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TZID:Europe/Berlin
TZUNTIL:20221030T010000Z
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DTSTART:20201025T030000
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RDATE:20211031T030000
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UID:www.bayceer.uni-bayreuth.de-bayceer-t154776id
DTSTAMP:20260815T033048Z
DESCRIPTION:Communication between organisms is key to their reproduction an
 d survival with chemical communication being the most widespread and oldes
 t route for communication. In stark contrast to well-studied terrestrial c
 hemical ecology\, most utilized infochemicals and\, respectively\, their c
 oncentrations\, receptive organs and receptors of this key communication c
 hannel are still unknown in the aquatic counterpart\, especially in arthro
 pods. By utilizing whole organ as well as single-cell electrophysiological
  measurements at the putative receptor sites under water\, we are optimist
 ic to be able to investigate the whole bandwidth of aquatic semiochemicals
  (allomones\, kairomones\, synomones\, releaser and primer pheromones). Cr
 eative substance enrichment\, chromatography and non-target mass spectrome
 try will enable us to narrow down the chemical blends that evoke physiolog
 ical or behavioural changes. Behavioural\, physiological or life-history e
 xperiments will be our litmus test for these chemicals. The verification o
 f aquatic semiochemicals will enable us to investigate the evolution of ch
 emical communication below water as well as their receptor sites. Simultan
 eously\, these semiochemicals will allow us to investigate the infochemica
 l effect - the alteration of the odour perception of organisms by anthropo
 genic substances &ndash\; on a whole new level.&nbsp\; I hope to engage in
  discussion about problems and solutions\, and possibly enable cooperation
  within and beyond BayCEER.\n***\n- new member in BayCEER -
DTSTART;TZID=Europe/Berlin:20201126T121500
DTEND;TZID=Europe/Berlin:20201126T134500
SUMMARY:Dr. Matthias Schott\, Animal Ecology I\, BayCEER\, University of Ba
 yreuth (Homepage): Perception under water
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