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UID:30363464-3236-4266-b662-326465353732
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TZID:Europe/Berlin
TZUNTIL:20251026T010000Z
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TZNAME:CET
DTSTART:20231029T030000
TZOFFSETFROM:+0200
TZOFFSETTO:+0100
RDATE:20241027T030000
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DTSTART:20230326T020000
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TZOFFSETTO:+0200
RDATE:20240331T020000
RDATE:20250330T020000
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BEGIN:VEVENT
UID:www.bayceer.uni-bayreuth.de-bayceer-t168966id
DTSTAMP:20260829T210027Z
DESCRIPTION:Mountains\, with their diverse abiotic gradients\, house an ext
 raordinary concentration of biodiversity relative to their surface area\, 
 and high elevation regions in the tropics are among the world&rsquo\;s fas
 test evolving biodiversity hotspots. The tropical alpine ecosystem\, found
  in South America\, Malesia and Papuasia\, Africa and Hawaii\, is of relat
 ively young evolutionary age\, and it has been exposed to changing climate
 s since its origin\, particularly during the Pleistocene. Here\, we estima
 ted habitat stability between the Last Glacial Maximum and the present to 
 relate current biodiversity to past changes in climate. Further\, we appli
 ed species distribution modeling to address the impact of climate change o
 n the fate of the tropical alpine flora through time. Finally\, I illustra
 te what we learned about mechanisms of speciation in the high Andes and th
 e mountains of East Africa.\n&nbsp\;\n***invited by BayCEER member Nicolai
  N&uuml\;rk
DTSTART;TZID=Europe/Berlin:20231116T000000
DTEND;TZID=Europe/Berlin:20231116T235959
SUMMARY:Dr. Roswitha Schmickel\, Department of Botany\, Charles University 
 in Prague\, Academy of Sciences of the Czech Republic (ASCR) (Homepage): P
 ast and future of the tropical alpine ecosystem: lessons from plant evolut
 ion
TRANSP:TRANSPARENT
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