Parasitic wasps existed as early as several million years ago. Within a project coordinated by Karlsruhe Institute of Technology (KIT), researchers of various disciplines for the first time definitively discovered fossil parasites inside their hosts. The scientists studied fly pupae from old collections using ultrafast X-ray imaging. They found 55 cases of parasitation and described four extinct wasp species that were unknown until now. Their findings are reported in Nature Communications.
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Digitally resurrected: the parasitic wasp Xenomorphia resurrecta deposits an egg in a fly pupa [Credit: Thomas van de Kamp, KIT; Nature Communications] |
Within the KIT-coordinated project, researchers identified four so far unknown extinct wasp species that were endoparasites, i.e. parasites developing inside their host, from the Paleogene that spanned the period from about 66 million years ago to about 23 million years ago. Each of the four parasitic wasp species had its own strategy for adaptation to the host. The most frequently observed species of the four was named "Xenomorphia resurrecta" by the scientists. The genus "Xenomorphia" is named after the creature from the "Alien" science fiction series, which is known as Xenomorph and also develops endoparasitically. The species' name "resurrecta" refers to the "digital resurrection" of the species, says project coordinator Dr. Thomas van de Kamp from KIT's Laboratory for Applications of Synchrotron Radiation (LAS). "Our project proves that it is worthwhile to study old collections afresh with latest technology."
Ultrafast X-ray imaging, largely developed and refined by KIT, enabled new access to the fossils. The researchers studied the samples with synchrotron X-ray microtomography. In optically dense samples, inner structures can only be observed non-invasively and in three dimensions with X-rays. Synchrotron radiation sources, a type of particle accelerators, produce electromagnetic radiation with a much broader spectrum and at much higher intensity than conventional sources. The measurements for the project were made at the UFO high-speed tomography station of the KIT synchrotron.
X-ray microtomography of 1510 fossil fly pupae from the Paleogene revealed parasitations by four species of
parasitoid wasps. The video shows a virtual cut of a pupa, revealing a male parasitoid, which developed inside
its host about 30 million years ago. The species was named Xenomorphia ressurecta, referring to the
Xenomorph from the “Alien” movies[Credit: Thomas van de Kamp, KIT; Nature Communications]
Following imaging of the mineralized fly pupae, the parasitic wasps from the Paleogene were reconstructed digitally. Thus, the project did not only require comprehensive know-how relating to synchrotron X-ray microtomography, but also detailed biological and paleontological knowledge. Project coordinator Dr. Thomas van de Kamp of KIT's LAS is a biologist and has specialized in insect morphology and digital imaging of biological samples. Also, he linked physics to biology. Other main authors are paleontologist Dr. Achim H. Schwermann of the LWL-Museum of Natural History in Münster, expert for fossilization processes, and biologist Dr. Lars Krogmann from the State Museum of Natural History Stuttgart, specialist for parasitic wasps, who systematically classified the discovered parasites and wrote the formal species descriptions. Overall, 18 scientists - biologists, paleontologists, physicists, computer scientists, and mathematicians - from several universities and museums participated in the interdisciplinary project, of these, eight researchers of KIT. Apart from the institutions mentioned, KIT's Institute for Photon Science and Synchrotron Radiation (IPS) and Institute for Data Processing and Electronics (IPE) as well as institutions of the universities of Heidelberg and Bonn were involved.
Source: Karlsruhe Institute of Technology [August 28, 2018]
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