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The 7-year itch: non-adaptive mate change in the Eurasian beaver

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Abstract

Mate change in socially monogamous species can be explained by adaptive and non-adaptive hypotheses. Adaptive hypotheses describe a mate change as a strategy to correct for initial mate choice and to improve reproductive success: the ‘incompatibility’ hypothesis states that mate change is initiated by both mates, whereas in the ‘better option’ hypothesis, one partner initiates the mate change. In contrast, non-adaptive hypotheses predict mate change to be independent from previous reproduction: the ‘forced divorce’ hypothesis suggests that mate change is initiated by an incoming individual and the ‘obligate mate change’ hypothesis states that the mate change occurs after the accidental death of a partner. We investigated these hypotheses in the socially monogamous Eurasian beaver (Castor fiber), using data from a long-term study in southeast Norway between 1998 and 2014. Generally, the mate change occurred in the seventh year of a partnership and the staying individual re-paired with a younger, incoming individual. The fate of the replaced individual was mostly unknown. Resident individuals had a decreased reproductive success with increasing age but gained no benefits from a mate change in terms of reproduction. Thus, we reject the adaptive hypotheses as cause of mate change. Our results support non-adaptive mate change hypotheses, most likely the ‘forced divorce’ hypothesis and to a lower degree the ‘obligate mate change’ hypothesis.

Significance statement

We investigated the causes of mate change in the Eurasian beaver, a long-lived, monogamous mammal living in family groups. We found that mate change was not initiated by a member of the mated couple but rather by the intrusion of an incoming individual as suggested by the ‘forced divorce’ hypothesis. Additionally, mate change was partly caused by the accidental loss of a partner. Mean reproductive success did not change after a mate change but with increasing age of the resident individual suggesting senescence. Together with a study on Alpine marmots, this is one of the first studies investigating mate change in mammals.

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References

  • Arcese P (1989) Territory acquisition and loss in male song sparrows. Anim Behav 37:45–55

    Article  Google Scholar 

  • Arnold TW (2010) Uninformative parameters and model selection using Akaike's information criterion. J Wildlife Manage 74:1175–1178

    Article  Google Scholar 

  • Barton K (2013) MuMIn: multi-model inference. R package version 1.9.5., https://cran.r-project.org/web/packages/MuMIn/MuMIn.pdf

  • Bates D, Maechler M, Bolker B, Walker S, Christensen RHB, Singmann H, Dai B, Eigen C, Rcpp L (2015) Package ‘lme4’. https://cran.r-project.org/web/packages/lme4/lme4.pdf

  • Beltran S, Cézilly F, Boissier J (2008) Genetic dissimilarity between mates, but not male heterozygosity, influences divorce in schistosomes. PLoS One 3(10):e3328. doi:10.1371/journal.pone.0003328

  • Bolker B, Skaug H, Magnusson A, Nielsen A (2012) Getting started with the glmmADMB package. http://glmmadmb.r-forge.r-project.org/glmmADMB.pdf

  • Burnham K, Anderson D (2002) Model selection and multimodel interference: a practical-theoretical approach. Springer, Berlin

    Google Scholar 

  • Busher P (2007) Social organization and monogamy in the beaver. In: Wolff JO, Sherman PW (eds) Rodent societies: an ecological and evolutionary perspective. University of Chicago Press, Chicago, pp 280–290

    Google Scholar 

  • Campbell RD (2010) Demography and life history of the Eurasian beaver Castor fiber. DPhil thesis, University of Oxford

  • Campbell RD, Newman C, Macdonald DW, Rosell F (2013) Proximate weather patterns and spring green-up phenology effect Eurasian beaver (Castor fiber) body mass and reproductive success: the implications of climate change and topography. Glob Chang Biol 19:1311–1324

    Article  PubMed  Google Scholar 

  • Campbell RD, Nouvellet P, Newman C, Macdonald DW, Rosell F (2012) The influence of mean climate trends and climate variance on beaver survival and recruitment dynamics. Glob Change Biol 18:2730–2742

    Article  Google Scholar 

  • Campbell RD, Rosell F, Nolet BA, Dijkstra VA (2005) Territory and group sizes in Eurasian beavers (Castor fiber): echoes of settlement and reproduction? Behav Ecol Sociobiol 58:597–607

    Article  Google Scholar 

  • Choudhury S (1995) Divorce in birds: a review of the hypotheses. Anim Behav 50:413–429

    Article  Google Scholar 

  • Crawford JC, Bluett RD, Schauber EM (2015) Conspecific aggression by beavers (Castor canadensis) in the Sangamon river basin in central Illinois: correlates with habitat, age, sex and season. Am Midl Nat 173:145–155

    Article  Google Scholar 

  • Crawford JC, Liu Z, Nelson TA, Nielsen CK, Bloomquist CK (2008) Microsatellite analysis of mating and kinship in beavers (Castor canadensis). J Mammal 89:575–581

    Article  Google Scholar 

  • Dreiss A, Roulin A (2014) Divorce in the barn owl: securing a compatible or better mate entails the cost of re-pairing with a less ornamented female mate. J Evol Biol 27:1114–1124

    Article  CAS  PubMed  Google Scholar 

  • Durka W, Babik W, Ducroz JF, Heidecke D, Rosell F, Samjaa R, Saveljev AP, Stubbe A, Ulevicius A, Stubbe M (2005) Mitochondrial phylogeography of the Eurasian beaver Castor fiber L. Mol Ecol 14:3843–3856

    Article  CAS  PubMed  Google Scholar 

  • Ellegren H, Hartman G, Johansson M, Andersson L (1993) Major histocompatibility complex monomorphism and low levels of DNA fingerprinting variability in a reintroduced and rapidly expanding population of beavers. P Natl Acad Sci USA 90:8150–8153

    Article  CAS  Google Scholar 

  • Ens B, Choudhury S, Black J (1996) Mate fidelity and divorce in monogamous birds. In: Black JM (ed) Partnerships in birds: the study of monogamy. Oxford University Press, Oxford, pp 344–401

    Google Scholar 

  • Ens BJ, Safriel UN, Harris MP (1993) Divorce in the long-lived and monogamous oystercatcher, Haematopus ostralegus: incompatibility or choosing the better option? Anim Behav 45:1199–1217

    Article  Google Scholar 

  • Forslund P, Larsson K (1991) The effect of mate change and new partner’s age on reproductive success in the barnacle goose, Branta leucopsis. Behav Ecol 2:116–122

    Article  Google Scholar 

  • Forstmeier W, Nakagawa S, Griffith SC, Kempenaers B (2014) Female extra-pair mating: adaptation or genetic constraint? Trends Ecol Evol 29:456–464

    Article  PubMed  Google Scholar 

  • Gavin MC, Solomon JN, Blank SG (2010) Measuring and monitoring illegal use of natural resources. Conserv Biol 24:89–100

    Article  PubMed  Google Scholar 

  • Gill SA, Stutchbury BJ (2006) Long-term mate and territory fidelity in neotropical buff-breasted wrens (Thryothorus leucotis). Behav Ecol Sociobiol 61:245–253

    Article  Google Scholar 

  • Graf PM, Mayer M, Zedrosser A, Hackländer K, Rosell F (2016) Territory size and age explain movement patterns in the Eurasian beaver. Mamm Biol 81:587–594

    Google Scholar 

  • Halley DJ (2011) Sourcing Eurasian beaver Castor fiber stock for reintroductions in Great Britain and Western Europe. Mamm Rev 41:40–53

    Article  Google Scholar 

  • Hartman G (1997) Notes on age at dispersal of beaver (Castor fiber) in an expanding population. Can J Zool 75:959–962

    Article  Google Scholar 

  • Heg D, Bruinzeel LW, Ens BJ (2003) Fitness consequences of divorce in the oystercatcher, Haematopus ostralegus. Anim Behav 66:175–184

    Article  Google Scholar 

  • Heidecke D (1984) Untersuchungen zur Ökologie und Populationsentwicklung des Elbebibers (Castor fiber albicus Matschie, 1907). I: Biologische und populationsökologische Ergebnisse. Zool Jahrb Abt Syst Oekol Geogr Tiere 111:–41

  • Herr J, Rosell F (2004) Use of space and movement patterns in monogamous adult Eurasian beavers (Castor fiber). J Zool 262:257–264

    Article  Google Scholar 

  • Hu HH, Morse DH (2004) The effect of age on encounters between male crab spiders. Behav Ecol 15:883–888

    Article  Google Scholar 

  • Hu S (2007) Akaike information criterion. Center for Research in Scientific Computation. North Carolina State University, Raleigh, NC

    Google Scholar 

  • Jenkins SH, Busher PE (1979) Castor canadensis. Mamm Species 120:1–8

    Article  Google Scholar 

  • Jeschke JM, Wanless S, Harris MP, Kokko H (2007) How partnerships end in guillemots Uria aalge: chance events, adaptive change, or forced divorce? Behav Ecol 18:460–466

    Article  Google Scholar 

  • Kalmijn M, Poortman A-R (2006) His or her divorce? The gendered nature of divorce and its determinants. Eur Sociol Rev 22:201–214

    Article  Google Scholar 

  • Kleiman DG (1977) Monogamy in mammals. Q Rev Biol 52:39–69

    Article  CAS  PubMed  Google Scholar 

  • Kuznetsova A, Brockhoff PB, Christensen RHB (2013) lmerTest: tests for random and fixed effects for linear mixed effect models (lmer objects of lme4 package). R package version 2, https://cran.r-project.org/web/packages/lmerTest/lmerTest.pdf

  • Lardy S, Cohas A, Figueroa I, Allainé D (2011) Mate change in a socially monogamous mammal: evidences support the “forced divorce” hypothesis. Behav Ecol 22:120–125

    Article  Google Scholar 

  • Liberg O, Chapron G, Wabakken P, Pedersen HC, Hobbs NT, Sand H (2012) Shoot, shovel and shut up: cryptic poaching slows restoration of a large carnivore in Europe. Proc R Soc Lond B 279:910–915

    Article  Google Scholar 

  • Luttbeg B (2002) Assessing the robustness and optimality of alternative decision rules with varying assumptions. Anim Behav 63:805–814

    Article  Google Scholar 

  • Mayer M, Zedrosser A, Rosell F (2016) When to leave: the timing of natal dispersal in a large, monogamous mammal, the Eurasian beaver. Anim Behav 123: 375-382

  • McNew J, Lance B, Woolf A (2005) Dispersal and survival of juvenile beavers (Castor canadensis) in southern Illinois. Am Midl Nat 154:217–228

    Article  Google Scholar 

  • Milleret C, Wabakken P, Liberg O, Åkesson M, Flagstad Ø, Andreassen HP, Sand H (2016) Let’s stay together? Intrinsic and extrinsic factors involved in pair bond dissolution in a recolonizing wolf population. J Anim Ecol 86:43–54

    Article  PubMed  PubMed Central  Google Scholar 

  • Morton ES, Derrickson KC, Stutchbury BJ (2000) Territory switching behavior in a sedentary tropical passerine, the dusky antbird (Cercomacra tyrannina). Behav Ecol 11:648–653

    Article  Google Scholar 

  • Møller AP (1988) Female choice selects for male sexual tail ornaments in the monogamous swallow. Nature 332:640–642

    Article  Google Scholar 

  • Nolet BA, Rosell F (1994) Territoriality and time budgets in beavers during sequential settlement. Can J Zool 72:1227–1237

    Article  Google Scholar 

  • O’Hara RB, Kotze DJ (2010) Do not log-transform count data. Method Ecol Evol 1:118–122

    Article  Google Scholar 

  • Palombit R (1994) Dynamic pair bonds in hylobatids: implications regarding monogamous social systems. Behaviour 128:65–101

    Article  Google Scholar 

  • Parker H, Rosell F (2001) Parturition dates for Eurasian beavers Castor fiber: when should spring hunting cease? Wildlife Biol 7:237–241

    Google Scholar 

  • Parker H, Rosell F, Hermansen TA, Sørløkk G, Stærk M (2002) Sex and age composition of spring-hunted Eurasian beaver in Norway. J Wildlife Manage: 1164–1170

  • R Core Team (2015) R: a language and environment for statistical computing. R Foundation for Statistical Computing, Vienna, Austria, https://cran.r-project.org/doc/manuals/fullrefman.pdf

  • Reichard UH, Boesch C (eds) (2003) Monogamy: mating strategies and partnerships in birds, humans and other mammals. Cambridge University Press, Cambridge

    Google Scholar 

  • Rosell F, Hovde B (2001) Methods of aquatic and terrestrial netting to capture Eurasian beavers. Wildlife Soc B 29:269–274

    Google Scholar 

  • Rosell F, Nolet BA (1997) Factors affecting scent-marking behavior in Eurasian beaver (Castor fiber). J Chem Ecol 23:673–689

    Article  CAS  Google Scholar 

  • Rosell F, Sanda J (2006) Potential risks of olfactory signaling: the effect of predators on scent marking by beavers. Behav Ecol 17:897–904

    Article  Google Scholar 

  • Rosell F, Sun L (1999) Use of anal gland secretion to distinguish the two beaver species Castor canadensis and C. fiber. Wildlife Biol 5:119–123

    Google Scholar 

  • Rosell F, Zedrosser A, Parker H (2010) Correlates of body measurements and age in Eurasian beaver from Norway. Eur J Wildlife Res 56:43–48

    Article  Google Scholar 

  • Saveljev A, Milishnikov A (2002) Biological and genetic peculiarities of cross-composed and aboriginal beaver populations in Russia. Acta Zool Lituanica 12:397–402

    Article  Google Scholar 

  • Sharpe F, Rosell F (2003) Time budgets and sex differences in the Eurasian beaver. Anim Behav 66:1059–1067

    Article  Google Scholar 

  • Sikes RS, Gannon WL (2011) Guidelines of the American Society of Mammalogists for the use of wild mammals in research. J Mammal 92:235–253

    Article  Google Scholar 

  • Smith DW, Jenkins SH (1997) Seasonal change in body mass and size of tail of northern beavers. J Mammal 78:869–876

    Article  Google Scholar 

  • Steyaert S, Zedrosser A, Rosell F (2015) Socio-ecological features other than sex affect habitat selection in the socially obligate monogamous Eurasian beaver. Oecologia 179:1023–1032

    Article  PubMed  PubMed Central  Google Scholar 

  • Sun L (2003) Monogamy correlates, socioecological factors, and mating systems in beavers. In: Reichard UH, Boesch C (eds) Monogamy: mating strategies and partnerships in birds, humans and other mammals. Cambridge University Press, Cambridge, pp 138–146

    Chapter  Google Scholar 

  • Sun L, Müller-Schwarze D, Schulte BA (2000) Dispersal pattern and effective population size of the beaver. Can J Zool 78:393–398

    Article  Google Scholar 

  • Svendsen GE (1989) Pair formation, duration of pair-bonds, and mate replacement in a population of beavers (Castor canadensis). Can J Zool 67:336–340

    Article  Google Scholar 

  • Syrůčková A, Saveljev AP, Frosch C, Durka W, Savelyev AA, Munclinger P (2015) Genetic relationships within colonies suggest genetic monogamy in the Eurasian beaver (Castor fiber). Mamm Res 60:139–147

    Article  Google Scholar 

  • Taborsky B, Taborsky M (1999) The mating system and stability of pairs in kiwi Apteryx spp. J Avian Biol 30:143–151

    Article  Google Scholar 

  • van Breukelen NA, Draud M (2005) The roles of male size and female eavesdropping in divorce in the monogamous convict cichlid (Archocentrus nigrofasciatus, Cichlidae). Behaviour 142:1023–1035

    Article  Google Scholar 

  • Wickler W, Seibt U (1983) Monogamy: an ambiguous concept. In: Bateson P (ed) Mate choice. Cambridge University Press, Cambridge, pp 33–50

    Google Scholar 

  • Wilsson L (1971) Observations and experiments on the ethology of the European beaver (Castor fiber L.): a study in the development of phylogenetically adapted behaviour in a highly specialized mammal. Svenska Jägareförbundet, Uppsala

    Google Scholar 

  • Zuur AF, Ieno EN, Elphick CS (2010) A protocol for data exploration to avoid common statistical problems. Method Ecol Evol 1:3–14

    Article  Google Scholar 

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Acknowledgments

We thank Christian A. Robstad, Frode Bergan, Ruairidh D. Campbell, Manuel Echeverria, Anders Mydland, Patricia M. Graf and Hannah B. Cross for assistance in the field and Shane Frank for statistical advice. Further, we thank two anonymous reviewers who improved the quality of our manuscript.

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Correspondence to Martin Mayer.

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This study was funded by the University College of Southeast Norway, the Norwegian Environmental Agency, the County Authorities of Telemark and Vestfold, and the Oslo municipality (Urban Environment Agency). All trapping and handling procedures were approved by the Norwegian Experimental Animal Board and the Norwegian Directorate for Nature Management and met the guidelines approved by the American Society of Mammalogists (Sikes and Gannon 2011).

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The authors declare that they have no conflict of interest.

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Communicated by A. I. Schulte-Hostedde

Martin Mayer and Fabian Künzel contributed equally to this work.

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Mayer, M., Künzel, F., Zedrosser, A. et al. The 7-year itch: non-adaptive mate change in the Eurasian beaver. Behav Ecol Sociobiol 71, 32 (2017). https://doi.org/10.1007/s00265-016-2259-z

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