Transcriptional heterochrony in talpid mole autopods

<p>Abstract</p> <p>Background</p> <p>Talpid moles show many specializations in their adult skeleton linked to fossoriality, including enlarged hands when compared to the feet. Heterochrony in developmental mechanisms is hypothesized to account for morphological evolutio...

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Bibliographic Details
Main Authors: Bickelmann Constanze, Mitgutsch Christian, Richardson Michael K, Jiménez Rafael, de Bakker Merijn AG, Sánchez-Villagra Marcelo R
Format: Article
Language:English
Published: BMC 2012-08-01
Series:EvoDevo
Subjects:
Online Access:http://www.evodevojournal.com/content/3/1/16
Description
Summary:<p>Abstract</p> <p>Background</p> <p>Talpid moles show many specializations in their adult skeleton linked to fossoriality, including enlarged hands when compared to the feet. Heterochrony in developmental mechanisms is hypothesized to account for morphological evolution in skeletal elements.</p> <p>Methods</p> <p>The temporal and spatial distribution of <it>SOX9</it> expression, which is an early marker of chondrification, is analyzed in autopods of the fossorial Iberian mole <it>Talpa occidentalis</it>, as well as in shrew (<it>Cryptotis parva</it>) and mouse (<it>Mus musculus</it>) for comparison.</p> <p>Results and discussion</p> <p><it>SOX9</it> expression is advanced in the forelimb compared to the hind limb in the talpid mole. In contrast, in the shrew and the mouse, which do not show fossorial specializations in their autopods, it is synchronous. We provide evidence that transcriptional heterochrony affects the development of talpid autopods, an example of developmental penetrance. We discuss our data in the light of earlier reported pattern heterochrony and later morphological variation in talpid limbs.</p> <p>Conclusion</p> <p>Transcriptional heterochrony in <it>SOX9</it> expression is found in talpid autopods, which is likely to account for pattern heterochrony in chondral limb development as well as size variation in adult fore- and hind limbs.</p>
ISSN:2041-9139