Seasonal changes in lipid composition and glycogen storage associated with freeze-tolerance of the earthworm, Dendrobaena octaedra |
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Authors: | Johannes Overgaard Michaela Tollarova Katarina Hedlund Søren O. Petersen Martin Holmstrup |
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Affiliation: | 1. Department of Terrestrial Ecology, National Environmental Research Institute, University of Aarhus, Vejls?vej 25, P.O. Box 314, 8600, Silkeborg, Denmark 2. Department of Zoophysiology, Institute of Biological Sciences, University of Aarhus, Building 540, 8000, Aarhus, Denmark 3. Biology Centre ASCR, Institute of Entomology, Branisovska 31, 370 05, Ceske Budejovice, Czech Republic 4. Faculty of Science, University of South Bohemia, Branisovska 31, 370 05, Ceske Budejovice, Czech Republic 5. Department of Ecology, Lund University, S?lvegatan 37, 223 62, Lund, Sweden 6. Department of Agroecology and Environment, Faculty of Agricultural Sciences, University of Aarhus, Blichers Allé, P.O. Box 50, 8830, Tjele, Denmark
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Abstract: | The earthworm, Dendrobaena octaedra, is a common species in the uppermost soil and humus layers of coniferous forests and tundra in temperate and subarctic regions. The species is freeze-tolerant and may survive several months in a frozen state. Upon freezing, glycogen reserves are rapidly converted to glucose serving as a cryoprotectant and fuel for metabolism. In the present study we investigated the induction of freeze-tolerance under field conditions, and sought to find relationships between temperature, glycogen and fat reserves, membrane phospholipid composition and the degree of freeze-tolerance. Freeze-tolerance was induced when worms had experienced temperatures below 5°C for 2 weeks or more. Freeze-tolerance was linked to the magnitude of glycogen reserves, which also fluctuated with field temperatures being highest in autumn and winter. On the other hand fat reserves seemed not to be linked with freeze-tolerance at all. However, high glycogen alone did not confer freeze-tolerance; alterations in the membrane phospholipid fatty acid composition (PLFA) were also necessary in order to secure freeze-tolerance. The changes in PLFA composition were generally similar to changes occurring in other ectothermic animals during winter acclimation with an increased degree of unsaturation of the PLFAs. |
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Keywords: | Earthworms Freeze-tolerance Glycogen Membrane lipids Winter temperatures |
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