organelle mapping of subcellular plant hormone distribution.

Vladimír SkalickýIoanna AntoniadiAleš PĕnčíkIvo ChamrádRené LenobelMartin F KubešMarek ZatloukalAsta ŽukauskaitMiroslav StrandKaren LjungOndřej Novák
Published in: The Plant journal : for cell and molecular biology (2023)
Auxins and cytokinins are two major families of phytohormones that control most aspects of plant growth, development and plasticity. Their distribution in plants has been described, but the importance of cell- and subcellular-type specific phytohormone homeostasis remains undefined. Herein, we revealed auxin and cytokinin distribution maps showing their different organelle-specific allocations within the Arabidopsis plant cell. To do so, we have developed Fluorescence-Activated multi-Organelle Sorting (FAmOS), an innovative subcellular fractionation technique based on flow cytometric principles. FAmOS allows the simultaneous sorting of four differently labelled organelles based on their individual light scatter and fluorescence parameters while ensuring hormone metabolic stability. Our data showed different subcellular distribution of auxin and cytokinins, revealing the formation of phytohormone gradients that have been suggested by the subcellular localization of auxin and cytokinin transporters, receptors and metabolic enzymes. Both hormones showed enrichment in vacuoles, while cytokinins were also accumulated in the endoplasmic reticulum.
Keyphrases
  • plant growth
  • single cell
  • endoplasmic reticulum
  • single molecule
  • energy transfer
  • cell therapy
  • arabidopsis thaliana
  • high resolution
  • stem cells
  • transcription factor
  • machine learning
  • high density