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Periodic stripe formation by a Turing mechanism operating at growth zones in the mammalian palate.


ABSTRACT: We present direct evidence of an activator-inhibitor system in the generation of the regularly spaced transverse ridges of the palate. We show that new ridges, called rugae, that are marked by stripes of expression of Shh (encoding Sonic hedgehog), appear at two growth zones where the space between previously laid rugae increases. However, inter-rugal growth is not absolutely required: new stripes of Shh expression still appeared when growth was inhibited. Furthermore, when a ruga was excised, new Shh expression appeared not at the cut edge but as bifurcating stripes branching from the neighboring stripe of Shh expression, diagnostic of a Turing-type reaction-diffusion mechanism. Genetic and inhibitor experiments identified fibroblast growth factor (FGF) and Shh as components of an activator-inhibitor pair in this system. These findings demonstrate a reaction-diffusion mechanism that is likely to be widely relevant in vertebrate development.

SUBMITTER: Economou AD 

PROVIDER: S-EPMC3303118 | biostudies-literature | 2012 Feb

REPOSITORIES: biostudies-literature

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Periodic stripe formation by a Turing mechanism operating at growth zones in the mammalian palate.

Economou Andrew D AD   Ohazama Atsushi A   Porntaveetus Thantrira T   Sharpe Paul T PT   Kondo Shigeru S   Basson M Albert MA   Gritli-Linde Amel A   Cobourne Martyn T MT   Green Jeremy B A JB  

Nature genetics 20120219 3


We present direct evidence of an activator-inhibitor system in the generation of the regularly spaced transverse ridges of the palate. We show that new ridges, called rugae, that are marked by stripes of expression of Shh (encoding Sonic hedgehog), appear at two growth zones where the space between previously laid rugae increases. However, inter-rugal growth is not absolutely required: new stripes of Shh expression still appeared when growth was inhibited. Furthermore, when a ruga was excised, n  ...[more]

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