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Active shape programming drives Drosophila wing disc eversion

delete2024-08-09
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OA
AI
J
Jana F. Fuhrmann
A
Abhijeet Krishna
J
Joris Paijmans
C
Charlie Duclut
G
Greta Cwikla
S
Suzanne Eaton
M
Marko Popović
F
Frank Jülicher
C
Carl D. Modes *
N
Natalie A. Dye *
DOI:10.1126/sciadv.adp0860delete
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Abstract

Abstract

En 中文
How complex 3D tissue shape emerges during animal development remains an important open question in biology and biophysics. Here, we discover a mechanism for 3D epithelial shape change based on active, in-plane cellular events that is analogous to inanimate shape programmable materials, which undergo blueprinted 3D shape transformations from in-plane gradients of spontaneous strains. We study eversion of the Drosophila wing disc pouch, when the epithelium transforms from a dome into a curved fold, quantifying 3D tissue shape changes and mapping spatial patterns of cellular behaviors on the evolving geometry using cellular topology. Using a physical model inspired by shape programming, we find that active cell rearrangements are the major contributor to pouch eversion and validate this conclusion using a knockdown of MyoVI, which reduces rearrangements and disrupts morphogenesis. This work shows that shape programming is a mechanism for animal tissue morphogenesis and suggests that patterns in nature could present design strategies for shape-programmable materials.
Keywords:
IMAGINAL DISKS
CELL-SHAPE
MELANOGASTER
EVAGINATION
PROLIFERATION
MORPHOGENESIS
MECHANISM
PATTERNS
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Journal

Science Advances cover
Science Advances
IF:
12.5
Papers:
2.0W
Citations:
18.1W

Organization

C
centre national de la recherche scientifique (cnrs)
Scholars:
24.5W
Papers: 18.2W
Citations: 279
M
Max Planck Society
Scholars:
8.2W
Papers: 7.7W
Citations: 3.3W
T
Technische Universitat Dresden
Scholars:
3.2W
Papers: 2.5W
Citations: 249
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