The impact of cell size on morphogen gradient precision


Loading...

Date

2023-05

Publication Type

Journal Article

ETH Bibliography

yes

Citations

Web of Science:
Altmetric

Data

Abstract

Tissue patterning during embryonic development is remarkably precise. Here, we numerically determine the impact of the cell diameter, gradient length and the morphogen source on the variability of morphogen gradients. We show that the positional error increases with the gradient length relative to the size of the morphogen source, and with the square root of the cell diameter and the readout position. We provide theoretical explanations for these relationships, and show that they enable high patterning precision over developmental time for readouts that scale with expanding tissue domains, as observed in the Drosophila wing disc. Our analysis suggests that epithelial tissues generally achieve higher patterning precision with small cross-sectional cell areas. An extensive survey of measured apical cell areas shows that they are indeed small in developing tissues that are patterned by morphogen gradients. Enhanced precision may thus have led to the emergence of pseudostratification in epithelia, a phenomenon for which the evolutionary benefit had so far remained elusive.

Publication status

published

Editor

Book title

Journal / series

Volume

150 (10)

Pages / Article No.

Publisher

Company of Biologists

Event

Edition / version

Methods

Software

Geographic location

Date collected

Date created

Subject

Morphogen gradient; Patterning; Precision; Development; Cell size

Organisational unit

03791 - Iber, Dagmar / Iber, Dagmar check_circle

Notes

Funding

170930 - A 3D Cell-Based Simulation Framework for Morphogenetic Problems (SNF)

Related publications and datasets