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  • 2015-2019  (1)
  • 2000-2004  (2)
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  • 1
    Publication Date: 2015-03-05
    Print ISSN: 0021-8561
    Electronic ISSN: 1520-5118
    Topics: Agriculture, Forestry, Horticulture, Fishery, Domestic Science, Nutrition , Process Engineering, Biotechnology, Nutrition Technology
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  • 2
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    In:  EPIC312th Biennial Meeting of the Society for Free Radical Research, SFRR 2004, Buenos Aires, Argentina
    Publication Date: 2019-07-16
    Description: Mitochondria in active epibenthic ectotherms ? ROS consumers instead of producers?Abele#, D., Philipp#, E., Heise#, K., Keller#, M., Pörtner#, H.O., Nikinma*, M.#Dept. Marine Ecophysiol. Ecotoxicol., Alfred-Wegener Institute f. Polar-& Marine Res., Bremerhaven, Germany; *Dept. of Biology, University of Turku, FinlandMitochondria have been described as the major cellular ROS producers, especially under physiological stress. Whereas we were able to detect a net production of ROS in mitochondria isolated from metabolically low tuned infaunal marine bivalves and worms, ROS release from mitochondria, isolated from more active or higher evolved epibenthic animals, scallops and benthic fish, was null under all experimental conditions. Due to considerable antioxidant potential in the matrix, these mitochondria actually seem to prevent ROS release into the cell during routine activity. Higher mitochondrial volume densities and subsarcolemnal localization found in many active polar swimmers, may hence not only decrease diffusion distances of oxygen inside the cells, but help to control the local dioxygen concentration and even mop up extra-mitochondrially produced ROS in the cell periphery, preventing initiation of lipid radical chain reactions.A control of extra-mitochondrial ROS levels could be important to enable onset of stress signalling. In animals, many forms of stress converge into a state of functional hypoxia. We found first evidence that hypoxia inducible transcription factor HIF may be involved in metabolic re-organisation during heat and cold stress in polar and North Sea fish.
    Repository Name: EPIC Alfred Wegener Institut
    Type: Conference , notRev
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  • 3
    Publication Date: 2019-07-16
    Description: The influence of seasonal and acute temperature changes on mitochondrial functions were studied in isolated mitochondria of the eurythermal lugworm Arenicola marina (Polychaeta), with special emphasis on the interdependence of membrane potential and radical production. Acclimatisation to pre-spawning/ summer conditions is associated with rising mitochondrial substrate oxidation rates, higher proton leakage rates, elevated membrane potentials, and increased production of reactive oxygen species (ROS) in isolated mitochondria compared with mitochondria from winter animals. However, a high ROS production was compensated for by higher activities of the antioxidant enzymes catalase and superoxide dismutase, as well as lower mitochondrial densities in summer compared with winter animals. In summer animals, a higher sensitivity of the proton leak rate to changes of membrane potential will confer a better flexibility for metabolic regulation (mild uncoupling) in response to temperature change. These seasonal alterations of mitochondrial functioning support modifications of energy metabolism in eurythermal and euryoxic organisms on intertidal mudflats during summer. In winter, low and less changeable temperatures in intertidal sedimentary environments, allow for higher respiratory efficiency at low aerobic metabolic rates and lower membrane potentials in A. marina mitochondria.
    Repository Name: EPIC Alfred Wegener Institut
    Type: Article , isiRev
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