Caltech Scientists Build Computational Model of Sea Urchin Development

Aug 29, 2012, 11:40 AM by Michael Croft

Caltech | Biologists at Caltech have built the first predictive computational model for the gene network that controls the early stages of embryonic development in the popular model organism, the sea urchin, confirming that interactions among a few dozen genes suffice to tell an embryo how to start the development of different body parts.

 

August 29, 2012 | Biologists at the California Institute of Technology (Caltech) have spent the past decade or so detailing how gene networks control development in sea-urchin embryos. Now, for the first time, they have built a computational model of one of these networks.

This model, the scientists say, does a remarkably good job of calculating what these networks do to control the fates of different cells in the early stages of sea-urchin development—confirming that the interactions among a few dozen genes suffice to tell an embryo how to start the development of different body parts in their respective spatial locations. The model is also a powerful tool for understanding gene regulatory networks in a way not previously possible, allowing scientists to better study the genetic bases of both development and evolution. Caltech