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River management and habitat characteristics of three sympatric aquatic rodents: common muskrat, coypu and European beaver

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Abstract

The ecological environment of three aquatic rodents was studied in the French Ardennes region. Two species, the coypu (Myocastor coypus) and the common muskrat (Ondatra zibethicus), are invasive. By contrast the native European beaver (Castor fiber) was extirpated from the region, subsequently reintroduced, and currently is protected. The aim of this study was to compare the ecological requirements of these three species and predict their future range distributions. We studied the relationship between the species and describe the characteristics of waterways and riparian vegetation in 29 sampling sites. Coypus and muskrats were observed in a variety of riparian habitats and their probability of detection appeared to be independent of waterway width, bank height or bank slope. The availability of numerous herbaceous plants, known to be consumed by these species, may facilitate their settlement. Muskrats are widespread on the French Ardennes waterways, but coypus have not yet colonised the northern part of the region. On the other hand, the beaver was observed primarily in the widest waterways with high banks, where woody plant species, such as Betula, Carpinus and Fraxinus, are found in abundance. Potentially favourable sites for beaver and coypu settlement were analysed to suggest appropriate management according to each species’ status. However, the number of sample sites is weak, especially for sites with beaver, limiting our conclusion.

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References

  • Abbas A (1988) Impact du ragondin (Myocastor coypus Molina) sur une culture de maïs (Zea mays L.) dans le marais Poitevin. Acta Oecol, Oecol Appl 9:173–189

    Google Scholar 

  • Allen AW (1983) Habitat suitability index models: beaver. U.S. Fish and Wildlife Service FWS/OBS-W10.30 Revised

  • Allen AW, Hoffman RD (1984) Habitat suitability index models: muskrats. U.S. Fish and Wildlife Service FWS/OBS-82/10.46

  • Anderson CB, Griffith CR, Rosemond AD, Rozzi R, Dollenz O (2006) The effects of invasive North American beavers on riparian plant communities in Cape Horn, Chile: do exotic beavers engineer differently in sub-Antartic ecosystems? Biol Conserv 128:467–474

    Article  Google Scholar 

  • Anderson CB, Pastur GM, Lencinas MV, Wallem PK, Moorman MC, Rosemond AD (2009) Do introduced North American beavers Castor canadensis engineer differently in Southern America? An overview with implications for restoration. Mamm Rev 39:33–52

    Article  Google Scholar 

  • Arcview GIS (1996) Version 3.2. Environmental Systems Research Institute, Inc. Redlands, USA

  • Baguette T (1994) Le castor, synthèse. Cah Ethol 14:357–380

    Google Scholar 

  • Baldwin AH, Pendleton FN (2003) Interactive effects of animal disturbance and elevation on vegetation of a tidal marsh. Estuaries 26:905–915

    Article  Google Scholar 

  • Baroch J, Hafner M (2002) Biology and natural history of the nutria, with special reference to nutria in Louisiana. In: Baroch J, Hafner M, Brown TL, Mach JJ, Poché RM (eds) Nutria (Myocastor coypus) in Louisiana. A report prepared for the Louisiana Department of Wildlife and Fisheries by Genesis Laboratories. pp 3–22

  • Bazin M (2004) Les Ardennes. Une géographie pour notre temps. Eds Terres Ardennaises

  • Bernez I, Daniel H, Haury J, Ferreira M-T (2004) Combined effects of environmental factors and regulation on macrophyte vegetation along three rivers of western France. River Res Appl 20:43–59

    Article  Google Scholar 

  • Bisbal GA (2001) Conceptual design of monitoring and evaluation plans for fish and wildlife in the Columbia River ecosystem. Environ Manage 28:433–453

    Article  PubMed  CAS  Google Scholar 

  • Blanchet M (1977) Le Castor et son royaume. Ligue Suisse pour la Protection de la Nature, Neuchâtel, Switzerland

    Google Scholar 

  • Borgnia M, Galante ML, Cassini MH (2000) Diet of the coypu (Nutria, Myocastor coypus) in agro-systems of Argentinean pampas. J Wildl Manage 64:354–361

    Article  Google Scholar 

  • Breck SW, Wilson KR, Andersen DC (2003) Beaver herbivory and its effect on cottonwood trees: influence of flooding along matched regulated and unregulated rivers. River Res Appl 19:43–58

    Article  Google Scholar 

  • Carillo E, Wong G, Cuaron AD (2000) Monitoring mammal populations in Costa Rican protected areas under different hunting restrictions. Conserv Biol 14:1580–1591

    Article  Google Scholar 

  • Carter J, Leonard BP (2002) A review of the literature on the worldwide distribution, spread of, and efforts to eradicate the coypu (Myocastor coypu). Wildl Soc Bull 30:162–175

    Google Scholar 

  • Clark WR (1994) Habitat selection by muskrats in experimental marshes undergoing succession. Can J Zool 72:675–680

    Article  Google Scholar 

  • Colautti RI, MacIsaac HJ (2004) A neutral terminology to define “invasive” species. Divers Distrib 10:135–141

    Article  Google Scholar 

  • Collen P, Gibson RJ (2001) The general ecology of beavers (Castor spp.), as related to their influence on stream ecosystem and riparian habitats, and the subsequent effects on fish—a review. Rev Fish Biol Fish 10:439–461

    Article  Google Scholar 

  • Connors LM, Kiviat E, Groffman PM, Ostfeld RS (2000) Muskrat (Ondatra zibethicus) disturbance to vegetation and potential net nitrogen mineralisation and nitrification rates in a freshwater tidal marsh. Am Midl Nat 143:53–63

    Article  Google Scholar 

  • Corriale MJ, Arias SM, Bo RF, Porini G (2006) Habitat-use patterns of the coypus Myocastor coypus in an urban wetland of its original distribution. Acta Theriol 51:295–302

    Article  Google Scholar 

  • Curtet L, Benmergui M, Broyer J (2008) Le dispositif exclos/témoin, un outil pour évaluer l’efficacité de la régulation du ragondin. ONCFS — Faune Sauvage 280:16–23

    Google Scholar 

  • Danell K (1977) Dispersal and distribution of the muskrat (Ondatra zibethicus L.) in Sweden. Viltrevy Swed Wildl 10:1–26

    Google Scholar 

  • Danell K (1979) Reduction of aquatic vegetation following the colonization of a northern Swedish lake by the muskrat, Ondatra zibethicus. Oecologia 38:101–106

    Article  Google Scholar 

  • Danilov PI (1992) Introduction of North-American semiaquatic mammals in karelia and its consequences for aboriginal species. Semiaquatische Säugetiere. Wiss Beit Univ Halle:267–276

  • Davis RA, Jenson AG (1960) A note on the distribution of the coypu (Myocastor coypus) in Great Britain. J Anim Ecol 29:397

    Article  Google Scholar 

  • De Nooij RJW, Lenders HJR, Leuven RSE, De Blust G, Geilen N, Goldschmidt B, Muller S, Poudevigne I, Nienhuis PH (2004) BIO-SAFE: assessing the impact of physical reconstruction on protected and endangered species. River Res Appl 20:299–313

    Article  Google Scholar 

  • Doncaster CP, Micol T (1990) Response by coypus to catastrophic events of cold and flooding. Holarct Ecol 13:98–104

    Google Scholar 

  • Eccard JA, Ylonen H (2002) Direct interference or indirect exploitation? An experimental study of fitness costs of interspecific competition in voles. Oikos 99:580–590

    Article  Google Scholar 

  • Engeman RM, Whisson DA (2003) A visual method for indexing muskrat populations. Int Biodeterior Biodegrad 52:101–106

    Article  Google Scholar 

  • Erôme G (1982) Contribution à la connaissance éco-éthologique du castor (Castor fiber) dans la vallée du Rhône. Thèse de doctorat, Université Claude-Bernard, Lyon 1, France

  • Errington PL (1963) Muskrat populations. Iowa State University Press, Ames, IA

    Google Scholar 

  • Fustec J, Cormier J-P (2003) The habitat potential of the downstream Loire River for European beavers (C. fiber). Lutra 46:109–116

    Google Scholar 

  • Fustec J, Lode T, Le Jacques D, Cormier J-P (2001) Colonization, riparian habitat selection and home range size in a reintroduced population of European beavers in the Loire. Freshw Biol 46:1361–1371

    Article  Google Scholar 

  • Ganzhorn JU, Hartum M (2000) Food selection by beaver (Castor fiber albicus) in relation to plant chemicals and possible effects of flooding on food quality. J Zool, Lond 251:391–398

    Article  Google Scholar 

  • Gosling LM, Baker SJ (1989) The eradication of muskrats and coypus from Britain. Biol J Linn Soc 38:39–51

    Article  Google Scholar 

  • Guichón ML, Benitez VB, Abba A, Borgnia M, Cassini MH (2003) Foraging behaviour of coypus Myocastor coypus: why do coypus consume aquatic plants? Acta Oecol 24:241–246

    Article  Google Scholar 

  • Halley DJ, Rosell F (2002) The beaver’s reconquest of Eurasia: status, population development and management of a conservation success. Mamm Rev 32:153–178

    Article  Google Scholar 

  • Hanson JM, Mackay WC, Prepas EE (1989) Effect of size-selective predation by muskrats (Ondatra zibethicus) on a population of unionid clams (Anodontas grandis simpsoniana). J Anim Ecol 58:15–28

    Article  Google Scholar 

  • Higgins C, Mitsch WJ (2001) The role of muskrats (Ondatra zibethicus) as ecosystem engineers in created freshwater marshes. Annu Rep Olentangy River Wetland Res Park:81–86

  • IUCN (1999) IUCN guidelines for the prevention of biodiversity loss due to biological invasion. Species 31–32:28–42

    Google Scholar 

  • Johnson LA, Foote LA (1997) Vertebrate herbivory in managed coastal wetlands: a manipulative experiment. Aquat Bot 59:17–32

    Article  Google Scholar 

  • Jouventin P, Micol T, Verheyden C, Guédon G (1996) Le ragondin—biologie et méthodes de limitation des populations. Acta, Paris

    Google Scholar 

  • Kolar CS, Lodge DM (2001) Progress in invasion biology: predicting invaders. Trends Ecol Evol 16:199–204

    Article  PubMed  Google Scholar 

  • Le Louarn H, Quéré J-P (2003) Les rongeurs de France—Faunistique et biologie, 2nd edn. INRA, Paris, France

    Google Scholar 

  • Leau W, Léger F (2006) Situation actuelle de l’aire de répartition du castor d’Europe (Castor fiber) sur les bassins versants Seine-Normandie, Rhin-Meuse et haut bassin de la Saône. Office National de la Chasse et de la Faune Sauvage, Direction des Etudes et de la Recherche, Gerstheim, France

    Google Scholar 

  • Lees AC, Bell DJ (2008) A conservation paradox for the 21st century: the European wild rabbit Oryctolagus cuniculus, an invasive alien and an endangered native species. Mamm Rev 38(4):304–320

    Article  Google Scholar 

  • Léger F (2007) Notes sur la présence du ragondin (Myocastor coypus) dans le département des Ardennes. ONCFS, CNERA animaux prédateurs et déprédateurs, Gerstheim, France, pp 1–5

  • Libois R (2006) Les mammifères non volants de la Région Wallonne: tendances des populations. Dossier scientifique réalisé dans le cadre de l’élaboration du Rapport analytique 2006 sur l’Etat de l’Environnement wallon. Unités de Recherches zoogéographiques, Université de Liège:1–127

  • Lorvelec O, Pascal M (2005) French attempts to eradicate non-indigenous mammals and their consequences for native biota. Biol Invasions 7:135–140

    Article  Google Scholar 

  • Lowe S, Browne M, Boudjelas S, De Poorter M (2000) 100 of the world’s worst invasive alien species. A selection from the global invasive species database. ISSG, SSC and IUCN, Auckland, New Zealand

    Google Scholar 

  • Macdonald DW, Tattersall FHS, Brown ED, Balharry D (1995) Reintroducing the European beaver to Britain: nostalgic meddling or restoring biodiversity? Mamm Rev 25:161–200

    Article  Google Scholar 

  • Macdonald DW, Tattersall FHS, Rushton S, South AB, Rao S, Maitland P, Strachan R (2000) Reintroducing the beaver (Castor fiber) to Scotland: a protocol for identifying and assessing suitable release sites. Anim Conserv 3:125–133

    Article  Google Scholar 

  • Mack RN, Simberloff D, Lonsdale WM, Evans H, Clout M, Bazzaz FA (2000) Biotic invasions: causes, epidemiology, global consequences, and control. Ecol Appl 10:689–710

    Article  Google Scholar 

  • Manchester SJ, Bullock JM (2000) The impact of non-native species on UK biodiversity and the effectiveness of control. J Appl Ecol 37:845–864

    Article  Google Scholar 

  • Maringer A, Slotta-Bachmayr L (2006) A GIS-based habitat-suitability model as a tool for the management of beavers Castor fiber. Acta Theriol 51:373–382

    Article  Google Scholar 

  • McDonald RA, O’Hara K, Morrish DJ (2007) Decline of invasive alien mink (Mustela vison) is concurrent with recovery of native otters (Lutra lutra). Divers Distrib 13:92–98

    Article  Google Scholar 

  • Messier F, Virgl J (1992) Differential use of bank burrows and lodges by muskrats, Ondatra zibethicus, in a northern marsh environment. Can J Zool 70:1180–1184

    Article  Google Scholar 

  • Messier F, Virgl JA, Marinelli L (1990) Density-dependent habitat selection in muskrats: a test of the ideal free distribution model. Oecologia 84:380–385

    Google Scholar 

  • Müller-Schwarze D, Sun L (2003) The beaver, natural history of a wetland engineer. Cornell University Press, Ithaca, NY

    Google Scholar 

  • Nadeau S, Décarie R, Lambert D, St-Georges M (1995) Nonlinear modeling of muskrat use habitat. J Wildl Manage 59:110–117

    Article  Google Scholar 

  • Nolet BA, Rosell F (1998) Comeback of the beaver Castor fiber: an overview of old and new conservation problems. Biol Conserv 83:165–173

    Article  Google Scholar 

  • Nolet BA, Hoekstra A, Ottenheim MM (1994) Selective foraging on woody species by the beaver Castor fiber, and its impact on a riparian willow forest. Biol Conserv 70:117–128

    Article  Google Scholar 

  • Nummi P, Väänänen V-M, Malinen J (2006) Alien grazing: indirect effects of muskrats on invertebrates. Biol Invasions 8:993–999

    Article  Google Scholar 

  • Panzacchi M, Bertolino S, Cocchi R, Genovesi P (2007) Population control of coypu Myocastor coypus in Italy compared to eradication in UK: a cost benefit analysis. Wildl Biol 13:159–171

    Article  Google Scholar 

  • Parker K (2008) Translocations: providing outcomes for wildlife, resource managers, scientists, and the human community. Restor Ecol 16:204–209

    Article  Google Scholar 

  • Pascal M, Lorvelec O, Vigne J-D (2006) Invasions Biologiques et Extinctions: 11 000 ans d’histoire des Vertébrés en France. Coédition Belin, Quæ, Paris

    Google Scholar 

  • Pieret N, Delbart E, Vanderhoeven S, Mahy G (2008) Invasive plant species management tests and advices along river banks in the Walloon region. 6th European Conference on Ecological Restoration, 8–12 September, Ghent, Belgium

  • Prigioni C, Balestrieri A, Remonti L (2005) Food habits of the coypu, Myocastor coypus, and its impact on aquatic vegetation in a freshwater habitat of NW Italy. Folia Zool 54:269–277

    Google Scholar 

  • Richardson DM, Pysek P, Rejmanek M, Barbour MG, Panetta FD, West CJ (2000) Naturalization and invasion of alien plants: concepts and definitions. Divers Distrib 6:93–107

    Article  Google Scholar 

  • Rosell F, Bjørkøyli T (2002) A test of the dear enemy phenomenon in the Eurasian beaver. Anim Behav 63:1–6

    Article  Google Scholar 

  • Rosell F, Bergan F, Parker H (1998) Scent-marking in the Eurasian beaver (Castor fiber) as a mean of territory defense. J Chem Ecol 24(2):207–219

    Article  CAS  Google Scholar 

  • Rosell F, Bozsér O, Collen P, Parker H (2005) Ecological impact of beavers Castor fiber and Castor canadensis and their ability to modify ecosystems. Mamm Rev 32:248–276

    Article  Google Scholar 

  • Rosell F, Parker H, Steifetten Ø (2006) Use of dawn and dusk sight observation to determine colony size and family composition in Eurasian beaver Castor fiber. Acta Theriol 51:107–112

    Article  Google Scholar 

  • Rouland P (1991) La réintroduction du castor en France. Le Courrier de l’Environnement de l’INRA 14:35–42

    Google Scholar 

  • Schwoerer M-L, Léger F, Allain C (2008) Le plus gros rongeur d’Europe: le Castor. Chasseur de l’Est 10:10–18

    Google Scholar 

  • Shea K, Chesson P (2002) Community ecology theory as a framework for biological invasions. Trends Ecol Evol 17:170–176

    Article  Google Scholar 

  • South A, Rushton S, MacDonald D (2000) Simulating the proposed reintroduction of the European beaver (Castor fiber) in Scotland. Biol Conserv 93:103–116

    Article  Google Scholar 

  • StatXact© (1989–1997) Version 3.1. Cytel Software, Cambridge, UK

  • Swank WG, Petrides GA (1954) Establishment and food habits of the nutria in Texas. Ecology 35:172–176

    Article  Google Scholar 

  • Ter Braak JFC (1987) The analysis of vegetation–environment relationships by canonical correspondence analysis. Vegetatio 69:69–77

    Article  Google Scholar 

  • Ter Braak JFC (1990) CANOCO update notes. Agricultural Mathematics Group, Wageningen

    Google Scholar 

  • Ter Braak JFC, Verdonschot PFM (1995) Canonical correspondence analysis and related multivariate methods in aquatic ecology. Aquat Sci 57:153–187

    Article  Google Scholar 

  • Valéry L, Fritz H, Lefeuvre J-C, Simberloff D (2008) In search of a real definition of the biological invasion phenomenon itself. Biol Invasions 10:1345–1351

    Article  Google Scholar 

  • Vázquez DP (2002) Multiple effects of introduced mammalian herbivores in a temporal forest. Biol Invasions 4:175–191

    Article  Google Scholar 

  • Verbeylen G (2002) Coypus (Myocastor coypus) in Flanders: how urgent is their control? Lutra 45:83–96

    Google Scholar 

  • Véron G (1991) Les castors. Série “Comment vivent-ils?”, vol 26. Payot Lausanne:1–32

  • Wauters LA, Gurnell J, Martinoli A, Tosi G (2002a) Interspecific competition between native Eurasian red squirrels and alien grey squirrels: does resource partitioning occur? Behav Ecol Sociobiol 52:332–341

    Article  Google Scholar 

  • Wauters LA, Tosi G, Gurnell J (2002b) Interspecific competition in the tree squirrels: do introduced grey squirrels (Sciurus carolinensis) deplete tree seeds hoarded by red squirrels (S. vulgaris). Behav Ecol Sociobiol 51:360–367

    Article  Google Scholar 

  • Williamson M (1996) Biological invasions. Chapman & Hall, London, UK, pp 1–244

    Google Scholar 

  • Willner GR, Feldhamer GA, Zucker EE, Chapman JA (1980) Ondatra zibethicus. Mamm Species 141:1–8

    Article  Google Scholar 

  • Woods CA, Contreras L, Willner-Chapman G, Whidden HP (1992) Myocastor coypus. Mamm Species 398:1–8

    Article  Google Scholar 

  • Wright JP, Jones CG, Flecker AS (2002) An ecosystem engineer, the beaver, increases species richness at the landscape scale. Oecologia 132:96–101

    Article  Google Scholar 

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Acknowledgements

The authors thank Marilyne Kneveler for her useful observations on riparian vegetation and Frances Bucquet, Ariane Dupéron, Aude Loisier and Martin Schlaepfer for their last reading. This study received financial supports from the Conseil Général des Ardennes and the Conseil Régional de Champagne-Ardenne.

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Ruys, T., Lorvelec, O., Marre, A. et al. River management and habitat characteristics of three sympatric aquatic rodents: common muskrat, coypu and European beaver. Eur J Wildl Res 57, 851–864 (2011). https://doi.org/10.1007/s10344-011-0497-y

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