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Sibling recognition in thirteen-lined ground squirrels: effects of genetic relatedness, rearing association, and olfaction

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Summary

I investigated sibling-sibling recognition in captive thirteen-lined ground squirrels (Spermophilus tridecemlineatus) by cross-fostering lab-born pups shortly after birth. When young reached about 45 days of age, I observed dyadic interactions in a test arena of pairs from four relatedness X rearing groups, and recorded the frequency of “exploratory” encounters between individuals. Sibs-reared together and nonsibs-reared together exhibited significantly fewer exploratory encounters than either sibs-reared apart or nonsibsreared apart. Young reared together were equally exploratory, regadless of relatedness; similarly, young reared apart, whether they were sibs or nonsibs, showed similar levels of exploration. Thus, the differential treatment of siblings in the lab appears to be based on rearing association and not genetic relatedness per se. I interpret this recognition based on association (rearing familiarity) in the context of the species' social organization and compare my results on S. tridecemlineatus with similar studies on S. beldingi, S. parryii, and S. richardsonii. I also used an olfactory impairment technique (zinc sulfate) and found that differential treatment in thirteen-lined ground squirrels was influenced by olfactory cues.

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References

  • Alberts JR (1974) Producing and interpreting experimental olfactory deficits. Physiol Behav 12:657–670

    Google Scholar 

  • Alexander RD (1979) Darwinism and human affairs. University of Washington Press, Seattle

    Google Scholar 

  • Alexander RD, Borgia G (1978) Group selection, altruism, and the levels of organization of life. Annu Rev Ecol Syst 9:449–474

    Google Scholar 

  • Bateson PPG (1980) Optimal outbreeding and the development of sexual preferences in Japanese quail. Z Tierpsychol 53:231–244

    Google Scholar 

  • Bateson PPG (1983) Preferences for cousins in Japanese quail. Nature 295:236–237

    Google Scholar 

  • Bateson PPG (1983) Optimal outbreeding. In: Bateson PPG (ed) Mate choice. Cambridge University Press, Cambridge, pp 257–277

    Google Scholar 

  • Beecher MD (1982) Signature systems and kin recognition. Am Zool 22:477–490

    Google Scholar 

  • Beecher MD, Beecher IM, Nichols SH (1981) Parent-offspring recognition in bank swallows Riparia riparia: II. Development and acoustic basis. Anim Behav 29:95–101

    Google Scholar 

  • Beer CG (1970) Individual recognition of voice in the social behavior of birds. In: Rosenblatt J, Beer C, Hinde R (eds) Advances in the study of behavior, vol 3. Academic Press, New York, pp 27–74

    Google Scholar 

  • Bekoff M (1981) Mammalian sibling interactions: genes, facilitative environments, and the coefficient of familiarity. In: Gubernick DJ, Klopfer PH (eds) Parental care in mammals. Plenum, New York, pp 307–346

    Google Scholar 

  • Betts BJ (1976) Behaviour in a population of Columbian ground squirrels, Spermophilus columbianus columbianus. Anim Behav 24:652–680

    Google Scholar 

  • Blaustein AR (1983) Kin recognition mechanisms: phenotypic matching or recognition alleles? Am Nat 121:749–754

    Google Scholar 

  • Blaustein AR, O'Hara RK (1981) Genetic control for sibling recognition. Nature 290:246–248

    Google Scholar 

  • Blaustein AR,O'Hara RK (1982) Kin recognition cues in Rana cascadae tadpoles. Behav Neural Biol 36:77–87

    Google Scholar 

  • Breed MD (1983) Nestmate recognition in honey bees. Anim Behav 31:86–91

    Google Scholar 

  • Buckle GR, Greenberg L (1981) Nestmate recognition in sweat bees (Lasioglossum zephyrum): does an individual recognize its own odour or only odours of its nestmates? Anim Behav 29:802–809

    Google Scholar 

  • Burtt EH Jr (1977) Some factors in the timing of parent-chick recognition in swallows. Anim Behav 25:231–239

    Google Scholar 

  • Carter-Saltzman L, Scarr-Salapatek S (1975) Blood group, behavioral, and morphological differences among dizygotic twins. Soc Biol 22:372–374

    Google Scholar 

  • Davis LS (1982) Sibling recognition in Richardson's ground squirrels (Spermophilus richardsonii). Behav Ecol Sociobiol 11:65–70

    Google Scholar 

  • Davis LS (1984) Behavioral interactions of Richardson's ground squirrels:asymmetries based on kinship. In: Murie JO, Michener GR (eds) Biology of ground-dwelling squirrels: annual cycles, behavioral ecology, and sociality. University of Nebraska Press, Lincoln (in press)

    Google Scholar 

  • Dawkins R (1982) The extended phenotype. Freeman, Oxford

    Google Scholar 

  • Dewsbury DA (1982) Avoidance of incestuous breeding between siblings in two species of Peromyscus mice. Biol Behav 7:157–169

    Google Scholar 

  • Dunford C (1977a) Social system of round-tailed ground squirrels. Anim Behav 25:885–906

    Google Scholar 

  • Dunford C (1977b) Kin selection for ground squirrel alarm calls. Am Nat 111:782–785

    Google Scholar 

  • Getz WM, Smith KB (1983) Genetic kin recognition: honey bees discriminate between full and half-sisters. Nature 302:147–148

    Google Scholar 

  • Greenberg L (1979) Genetic component of bee odor in kin recognition. Science 206:1095–1097

    Google Scholar 

  • Hamilton WD (1964) The genetical evolution of social behaviour, I and II. J Theor Biol 7:1–52

    Google Scholar 

  • Hamilton WD (1972) Altruism and related phenomena, mainly in social insects. Annu Rev Ecol Syst 3:193–232

    Google Scholar 

  • Hanken J, Sherman PW (1981) Multiple paternity in Belding's ground squirrel litters.Science 212:351–353

    Google Scholar 

  • Harris MA, Murie JO (1982) Responses to oral gland scents from different males in Columbian ground squirrels. Anim Behav 30:140–148

    Google Scholar 

  • Hölldobler B, Michener CD (1980) Mechanisms of identification and discrimination in social hymenoptera. In: Markl H (ed) Evolution of social behavior: hypotheses and empirical tests. Dahlem Konferenzen 1980. Verlag Chemie, Weinheim, pp 35–58

    Google Scholar 

  • Holmes WG, Sherman PW (1982) The ontogeny of kin recognition in two species of ground squirrels. Am Zool 22:491–517

    Google Scholar 

  • Holmes WG, Sherman PW (1983) Kin recognition in animals. Am Sci 71:46–55

    Google Scholar 

  • Hoogland JL (1982) Prairie dogs avoid extreme inbreeding. Science 215:1639–1641

    Google Scholar 

  • Hoogland JL, Sherman PW (1976) Advantages and disadvantages of bank swallow (Riparia riparia) coloniality. Ecol Monogr 46:33–58

    Google Scholar 

  • Kivett VK, Murie JO, Steiner AL (1976) A comparative study of scent-gland location and related behavior in some Nearctic ground squirrel species (Sciuridae): an evolutionary approach. Can J Zool 54:1294–1306

    Google Scholar 

  • Lacy RC, Sherman PW (1983) Kin recognition by phenotype matching. Am Nat 121:489–512

    Google Scholar 

  • McCarley H (1966) Annual cycle, population dynamics, and adaptive behavior of Citellus tridecemlineatus. J Mammal 47:294–316

    Google Scholar 

  • McLean IG (1982) The association of female kin in the Arctic ground squirrel Spermophilus parryii. Behav Ecol Sociobiol 10:91–99

    Google Scholar 

  • McLean IG (1983) Paternal behaviour and killing of young in Arctic ground squirrels. Anim Behav 31:32–44

    Google Scholar 

  • McLean IG (1984) Spacing behavior of female ground squirrels. In: Murie JO, Michener GR (eds) Biology of Ground-dwelling squirrels: annual cycles, behavioral ecology, and sociality. University of Nebraska Press, Lincoln (in press)

    Google Scholar 

  • Michener GR (1973) Field observations on the social relationships between adult female and juvenile Richardson's ground squirrels. Can J Zool 51:33–38

    Google Scholar 

  • Michener GR (1974) Development of adult-young identification in Richardson's ground squirrel. Dev Psychobiol 7:375–384

    Google Scholar 

  • Michener GR (1979) Spatial relationships and social organization of adult Richardson's ground squirrels. Can J Zool 57:125–129

    Google Scholar 

  • Michener GR (1981) Ontogeny of spatial relationships and social behaviour in juvenile Richardson's ground squirrels. Can J Zool 59:1666–1676

    Google Scholar 

  • Michener GR (1983) Kin identification, matriarchies, and the evolution of sociality in ground-dwelling sciurids.In: Eisenberg JF, Kleiman DG (eds) Advances in the study of mammalian behavior. Special publication 7, American Society of Mammalogists, pp 528–572

  • Michener GR,Michener DR (1977) Population structure and dispersal in Richardson's ground squirrels.Ecology 58:359–368

    Google Scholar 

  • Michener GR, Sheppard DH (1972) Social behavior between adult Richardson's ground squirrels (Spermophilus richardsonii) and their own and alien young. Can J Zool 50:1343–1349

    Google Scholar 

  • Murie JO,Harris MA (1984) The history of individuals in a population of Columbian ground squirrels: source, settlement, and site attachment. In: Murie JO, Michener GR (eds) Biology of ground-dwelling squirrels: annual cycles, behavioral ecology, and sociality. University of Nebraska Press, Lincoln (in press)

    Google Scholar 

  • Murphy MR (1976) Olfactory impairment, olfactory bulb removal, and mammalian reproduction. In: Doty RL (ed) Mammalian olfaction, reproductive processes, and behavior. Academic Press, New York, pp 95–117

    Google Scholar 

  • Porter RH, Moore JD (1981) Human kin recognition by olfactory cues. Physiol Behav 27:493–495

    Google Scholar 

  • Porter RH, Wyrick M (1979) Sibling recognition in spiny mice (Acomys cahirinus): influence of age and isolation. Anim Behav 27:761–766

    Google Scholar 

  • Porter RH, Wyrick M, Pankey J (1978) Sibling recognition in spiny mice (Acomys cahirinus). Behav Ecol Sociobiol 3:61–68

    Google Scholar 

  • Porter RH, Tepper VJ, White DM (1981) Experiential influences on the development of huddling preferences and “sibling” recognition in spiny mice. Dev Psychobiol 14:375–382

    Google Scholar 

  • Ridley M, Grafen A (1981) Are green beard genes outlaws? Anim Behav 29:954–955

    Google Scholar 

  • Rongstad OJ (1965) A life history study of thirteen-lined ground squirrels in southern Wisconsin. J Mamm 46:76–87

    Google Scholar 

  • Rothstein SI, Barash DP(1983) Gene conflicts and the concepts of outlaw and sheriff alleles. J Social Biol Struct (in press)

  • Salzen EA, Cornell JM (1968) Self-perception and species recognition in birds. Behaviour 30:44–65

    Google Scholar 

  • Schwagmeyer PL (1979) The function of alarm calling behavior in Spermophilus tridecemlineatus,the thirteen-lined ground squirrel. PhD thesis, University of Michigan, Ann Arbor

  • Schwagmeyer PL (1980) Alarm calling behavior of the thirteenlined ground squirrel, Spermophilus tridecemlineatus. Behav Ecol Sociobiol 7:195–200

    Google Scholar 

  • Schwagmeyer PL (1984) Multiple mating and intersexual selection in ground squirrels. In: Murie JO, Michener GR (eds) Biology of ground-dwelling squirrels: annual cycles, behavioral ecology, and sociality. University of Nebraska Press, Lincoln (in press)

    Google Scholar 

  • Sheppard DH, Yoshida SM (1971) Social behavior in captive Richardson's ground squirrels. J Mammal 52:793–799

    Google Scholar 

  • Sherman PW (1977) Nepotism and the evolution of alarm calls. Science 197:1246–1253

    Google Scholar 

  • Sherman PW (1980) The limits of ground squirrel nepotism. In: Barlow GW, Silverberg J (eds) Sociobiology: beyond nature/nurture? Westview Press, Boulder, pp 505–544

    Google Scholar 

  • Sherman PW (1981a) Reproductive competition and infanticide in Belding's ground squirrels and other organisms. In: Alexander RD, Tinkle DW (eds) Natural selection and social behavior: recent research and new theory. Chiron Press, New York, pp 311–331

    Google Scholar 

  • Sherman PW (1981b) Kinship, demography, and Belding's ground squirrel nepotism. Behav Ecol Sociobiol 8:251–259

    Google Scholar 

  • Shields WM (1982) Philopatry, inbreeding, and the evolution of sex. State University of New York Press, Albany

    Google Scholar 

  • Steiner AL (1970) Étude descriptive de quelques activités et comportements de base de Spermophilus columbianus columbianus (Ord). II. Vie de groupe. Rev Comp Anim 4:23–42

    Google Scholar 

  • Vestal BM, McCarley H (1984) Spatial and social relationships among relatives in thirteen-lined ground squirrel populations. In: Murie JO, Michener GR (eds) Biology of grounddwelling squirrels: annual cycles, behavioral ecology, and sociality. University of Nebraska Press, Lincoln(in press)

    Google Scholar 

  • Vidal J-M (1982) “Auto-imprinting”: effects of prolonged isolation on domestic cocks. J Comp Physiol Psych 96:256–267

    Google Scholar 

  • Waldman B, Adler K (1979) Toad tadpoles associated preferentially with siblings. Nature 282:611–613

    Google Scholar 

  • West Eberhard MJ (1975) The evolution of social behavior by kin selection. Q Rev Biol 50:1–33

    Google Scholar 

  • Winans SS, Powers JB (1977) Olfactory and vomeronasal deafferentation of male hamsters: histological and behavioral analyses. Brain. Res 126:325–344

    Google Scholar 

  • Wistrand H (1974) Individual, social, and seasonal behavior of the thirteen-lined ground squirrel (Spermophilus tridecemlineatus). J Mammal 55:329–347

    Google Scholar 

  • Yeaton RI (1972) Social behavior and social organization in Richardson's ground squirred (Spermophilus richardsonii) in Saskatchewan. J Mammal 53:139–147

    Google Scholar 

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Holmes, W.G. Sibling recognition in thirteen-lined ground squirrels: effects of genetic relatedness, rearing association, and olfaction. Behav Ecol Sociobiol 14, 225–233 (1984). https://doi.org/10.1007/BF00299622

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