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X-WR-CALNAME;VALUE=TEXT:Samantha Royle Thesis Defense (Cliff Tabin, Advisor, Harvard Medical School; James Hanken, Co-Advisor)
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SUMMARY:Samantha Royle Thesis Defense (Cliff Tabin, Advisor, Harvard Medical School; James Hanken, Co-Advisor)
DESCRIPTION:<p>	<!--break--><strong>Title:</strong> <em>Limb initiation across tetrapods</em></p><p>	<strong>Abstract:</strong> The earliest stage in limb development is limb initiation, where the limb progenitors are specified and limb proliferation and outgrowth begin. Limb initiation has been well characterised in the mouse and the chick, but limb initiation in non-amniote model systems has been less well studied. Also, while we know much about the fate of limb progenitors (LPs), only recently have genes been identified which are sufficient to confer a LP-like state onto fibroblasts. We sought to investigate these two strands of inquiry, to further understand limb initiation from a number of perspectives.</p><p>	For our first vignette, we investigated the mode of limb initiation in X. laevis, finding that the formation of the hindlimb bud more closely resembles the convergent migration of <em>Tbx5</em>+ cells seen in zebrafish than the EMT observed in amniote limb initiation. This has implications for the evolutionary history of limb initiation.</p><p>	Our second line of inquiry sought to determine whether <em>Evi1 </em>was functionally redundant with <em>Prdm16 </em>in specifying limb progenitors in the mouse. <em>Prdm16 </em>had been shown to be sufficient to induce a LP-like state in fibroblasts, in concert with <em>Zbtb16 </em>and <em>Lin28a. </em>We showed that most <em>Evi1 </em>isoforms were able to substitute for <em>Prdm16 </em>in vitro, suggesting functional redundancy between these genes.</p><p>	<strong>Committee</strong>: Cliff Tabin (Advisor, Harvard Medical School), Jim Hanken (Co-advisor), Elena Kramer, Mansi Srivastava, John Young (Simmons)</p>
LOCATION:HMS Campus, New Research Building, NRB 350
STATUS:CONFIRMED
DTSTART:20230424T143000Z
DTEND:20230424T143000Z
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