Related Experiment Video
Updated: Jun 29, 2025

Development of Microfluidic Devices to Study the Elongation Capability of Tip-growing Plant Cells in Extremely Small Spaces
Published on: May 22, 2018
A fitness landscape instability governs the morphological diversity of tip-growing cells
Maxim E Ohairwe1, Branka D Živanović2, Enrique R Rojas1
1Department of Biology, New York University, New York, NY 10003, USA.
Abstract:
Cellular morphology affects many aspects of cellular and organismal physiology. This makes it challenging to dissect the evolutionary basis for specific morphologies since various cellular functions may exert competing selective pressures on this trait, and the influence of these pressures will depend on the specific mechanisms of morphogenesis. In this light, we combined experiment and theory to investigate the complex basis for morphological diversity among tip-growing cells from across the tree of life. We discovered that an instability in the widespread mechanism of "inflationary" tip growth leads directly to a bifurcation in the common fitness landscape of tip-growing cells, which imposes a strict global constraint on their morphologies. This result rationalizes the morphology of an enormous diversity of important fungal, plant, protistan, and bacterial systems. More broadly, our study elucidates the principle that strong evolutionary constraints on complex traits, like biological form, may emerge from emergent instabilities within developmental systems.
More Related Videos
10:24Generation of Heterogeneous Drug Gradients Across Cancer Populations on a Microfluidic Evolution Accelerator for Real-Time Observation
Published on: September 19, 2019
12:52High-Throughput Live Imaging of Microcolonies to Measure Heterogeneity in Growth and Gene Expression
Published on: April 18, 2021
Related Concept Videos
Morphogenesis
Multipotency and Niche of Bulge Stem Cell
Microtubule Instability
Survival Tree
Building a Survival Tree
Constructing a...
Primary and Secondary Growth in Roots and Shoots
Responses to Gravity and Touch