Related Experiment Video
Updated: Aug 31, 2025

Live Cell Imaging of Microtubule Cytoskeleton and Micromechanical Manipulation of the Arabidopsis Shoot Apical Meristem
Published on: May 23, 2020
Mechanical conflict caused by a cell-wall-loosening enzyme activates de novo shoot regeneration
Vijina Varapparambath1, Mabel Maria Mathew1, Anju Pallipurath Shanmukhan1
1Indian Institute of Science Education and Research (IISER), Pune 411008, India; IISER, Thiruvananthapuram 695551, India.
Abstract:
Cellular heterogeneity is a hallmark of multicellular organisms. During shoot regeneration from undifferentiated callus, only a select few cells, called progenitors, develop into shoot. How these cells are selected and what governs their subsequent progression to a patterned organ system is unknown. Using Arabidopsis thaliana, we show that it is not just the abundance of stem cell regulators but rather the localization pattern of polarity proteins that predicts the progenitor's fate. A shoot-promoting factor, CUC2, activated the expression of the cell-wall-loosening enzyme, XTH9, solely in a shell of cells surrounding the progenitor, causing different mechanical stresses in these cells. This mechanical conflict then activates cell polarity in progenitors to promote meristem formation. Interestingly, genetic or physical perturbations to cells surrounding the progenitor impaired the progenitor and vice versa. These suggest a feedback loop between progenitors and their neighbors for shoot regeneration in the absence of tissue-patterning cues.
Related Concept Videos
Role of Microtubules in Cell Wall Deposition
Primary and Secondary Growth in Roots and Shoots
Cell Signaling in Plants
Plant Cell Wall
The Phragmoplast
The...
Morphogenesis

