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X-WR-CALNAME;VALUE=TEXT:OEB Seminar Series
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SUMMARY:OEB Seminar Series
DESCRIPTION:<p><a data-url="http://hoekstra.oeb.harvard.edu/" href="http://hoekstra.oeb.harvard.edu/" target="_blank"><drupal-media data-entity-type="media" data-entity-uuid="5a0f7585-43e9-4f38-8aca-d16125e5f801" data-align="left" alt="Hopi Hoekstra" data-view-mode="hwp_small"></drupal-media>Hopi Hoekstra</a><br>Harvard University, Department of Organismic and Evolutionary Biology<br><em>"How the mouse got its stripes"</em></p><p> </p><p><!--break--></p><p><strong>Abstract:</strong>  <span class="s1" data-mce-mark="1">Color patterns are among the most conspicuous traits found in nature and can have a profound impact on fitness. However, little is known about the mechanisms underlying their formation and subsequent evolution, especially in mammals. In this talk, I will show that, in the African striped mouse (<em>Rhabdomys</em> <em>pumilio</em>), their dorsal stripes </span><span class="s1" data-mce-mark="1">result</span><span class="s1" data-mce-mark="1"> from underlying differences in pigment cell maturation, which gives rise to spatial variation in hair color. Next, we identify a transcription factor (TF) that regulates this process. In the dorsal skin of embryos, patterned expression of this TF foreshadows pigment stripes, and acts to directly repress the master regulator of melanocyte differentiation, giving rise to light-colored hair. Moreover, this same TF is also upregulated in the light stripes of chipmunks, which have independently evolved a similar pattern of dorsal striping. Our results reveal </span><span class="s1" data-mce-mark="1">a previously unappreciated mechanism for modulating spatial variation in pigmentation,</span><span class="s1" data-mce-mark="1"> and provide new insight into the ways in which phenotypic novelty evolves.  </span></p>
LOCATION:Biological Labs Main Lecture Hall, 16 Divinity Avenue
STATUS:CONFIRMED
DTSTART:20160908T200000Z
DTEND:20160908T200000Z
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