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X-WR-CALNAME;VALUE=TEXT:OEB Seminar Series
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SUMMARY:OEB Seminar Series
DESCRIPTION:<p>	<drupal-media data-entity-type="media" data-entity-uuid="40776e15-8585-4f82-ba71-eda3e56049c4" data-align="left" alt="Daniel Matute" data-view-mode="hwp_small"></drupal-media> <a data-url="http://dm-incompatibilities.org/index.html" href="http://dm-incompatibilities.org/index.html" target="_blank" title="">Daniel Matute</a><br>Assistant Professor, Department of Biology<br>The University of North Carolina at Chapel Hill</p><p>	<!--break--><em>"The Genetic Basis of Female Mate Choice in</em> Drosophila"</p><p>	<strong>Abstract:</strong> Female mating preference for conspecific males involves the evolution of new traits that allow individuals to recognize conspecifics <em>and</em> discriminate against heterospecifics. My group is leveraging the power of <em>Drosophila</em> genetics to identify the genetic, ethological, and neurobiological basis of female mating choice in a classic case of incipient speciation: the two races of <em>D. melanogaster</em>—called Cosmopolitan (<em>M</em>) and Zimbabwe (<em>Z</em>). These two races show strong behavioral isolation in the form of <em>Z</em> female mate choice; <em>Z</em> females strongly prefer to mate with males from their own<em> </em>race. Such a complex behavioral trait integrates signals on multiple sensory channels and is likely caused by changes in multiple genes; the precise genetic basis for this preference has remained unknown. Using multiple mapping approaches (i.e., complementation mapping, introgressions, admixture mapping), we discovered <em>Z</em> alleles involved in female mating choice.<strong> </strong>These results indicate that we can map the genetic basis of female preference despite it being polygenic, and will inevitably lead to a better understanding of the molecular basis for behavioral reproductive isolation.</p><p>	<strong>Host:</strong> Hopkins Lab</p>
LOCATION:Biological Labs Lecture Hall, Room 1080, 16 Divinity Avenue
STATUS:CONFIRMED
DTSTART:20181018T193000Z
DTEND:20181018T193000Z
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