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Ecophysiologie et physiologie animale (ULG)
www.inbios.uliege.be

Engelse naam: Laboratory of Animal Physiology
Overkoepelend instituut: Université de Liège; Faculté des Sciences; Département de Biologie, Ecologie et Evolution (ULG), meer

Adres:
Quartier Vallée 1
Chemin de la Vallée 4
4000 Liège
België
 Personen | Publicaties | Project 
 
Type: Wetenschappelijk
Niveau: Labo

Personen (4)  Top | Publicaties | Project 

Abstract:
Het laboratoire de Physiologie Animale bestudeert de effecten van oxidatieve stress op de organisatie en dynamiek van weefsel en op de celfysiologie van symbiotische cnidaria (rifbouwende koralen, zeeanemonen, kwallen) en onderzoekt strategieën om het functioneel herstel na weefselschade te verbeteren.

Publicaties (14)  Top | Personen | Project 
    ( 11 peer reviewed ) opsplitsen filter
  • Peer reviewed article Canesi, M.; Douville, E.; Bordier, L.; Dapoigny, A.; Coulibaly, G.E.; Montagna, P.; Beraud, E.; Allemand, D.; Planes, S.; Furla, P.; Gilson, E.; Roberty, S.; Zoccola, D.; Reynaud, S. (2024). Porites' coral calcifying fluid chemistry regulation under normal- and low-pH seawater conditions in Palau Archipelago: Impacts on growth properties. Sci. Total Environ. 911: 168552. https://dx.doi.org/10.1016/j.scitotenv.2023.168552, meer
  • Peer reviewed article Roberty, S.; Weis, V.M.; Davy, S.K.; Voolstra, C.R. (2024). Aiptasia: a model system in coral symbiosis research. Front. Mar. Sci. 11: 1370814. https://dx.doi.org/10.3389/fmars.2024.1370814, meer
  • Peer reviewed article Stévenne, C.; Micha, M.; Plumier, J.-C.; Roberty, S. (2021). Corals and sponges under the light of the holobiont concept: how microbiomes underpin our understanding of marine ecosystems. Front. Mar. Sci. 8: 698853. https://dx.doi.org/10.3389/fmars.2021.698853, meer
  • Peer reviewed article Cornet, Y.; François, C.; Compère, P.; Callec, Y.; Roberty, S.; Plumier, J.C.; Javaux, E.J. (2019). New insights on the paleobiology, biostratigraphy and paleogeography of the pre-Sturtian microfossil index taxon Cerebrosphaera. Precambr. Res. 332: 105410. https://dx.doi.org/10.1016/j.precamres.2019.105410, meer
  • Peer reviewed article Dang, K.V.; Pierangelini, M.; Roberty, S.; Cardol, P. (2019). Alternative photosynthetic electron transfers and bleaching phenotypes upon acute heat stress in Symbiodinium and Breviolum spp. (Symbiodiniaceae) in culture. Front. Mar. Sci. 6: 656. https://dx.doi.org/10.3389/fmars.2019.00656, meer
  • Peer reviewed article Roberty, S.; Fransolet, D.; Cardol, P.; Plumier, J.-C.; Franck, F. (2015). Imbalance between oxygen photoreduction and antioxidant capacities in Symbiodinium cells exposed to combined heat and high light stress. Coral Reefs 34(4): 1063-1073. https://dx.doi.org/10.1007/s00338-015-1328-5, meer
  • Peer reviewed article Fransolet, D.; Roberty, S.; Plumier, J.-C. (2014). Impairment of symbiont photosynthesis increases host cell proliferation in the epidermis of the sea anemone Aiptasia pallida. Mar. Biol. (Berl.) 161(8): 1735-1743. dx.doi.org/10.1007/s00227-014-2455-1, meer
  • Peer reviewed article Fransolet, D.; Roberty, S.; Herman, A.-C.; Tonk, L; Hoegh-Guldberg, O; Plumier, J.-C. (2013). Increased cell proliferation and mucocyte density in the sea anemone Aiptasia pallida recovering from bleaching. PLoS One 8(5): -. dx.doi.org/10.1371/journal.pone.0065015, meer
  • Peer reviewed article Fransolet, D.; Roberty, S.; Plumier, J.-C. (2012). Establishment of endosymbiosis: the case of cnidarians and Symbiodinium. J. Exp. Mar. Biol. Ecol. 420-421: 1-7. dx.doi.org/10.1016/j.jembe.2012.03.015, meer
  • Peer reviewed article Péqueux, A.; Sébert, P. (2004). Le coût énergétique des échanges d'ions: l'exemple des crustacés euryhalins = The energetic cost of ionic exchange: The example of euryhaline crustaceans. Océanis (Paris) 30(3): 311-329, meer
  • Peer reviewed article Péqueux, A.; Le Bras, P.; Cann-Moisan, C.; Caroff, J.; Sebert, P. (2002). Polyamines, indolamines, and catecholamines in gills and haemolymph of the euryhaline crab, Eriocheir sinensis. Effects of high pressure and salinity. Crustaceana 75(3-4): 567-578. dx.doi.org/10.1163/156854002760095606, meer
  • Roberty, S. (2016). Towards a better understanding of the mechanisms of coral bleaching, in: Mees, J. et al. (Ed.) Book of abstracts – VLIZ Marine Scientist Day. Brugge, Belgium, 12 February 2016. VLIZ Special Publication, 75: pp. 157-160, meer
  • Fransolet, D. (2014). Histological responses of the sea anemone A. pallida to bleaching inducing stresses. PhD Thesis. University of Liège Department of Biology, Ecology and Evolution Laboratory of Ecophysiology and Animal Physiology: Liège. xxi, 179 pp., meer
  • Fransolet, D.; Herman, A.-C.; Roberty, S.; Plumier, J.-C. (2012). Increased number of mucocytes in Aiptasia pallida following bleaching, in: Yellowlees, D. et al. (Ed.) Proceedings of the 12th International Coral Reef Symposium. pp. 5, meer

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  • BENCORE: Belgian Network for Coastal Reseach, meer

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