Turing pattern design principles and their robustness

Author:

Vittadello Sean T.1ORCID,Leyshon Thomas2,Schnoerr David2,Stumpf Michael P. H.13ORCID

Affiliation:

1. School of BioSciences, University of Melbourne, Melbourne, Victoria 3010, Australia

2. Department of Life Sciences, Imperial College London, London, UK

3. School of Mathematics and Statistics, University of Melbourne, Melbourne, Victoria 3010, Australia

Abstract

Turing patterns have morphed from mathematical curiosities into highly desirable targets for synthetic biology. For a long time, their biological significance was sometimes disputed but there is now ample evidence for their involvement in processes ranging from skin pigmentation to digit and limb formation. While their role in developmental biology is now firmly established, their synthetic design has so far proved challenging. Here, we review recent large-scale mathematical analyses that have attempted to narrow down potential design principles. We consider different aspects of robustness of these models and outline why this perspective will be helpful in the search for synthetic Turing-patterning systems. We conclude by considering robustness in the context of developmental modelling more generally. This article is part of the theme issue ‘Recent progress and open frontiers in Turing’s theory of morphogenesis’.

Funder

Volkswagen Foundation

Biotechnology and Biological Sciences Research Council

Publisher

The Royal Society

Subject

General Physics and Astronomy,General Engineering,General Mathematics

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