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International team of scientists discovered Africa?s first amber fossils

Pathfinder

Editor, Senior Moderator
International team of scientists discovered Africa?s first amber fossils

01 April 2010 University of Vienna
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Enclosed organisms reveal new insights into the evolution of insects and ancient ecosystems

Scientists have discovered the first amber fossils from the African continent. The fossil resin was found in Ethiopia and is about 95 million years old. The resin was deposited in the Cretaceous period at a time when dinosaurs still roamed the Earth. Matthias Svojtka and Norbert V?vra from the University of Vienna contributed to the study of the unique amber. Insects, spiders, plant remains as well as minute fungi, bacteria and nematodes were entombed in the resin flowing from trees and today provide an exceptional window into a Cretaceous African woodland. The results of this project are now published in the journal PNAS.

The first flowering plants (angiosperms) appeared and diversified in the Cretaceous. Their rise to dominance drastically changed terrestrial ecosystems, and the Ethiopian amber deposit sheds light on this time of change. Parasites, predators and decomposers are among the enclosed insects. Remains of flowering plants and ferns are preserved, as are parasitic fungi that lived on the resin-bearing trees and served as food source for insects.

Twenty researchers from Germany, France, Austria, Ethiopia, Italy, the UK and the USA investigated the newly discovered amber, its inclusions and the geological setting. Two scientists from the Department of Paleontology, University of Vienna, Matthias Svojtka and Norbert V?vra, contributed to the study of animal inclusions and the geochemical analysis of the resin.

Thirteen families of insects have been found, including hymenopterans, thrips, barklice, zorapterans, and remains of moths and beetles. All of them are among the earliest fossil records of these groups from Africa. Particularly intriguing finds are the oldest African ant and a sheet-web weaving spider.

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http://www.alphagalileo.org/ViewItem.aspx?ItemId=72359&CultureCode=en

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Ancient Life Trapped in Amber

Bugs, fungus and other life forms have been discovered trapped in amber from the time of dinosaurs.

Thysanoptera-100408-02.jpg

Thysanoptera encased in amber. Credit: PNAS, M. Svojtka


Stellate-hair-100408-02.jpg

Stellate hair of ferns encased in amber. Credit: PNAS, A. Schmidt

Spider-100408-02.jpg

A spider encased in amber. Credit: PNAS, E. Saupe


Fungal-spores-100408-02.jpg

Fungal spores encased in amber. Credit: PNAS, A. Schmidt


Ethiopian-amber-100408-02.jpg

Ethiopian amber. Credit: PNAS, A. Schmidt


Ant-100408-02.jpg

An ant encased in amber. Credit: PNAS, V. Perrichot


Trichogrammatid-100408-02.jpg

A Trichogrammatid encased in amber. Credit: PNAS, A. Schmidt
http://www.livescience.com/php/multimedia/album_view.php?gid=1879&page=7
 
Re: International team of scientists discovered Africa?s first amber fossils

Cretaceous African life captured in amber

  1. <LI class=contributor id=contrib-1>Alexander R. Schmidt<SUP>a</SUP>,<SUP>1</SUP>, <LI class=contributor id=contrib-2>Vincent Perrichot<SUP>b</SUP>,<SUP>c</SUP>,<SUP>1</SUP>, <LI class=contributor id=contrib-3>Matthias Svojtka<SUP>d</SUP>, <LI class=contributor id=contrib-4>Ken B. Anderson<SUP>e</SUP>, <LI class=contributor id=contrib-5>Kebede H. Belete<SUP>f</SUP>, <LI class=contributor id=contrib-6>Robert Bussert<SUP>g</SUP>, <LI class=contributor id=contrib-7>Heinrich D?rfelt<SUP>h</SUP>, <LI class=contributor id=contrib-8>Saskia Jancke<SUP>i</SUP>, <LI class=contributor id=contrib-9>Barbara Mohr<SUP>i</SUP>, <LI class=contributor id=contrib-10>Eva Mohrmann<SUP>i</SUP>, <LI class=contributor id=contrib-11>Paul C. Nascimbene<SUP>j</SUP>, <LI class=contributor id=contrib-12>Andr? Nel<SUP>k</SUP>, <LI class=contributor id=contrib-13>Patricia Nel<SUP>k</SUP>, <LI class=contributor id=contrib-14>Eugenio Ragazzi<SUP>l</SUP>, <LI class=contributor id=contrib-15>Guido Roghi<SUP>m</SUP>, <LI class=contributor id=contrib-16>Erin E. Saupe<SUP>c</SUP>, <LI class=contributor id=contrib-17>Kerstin Schmidt<SUP>n</SUP>, <LI class=contributor id=contrib-18>Harald Schneider<SUP>o</SUP>, <LI class=contributor id=contrib-19>Paul A. Selden<SUP>c</SUP>,<SUP>p</SUP>, and
  2. Norbert V?vra<SUP>d</SUP>
+ Author Affiliations
  1. <LI class=aff><ADDRESS><SUP>a</SUP>Courant Research Centre Geobiology, Georg-August-Universit?t G?ttingen, 37077 G?ttingen, Germany; </ADDRESS><LI class=aff><ADDRESS><SUP>b</SUP>Centre National de la Recherche Scientifique, Unit? Mixte de Recherche 6118 G?osciences & Observatoire des Sciences de l'Univers de Rennes, Universit? Rennes 1, 35042 Rennes, France; </ADDRESS><LI class=aff><ADDRESS><SUP>c</SUP>Paleontological Institute, University of Kansas, Lawrence, KS 66045; </ADDRESS><LI class=aff><ADDRESS><SUP>d</SUP>Department of Paleontology, Geozentrum, Universit?t Wien, 1090 Vienna, Austria; </ADDRESS><LI class=aff><ADDRESS><SUP>e</SUP>Department of Geology, Southern Illinois University, Carbondale, IL 62901-4502; </ADDRESS><LI class=aff><ADDRESS><SUP>f</SUP> Golden Prospect Mining Company Ethiopia, Addis Ababa, Ethiopia; </ADDRESS><LI class=aff><ADDRESS><SUP>g</SUP>Institut f?r Angewandte Geowissenschaften, Technische Universit?t Berlin, 10623 Berlin, Germany; </ADDRESS><LI class=aff><ADDRESS><SUP>h</SUP>Mikrobielle Phytopathologie and </ADDRESS><LI class=aff><ADDRESS><SUP>n</SUP>Institut f?r ?kologie, Friedrich-Schiller-Universit?t Jena, 07743 Jena, Germany; </ADDRESS><LI class=aff><ADDRESS><SUP>i</SUP> Museum f?r Naturkunde zu Berlin, 10115 Berlin, Germany; </ADDRESS><LI class=aff><ADDRESS><SUP>j</SUP>Division of Invertebrate Zoology, American Museum of Natural History, New York, NY 10024; </ADDRESS><LI class=aff><ADDRESS><SUP>k</SUP>Centre National de la Recherche Scientifique, Unit? Mixte de Recherche 7205, Entomologie, Mus?um National d'Histoire Naturelle, 75005 Paris, France; </ADDRESS><LI class=aff><ADDRESS><SUP>l</SUP>Department of Pharmacology and Anaesthesiology, University of Padua, 35131 Padua, Italy; </ADDRESS><LI class=aff><ADDRESS><SUP>m</SUP>Institute of Geosciences and Earth Resources, National Research Council and Department of Geoscience, University of Padua, 35137 Padua, Italy; and </ADDRESS><LI class=aff><ADDRESS><SUP>o</SUP>Department of Botany and </ADDRESS>
  2. <ADDRESS><SUP>p</SUP>Palaeontology Department, Natural History Museum, London SW7 5BD, United Kingdom </ADDRESS>
  1. Edited* by David L. Dilcher, University of Florida, Gainesville, FL, and approved March 3, 2010 (received for review January 23, 2010)
Abstract

Amber is of great paleontological importance because it preserves a diverse array of organisms and associated remains from different habitats in and close to the amber-producing forests. Therefore, the discovery of amber inclusions is important not only for tracing the evolutionary history of lineages with otherwise poor fossil records, but also for elucidating the composition, diversity, and ecology of terrestrial paleoecosystems. Here, we report a unique find of African amber with inclusions, from the Cretaceous of Ethiopia. Ancient arthropods belonging to the ants, wasps, thrips, zorapterans, and spiders are the earliest African records of these ecologically important groups and constitute significant discoveries providing insight into the temporal and geographical origins of these lineages. Together with diverse microscopic inclusions, these findings reveal the interactions of plants, fungi and arthropods during an epoch of major change in terrestrial ecosystems, which was caused by the initial radiation of the angiosperms. Because of its age, paleogeographic location and the exceptional preservation of the inclusions, this fossil resin broadens our understanding of the ecology of Cretaceous woodlands.

Footnotes

  • <SUP>1</SUP>To whom correspondence may be addressed. E-mail: alexander.schmidt@geo.uni-goettingen.de or vincent.perrichot@univ-rennes1.fr.
  • Author contributions: A.R.S., V.P., and N.V. designed research; A.R.S., V.P., M.S., K.B.A., K.H.B., H.D., S.J., B.M., E.M., P.C.N., A.N., P.N., E.R., G.R., E.E.S., H.S., P.A.S., and N.V. performed research; A.R.S., V.P., M.S., K.B.A., R.B., H.D., B.M., P.C.N., A.N., P.N., E.R., G.R., E.E.S., H.S., P.A.S., and N.V. analyzed data; and A.R.S., V.P., K.B.A., B.M., P.C.N., E.R., E.E.S., K.S., P.A.S., and N.V. wrote the paper.
  • The authors declare no conflict of interest.
  • *This Direct Submission article had a prearranged editor.
  • This article contains supporting information online at www.pnas.org/cgi/content/full/1000948107/DCSupplemental.
  1. Published online before print April 5, 2010, doi: 10.1073/pnas.1000948107 <CITE></CITE>
  1. ? Abstract<LI class=notice>Full Text (PDF)
  2. Supporting Information
http://www.pnas.org/content/early/2010/03/29/1000948107
 
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