Spatial distribution and impact of the gill-parasitic Mazocraes alosae (Monogenea Polyopisthocotylea) on Alosa alosa and A. fallax (Actinopterygii, Clupeidae)
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  • 作者:Claudia G茅rard ; Maxime Herv茅 ; Elodie R茅veillac ; Anthony Acou
  • 关键词:Alosa sp. ; Mazocraes alosae ; Gill parasite ; Anadromous ; Microhabitat restriction ; Body condition
  • 刊名:Hydrobiologia
  • 出版年:2016
  • 出版时间:January 2016
  • 年:2016
  • 卷:763
  • 期:1
  • 页码:371-379
  • 全文大小:556 KB
  • 参考文献:Acou, A., E. Lasne & E. Feunteun (coord.), 2013. Programme de connaissance Natura2000 en mer: les habitats marins des esp猫ces amphihalines. Evaluation de la coh茅rence du r茅seau Natura2000 en mer pour la grande alose (Alosa alosa), l鈥檃lose feinte (A. fallax sp.), la lamproie marine (Petromyzon marinus) et la lamproie fluviatile (Lampetra fluviatilis). Rapport pr茅liminaire du Mus茅um National d鈥橦istoire Naturelle, Station marine de Dinard.
    Alexandrino, P., R. Faria, D. Linhares, F. Castro, M. Le Corre, R. Sabati茅, J. L. Baglini猫re & S. Weiss, 2006. Interspecific differentiation and intraspecific substructure in two closely related clupeids with extensive hybridization, Alosa alosa and Alosa fallax. Journal of Fish Biology 69: 242鈥?59.CrossRef
    Aprahamian, M. W., 1985. The effect of the migration of Alosa fallax fallax (Lac茅p猫de) into fresh water, on branchial and gut parasites. Journal of Fish Biology 27: 521鈥?32.CrossRef
    Aprahamian, M. W., C. D. Aprahamian, J. L. Baglini猫re, R. Sabati茅 & P. Alexandrino, 2003. Alosa alosa and Alosa fallax spp. literature review and bibliography. R&D Technical Report W1 014/TR. Environment Agency, Bristol.
    Baglini猫re J. L. & P. Elie, 2000. Les aloses (Alosa alosa et Alosa fallax spp.): Ecobiologie et variabilit茅 des populations. CEMAGREF-INRA, Paris.
    Barnes, C., C. J. Sweeting, S. Jennings, J. T. Barry & N. V. C. Polunin, 2007. Effect of temperature and ration size on carbon and nitrogen stable isotope trophic fractionation. Functional Ecology 21(2): 356鈥?62.CrossRef
    Barzegar, M., A. Bozorgnia, M. R. Youssefi & S. M. Hosseinifard, 2012. Determination of Alosa caspia persica parasites in fresh and brine water of Caspian Sea. World Journal of Fish and Marine Sciences 4(2): 175鈥?78.
    Bates D., M. Maechler, B. Boler & S. Walker, 2014. lme4: linear mixed-effects models using Eigen and S4. R package version 1.1鈥?.
    Benjamini, Y. & Y. Hochberg, 1995. Controlling the false discovery rate: a practical and powerful approach to multiple testing. Journal of the Royal Statistical Society Series B 57: 289鈥?00.
    Buchmann, K. & J. Bresciani, 2006. Monogenea (phylum Platyhelminthes). In Woo, P. T. K. (ed.), Fish diseases and disorders, Vol. 1., Protozoan and metazoan infections CABI Publishing, Wallingford: 297鈥?44.
    Bush, A. O., K. D. Lafferty, J. M. Lotz & A. W. Shostak, 1997. Parasitology meets ecology on its own terms: Margolis et al. revisited. Journal of Parasitology 83: 575鈥?83.CrossRef PubMed
    Bychowsky, B. E., 1957. Monogenetic Trematodes their systematics and phylogeny. In Hargis, Jr. W. J. (ed.), Translated by Oustinoff P. C. American Institute of Biological Sciences, Washington, DC.
    Chapman, L. J., C. A. Lanciani & C. A. Chapman, 2000. Ecology of a diplozoon parasite on the gills of the African cyprinid Barbus neumayeri. African Journal of Ecology 38: 312鈥?20.CrossRef
    Combes, C., 1995. Interactions durables. 脡cologie et 茅volution du parasitisme. Masson, Paris.
    Doherty, D., N. O鈥橫aoil茅idigh & T. K. McCarthy, 2004. The biology, ecology and future conservation of Twaite shad (Alosa fallax Lac茅p猫de), Allis shad (Alosa alosa L.) and Killarney shad (Alosa fallax fillarnensis Tate Regan) in Ireland. Biology and Environment. Proceedings of the Royal Irish Academy 104B(3): 93鈥?02.CrossRef
    Guti茅rrez, P. & S. R. Martorelli, 1999. Hemibranch preference by freshwater monogeneans a function of gill area, water current, or both? Folia Parasitologica 46: 263鈥?66.PubMed
    Hayward, C., 2005. Monogenea Polyopisthocotylea (ectoparasitic flukes). In Rohde, K. (ed.), Marine Parasitology. Csiro Publishing, Clayton: 55鈥?3.
    Kearn, G. C., 1998. Parasitism and the Platyhelminths. Chapman & Hall, London.
    Kennedy, C. R., 2009. The ecology of parasites of freshwater fishes: the search for patterns. Parasitology 136: 1653鈥?662.CrossRef PubMed
    Lenth, R. & M. Herv茅, 2015. lsmeans: least-squares means. R package version 2.14.
    MacKenzie, K. & P. Abaunza, 1998. Parasites as biological tags for stock discrimination of marine fish: a guide to procedures and methods. Fisheries Research 38: 45鈥?6.CrossRef
    Neff, B. D. & L. M. Cargnelli, 2004. Relationships between condition factors, parasite load and paternity in bluegill sunfish, Lepomis macrochirus. Environmental Biology of Fishes 71: 297鈥?04.CrossRef
    Paling, J. E., 1968. A method of estimating the relative volumes of water flowing over the different gills of a freshwater fish. Journal of Experimental Biology 48: 533鈥?44.PubMed
    Pante, E. & B. Simon-Bouhet, 2013. Marmap: a package for importing, plotting and analyzing bathymetric and topographic data in R. PLoS One 8: e73051.PubMedCentral CrossRef PubMed
    R Core Team, 2014. R: A Language and Environment for Statistical Computing. R Foundation for Statistical Computing, Vienna, Austria. http://鈥媤ww.鈥婻-project.鈥媜rg/鈥?/span> .
    Rohde, K., 1979. A critical evaluation of intrinsic and extrinsic factors responsible for niche restriction in parasites. The American Naturalist 114(5): 648鈥?71.CrossRef
    Santos, M. J., A. Saraiva, C. Cruz, J. C. Eiras, M. Hermida, C. Ventura & J. P. Soares, 2009. Use of parasites as biological tags in stock identification of the black scabbardfish, Aphanopus carbo Lowe, 1839 (Osteichthyes: Trichiuridae) from Portuguese waters. Scientia Marina 73(S2): 55鈥?2.CrossRef
    Taverny, C. & P. Elie, 2001. R茅partition spatio-temporelle de la grande alose Alosa alosa (Linn茅, 1766) et de l鈥檃lose feinte Alosa fallax (Lac茅p猫de, 1803) dans le Golfe de Gascogne. Bulletin Fran莽ais de la P锚che et de la Pisciculture 362(363): 803鈥?21.CrossRef
    Wootten, R., 1974. The spatial distribution of Dactylogyrus amphibothrium on the gills of ruffe Gymnocephalus cernua and its relation to the relative amounts of water passing over the parts of the gills. Journal of Helminthology 48: 167鈥?74.CrossRef PubMed
    Yamamoto, K., S. Takagi & S. Matsuoka, 1984. Mass mortality of the Japanese anchovy (Engraulis japonica) caused by a gill monogenean Pseudanthocotyloides sp. (Mazocraeidae) in the Sea of Iyo (鈥淚yo-nada鈥?, Ehime Prefecture. Fish Pathology 19: 119鈥?23.CrossRef
  • 作者单位:Claudia G茅rard (1)
    Maxime Herv茅 (2) (3)
    Elodie R茅veillac (4) (5)
    Anthony Acou (4)

    1. UMR ECOBIO 6553, CNRS, Universit茅 de Rennes 1, Avenue du G茅n茅ral Leclerc, 35042, Rennes, France
    2. INRA, UMR1349 IGEPP, 35653, Le Rheu, France
    3. Institute of Plant Sciences - Biotic Interactions, Altenbergrain 21, 3013, Bern, Switzerland
    4. UMR 7208 BOREA, Service des Stations Marines, Mus茅um National d鈥橦istoire Naturelle, 38 rue du Port Blanc, 35800, Dinard, France
    5. ESE Agrocampus-Ouest INRA, Ecologie Halieutique, Rue de Saint Brieuc, 35042, Rennes, France
  • 刊物类别:Biomedical and Life Sciences
  • 刊物主题:Life Sciences
    Hydrobiology
    Ecology
  • 出版者:Springer Netherlands
  • ISSN:1573-5117
文摘
Are the distribution of Mazocraes alosae and its impact on the host similar between Alosa alosa and A. fallax according to their resemblances? Parasites were numbered on each gill of shads sampled in North-East Atlantic coastal waters and connected rivers. Their impact on host condition was measured using girth, gonado-somatic ratio, C/N ratio, and Fulton鈥檚 K. Prevalence and mean intensity of M. alosae were significantly higher for A. alosa than for A. fallax, including in sympatric conditions. The mean intensity varied among sites whatever fish species; it was higher in coastal鈥揺stuarine versus fresh waters only for A. fallax. The distribution of M. alosae was aggregated in the host population whatever species. At the host individual level, some gills (second and third for A. alosa, second for A. fallax) were significantly more inhabited than others, probably in relation with larger water volumes flowing on these gills and mazocraeid sedentary lifestyle. Despite high prevalence and intensity, no negative impact of M. alosae was demonstrated on the host condition whatever the index considered. Our study underlines the major occurrence of M. alosae on shads and the potential use of such benign parasite as biological tag to discriminate closely related host species. Keywords Alosa sp. Mazocraes alosae Gill parasite Anadromous Microhabitat restriction Body condition

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