Multi-scale dynamics influence the division potential of stomatal lineage ground cells in Arabidopsis

H Hannah F. Fung G Gabriel O. Amador R Renee Dale Y Yan Gong M Macy Vollbrecht J Joel M. Erberich (Department of Biology, Stanford University) A Andrea Mair D Dominique C. Bergmann

Abstract

Abstract During development, many precursor lineages are flexible, producing variable numbers and types of progeny cells. What determines whether precursors differentiate or continue dividing? Here we take a quantitative approach that combines long-term live imaging, statistical modeling and computational simulations to probe the developmental flexibility of stomatal lineage ground cells (SLGC) in Arabidopsis leaves. We discover that cell size is a strong predictor of SLGC behaviour and that cell size is linked to division behaviour at multiple spatial scales. At the neighbourhood scale, cell size correlates with the strength of cell-cell signaling, which affects the rate at which SPEECHLESS (SPCH), a division-promoting transcription factor, is degraded. At the subcellular scale, cell size correlates with nuclear size, which modulates the concentration of SPCH in the nucleus. Our work shows how initial differences in SPCH levels are canalized by nuclear size and cell-cell signaling to inform the behaviour of a flexible cell type.

Article Details

Volume / Issue Vol. 16, Issue 1
Published March 17, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (8)

H

Hannah F. Fung

G

Gabriel O. Amador

R

Renee Dale

Y

Yan Gong

M

Macy Vollbrecht

J

Joel M. Erberich

Department of Biology, Stanford University

A

Andrea Mair

D

Dominique C. Bergmann