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16.04.2024 10:00

Insect diet reflected by the wear and tear on their jaws

Pressestelle Uni Kiel Presse, Kommunikation und Marketing
Christian-Albrechts-Universität zu Kiel

    Method could provide insights into past ecological change

    - A recent study by Kiel University and the University of Tokyo shows that cricket' mouthparts wear differently depending on the type of food they eat
    - Three-dimensional microscopy images can be used to objectively determine the type and severity of wear
    - The method could be used, for example, to analyse insect collections in museums. The results could provide indications of past ecological changes.

    Show me your jaw and I'll tell you what you eat: this could be the motto of a study conducted at Kiel University (CAU) and the University of Tokyo. The researchers investigated whether the wear and tear on insect mouthparts can be used to determine their eating habits. This type of analysis has been standard for vertebrates for decades, because scientists can gain far-reaching insights into the living conditions of the species studied from the results. In the case of vertebrates this is particularly interesting for fossil finds: a look at the teeth reveals a lot about the ecological niche in which the animal in question lived millions of years ago.

    Iron deposits instead of tooth enamel

    "We wanted to know whether this method could also be transferred to insects," explains Dr Daniela Winkler from the Institute of Zoology at Kiel University. "They don't have teeth, but they do have mandibles, which they use to crush their food." Similar to teeth, insect jaws also have a protective layer that makes them less sensitive to abrasion. This does not consist of tooth enamel, however, but of embedded metals such as zinc or iron. "We investigated what traces certain food components leave on the mandibles despite this protective layer," says Winkler.

    The zoologist is an expert in dental analyses – and also a pioneer in this field: a few years ago, she was the first scientist in the world to prove that the teeth of reptiles also wear out in a characteristic way depending on their diet. Her findings enable completely new insights into the ecology of dinosaurs, for example. She and her colleagues from Japan have now also ventured in uncharted terretory with insects. "We carried out experiments with crickets that we fed differently," she says. "All the animals were fed alfalfa in pellet form. However, we mixed different ingredients into this basic food, including coarse quartz sand or volcanic ash."

    Mandibles wear down very similarly to guinea pig teeth

    The experiment ran for a month. During this time, the researchers made several three-dimensional surface scans of the mandibles using a special microscope. With the help of a computerised, automated evaluation method, they then measured the topography of the mandible surface – in simple terms: how rough it was. They recorded more than 40 parameters in total, including the average depth of the furrows and the complexity of the wear patterns. One finding even surprised Winkler herself: "We previously investigated the wear of guinea pig teeth in a similar way – also using food pellets to which we had added quartz sand or ash to simulate the ingestion of such particles in their natural habitat. Because this actually occurs frequently in herbivores," she says. "The mandibles of crickets wear out in an almost identical way, although they are considerably smaller and their mouthparts have a completely different structure."

    Reliable insight into the crickets' diet

    In fact, just a few days after the start of the experiment, it was possible to tell with great certainty from the parameters how the creatures had been fed. The marks on the mandibles obviously provide reliable insight into the crickets' diet. However, the method is probably not suitable for fossilised insect finds. This is because the mandibles must be preserved in a three-dimensional form, which is rarely the case. Insects preserved in amber cannot be analysed in this way either, as the jaws are covered by a layer of resin.
    Nevertheless, the results may be of substantial interest for experts: many natural history museums around the world have large collections of insects. Some of these crickets, beetles, bugs and dragonflies are several hundred years old. Their mandibles document how their ecological niche has changed since then – through human intervention, environmental degradation, climate change or the immigration of new plant species. "The marks also show how quickly the insects adapted to this change," explains Winkler: "Whether, for example, they directly tapped into new food sources when their favourite plant became scarcer – or whether they only did so when they could no longer survive otherwise."

    Photos are available for download at:

    http://www.uni-kiel.de/de/pressemitteilungen/2024/055-DSC_0100.JPG
    Picture of a cricket. The mouthparts are difficult to see from this angle.
    © Shinji Nagata, University of Tokyo

    http://www.uni-kiel.de/de/pressemitteilungen/2024/055-cover_image_submission.jpg
    The microscopy images show cricket mandibles on day 21 of the experiment – top after feeding pellets without admixtures (control), in the middle with pellets and 8 percent quartz dust, at the bottom with pellets and 4 percent volcanic ash © Daniela Winkler, Kiel University

    Kiel University
    Press, Communication and Marketing, Eva Sittig, Text/editing: Frank Luerweg
    Postal address: D-24098 Kiel, Germany, Telephone: (0431) 880-2104, Fax: (0431) 880-1355
    E-mail: presse@uv.uni-kiel.de Internet: www.uni-kiel.de Twitter: www.twitter.com/kieluni
    Facebook: www.facebook.com/kieluni Instagram: www.instagram.com/kieluni

    Link to the press release: http://www.uni-kiel.de/en/details/news/055-insects-mandibles


    Wissenschaftliche Ansprechpartner:

    Dr Daniela Winkler
    Zoology and Functional Morphology of Vertebrates
    Institute of Zoology
    Kiel University
    Telephone: +49 (0)431 880-1603
    E-mail: dwinkler@zoologie.uni-kiel.de


    Originalpublikation:

    Original publication:
    Winkler DE, Seike H, Nagata S, Kubo MO. 2024 Mandible microwear texture analysis of crickets raised on diets of different abrasiveness reveals universality of diet-induced wear. Interface Focus 14: 20230065.
    https://doi.org/10.1098/rsfs.2023.0065


    Weitere Informationen:

    http://www.uni-kiel.de/en/details/news/055-insects-mandibles


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    Biologie, Ernährung / Gesundheit / Pflege, Tier / Land / Forst, Umwelt / Ökologie
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