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DTSTART:19810329T030000
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UID:DSC-21622
DTSTART;TZID=Europe/Berlin:20250508T130000
SEQUENCE:1746682731
TRANSP:OPAQUE
DTEND;TZID=Europe/Berlin:20250508T140000
URL:https://www.dresden-science-calendar.de/calendar/en/detail/21622
LOCATION:B CUBE\, Tatzberg 4101307 Dresden
SUMMARY:CMCB Life Sciences Seminar: Prof. Ross Waller\, University of Cambr
 idge\, Department of Biochemistry\, UK
CLASS:PUBLIC
DESCRIPTION:Speaker: \nInstitute of Speaker: \nTopics:\nBiologie\, Willkomm
 en\n Location:\n  Name: B CUBE ()\n  Street: Tatzberg 41\n  City: 01307 Dr
 esden\n  Phone: +49 351 463 43000\n  Fax: +49 351 463 40322\nDescription: 
 <p><strong>Host:</strong> Nils Kröger</p> <p><strong>Title:</strong> \"An
  evolutionary cell biology approach to understanding the transition from a
 lgae to parasites\"</p> <p><strong>Abstract:</strong> Dinoflagellates and 
 apicomplexans—together forming the Myzozoa supergroup—are microbial eu
 karyotes that dominate both marine and terrestrial environments. While sup
 erficially they represent a dichotomy between algae and parasites\, closer
  inspection shows that parasitism has arisen multiple times independently 
 in both groups. How is this propensity for transition to parasitism explai
 ned? A challenge to answering this question is the vast number of unique g
 enes and proteins found in myzozoans for which we have no knowledge of the
 ir cellular location or function. We are using spatial proteomics to give 
 cellular context to this novelty that defines myzozoans and reconstruct th
 e evolutionary trajectories that they have taken. This includes understand
 ing how ancestral features such as the photosynthetic chloroplast organell
 es have been repurposed\, and determining which parts of these cells are c
 urrently under strongest selection for change in response to the environme
 nts that they currently interact with.</p>
DTSTAMP:20260416T025924Z
CREATED:20250110T063913Z
LAST-MODIFIED:20250508T053851Z
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