True individual recognition (TIR), the ability to distinguish multiple familiar members individually, is more elaborate than class-level recognition, and evidence for the ability to perform TIR is reported from primates, some other social mammals, birds and lizard in vertebrates. These animals exhibit a highly social structure, wherein TIR is essential for their social interactions. Such high sociality has been documented in fish, but clear evidence of TIR has been limited. The cichlid, Neolamprologus pulcher, a cooperative breeder that guards a territory, exhibits the dear enemy relationship. Here, we show that this fish distinguishes two familiar neighbours individually, i.e., TIR ability, using one-way mirrors in experimental tanks. Focal fish established the dear enemy relationship with two neighbours, NA and NB, and displayed limited aggression towards these familiar neighbours. However, their aggressiveness towards neighbour NB increased when they were shifted from the original side of the tank after NA was removed, suggesting that they distinguished NB from NA or regarded NB as a stranger. Interestingly, this aggression level against the shifted neighbour NB largely decreased within 1 min. This decrease contrasted with the longer and more frequent aggressiveness towards unfamiliar strangers. These results suggest that focal fish recognised neighbour NB as a familiar stranger but probably punished NB that moved beyond its territory, that is, betrayed the dear enemy relationship. We prevented the effects of the behavioural reactions of exposed individuals using a one-way mirror. Thus, we conclude that this fish species displays TIR and discuss that TIR is prevalent in territorial animals in which the dear enemy effect is common.
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Akçay, Ç., Wood, W.E., Searcy, W.A., Templeton, C.N., Campbell, S.E. & Beecher, M.D. (2009). Good neighbor, bad neighbor: song sparrows retaliate against aggressive rivals. — Anim. Behav. 78: 97-102.
Arnold, K.E. (2000). Kin recognition in rainbowfish (Melanotaenia eachamensis): sex, sibs and shoaling. — Behav. Ecol. Sociobiol. 48: 385-391.
Balshine-Earn, S. & Lotem, A. (1998). Individual recognition in a cooperatively breeding cichlid: evidence from video playback experiments. — Behaviour 135: 369-386.
Bee, M.A. & Gerhardt, H.C. (2002). Individual voice recognition in a territorial flog (Rana catesbeiana). — Proc. Roy. Soc. Lond. B: Biol. Sci. 267: 1443-1448.
Briefer, E., Rybak, F. & Aubin, T. (2008). When to be a dear enemy: flexible acoustic relationships of neighbouring skylarks, Alauda arvensis. — Anim. Behav. 76: 1319-1325.
Brown, J.A. & Colgan, P.W. (1986). Individual and species recognition in centrarchid fishes: evidence and hypotheses. — Behav. Ecol. Sociobiol. 19: 373-379.
Carazo, P., Font, E. & Desfilis, E. (2007). Chemosensory assessment of rival competitive ability and scent mark function in a lizard, Podarcis hispanica. — Anim. Behav. 74: 895-902.
Frostman, P. & Sherman, P.T. (2004). Behavioral response to familiar and unfamiliar neighbors in a territorial cichlid, Neolamprologus pulcher. — Ichthyol. Res. 51: 283-285.
Gherardi, F., Aquiloni, L. & Tricarico, E. (2012). Revisiting social recognition systems in invertebrates. — Anim. Cogn. 15: 745-762.
Godard, R. (1993). Tit for tat among neighboring hooded warblers. — Behav. Ecol. Sociobiol. 33: 45-50.
Grosnick, L., Clement, T.S. & Fernald, R.D. (2007). Fish can infer social rank by observation alone. — Nature 445: 429-432.
Heg, D. & Bachar, Z. (2006). Cooperative breeding in the Lake Tanganyika cichlid Julidochromis ornatus. — Environ. Biol. Fish. 76: 265-281.
Hert, E. (1985). Individual recognition of helpers by the breeders in the cichlid fish Lamprologus brichardi (Poll, 1974). — Z. Tierpsychol. 68: 313-325.
Hotta, T., Takeyama, T., Jordan, L.A. & Kohda, M. (2014). Duration of memory of dominance relationships in a group living cichlid. — Naturwissenschaften 101: 745-751.
Hotta, T., Jordan, L.A., Takeyama, T. & Kohda, M. (2015a). Order effects in transitive inference: does the presentation order of social information affect transitive inference in social animals? — Front. Ecol. Evol. 3: 59.
Hotta, T., Takeyama, T., Heg, D., Awata, S., Jordan, L.A. & Kohda, M. (2015b). The use of multiple sources of social information in contest behavior: testing the social cognitive abilities of a cichlid fish. — Front. Ecol. Evol. 3: 85.
Hotta, T., Satoh, S., Kosaka, N. & Kohda, M. (2017). Face recognition in the Tanganyikan cichlid Julidochromis transcriptus. — Anim. Behav. 127: 1-5.
Karplus, I., Katzenstein, R. & Goren, M. (2006). Predator recognition and social facilitation of predator avoidance in coral reef fish Dascyllus marginatus juveniles. — Mar. Ecol. Prog. Ser. 319: 215-223.
Koenig, W.D. & Dickinson, J.L. (2016). Cooperative breeding in vertebrates. — Cambridge University Press, Cambridge.
Kohda, M. (1991). Intra-and interspecific social organization among three herbivorous cichlid fishes in Lake Tanganyika. — Jpn. J. Ichthyol. 38: 147-163.
Kohda, M. (1998). Coexistence of permanently territorial cichlids of the genus Petrochromis through male-mating attack. — Environ. Biol. Fish. 52: 231-242.
Kohda, M., Shibata, J., Awata, S., Gomagano, D., Takeyama, T., Hori, M. & Heg, D. (2008). Niche differentiation depends on body size in a cichlid fish: a model system of a community structured according to size regularities. — J. Anim. Ecol. 77: 859-868.
Kohda, M., Jordan, L.A., Hotta, T., Kosaka, N., Karino, K., Tanaka, H., Taniyama, M. & Takeyama, T. (2015). Facial recognition in a group-living cichlid fish. — PLoS ONE 10: e0142552.
Lai, W.S. & Johnston, R.E. (2002). Individual recognition after fighting by golden hamsters: a new method. — Physiol. Behav. 76: 225-239.
Le Vin, A.L., Mable, B.K. & Arnold, K.E. (2010). Kin recognition via phenotype matching in a cooperatively breeding cichlid, Neolamprologus pulcher. — Anim. Behav. 79: 1109-1114.
Leiser, J.K. & Itzkowitz, M. (1999). The benefit of the dear enemy recognition in three-contender convict cichlid (Cichlasoma nigrofasciatum) contests. — Behaviour 136: 983-1003.
Mason, R.T. & Gutzke, W.H.N. (1990). Sex recognition in the leopard gecko, Eublepharis macularius (Sauria: Gekkonidae). Possible mediation by skin-derived semiochemicals. — J. Chem. Ecol. 16: 27-36.
Myrberg, A.A. & Riggio, R.J. (1985). Acoustically mediated individual recognition by a coral reef fish (Pomacentrus partitus). — Anim. Behav. 33: 411-416.
Newton-Fisher, N.E. (2004). Hierarchy and social status in Budongo chimpanzees. — Primates 45: 81-87.
Olendorf, R., Getty, T., Scribner, K. & Robinson, K. (2004). Male red-winged blackbirds distrust unreliable and sexually attractive neighbours. — Proc. Roy. Soc. Lond. B: Biol. Sci. 271: 1033-1038.
O’Loghlen, A.L. & Beecher, M.D. (1999). Mate, neighbour and stranger songs: a female song sparrow perspective. — Anim. Behav. 58: 13-20.
Petrulis, A., Weidner, M. & Johnston, R.E. (2004). Recognition of competitors by male golden hamsters. — Physiol. Behav. 81: 629-638.
R Core Team (2016). R: a language and environment for statistical computing. — R Foundation for Statistical Computing, Vienna. Available online at http://www.R-project.org/.
Randall, J.A. (1984). Territorial defense and advertisement by footdrumming in bannertail kangaroo rat (Dipodomys spectabilis) at high and low population densities. — Behav. Ecol. Sociobiol. 16: 11-20.
Rice, W.R. (1989). Analysing tables of statistical tests. — Evolution 43: 223-225.
Satoh, S., Tanaka, H. & Kohda, M. (2016). Facial recognition in a discus fish (Cichlidae): experimental approach using digital models. — PLoS ONE 11: e0154543.
Sayigh, L.S., Tyack, P.L., Wells, R.S., Solow, A.R., Scott, M.D. & Irvine, A.B. (1998). Individual recognition in wild bottlenose dolphins: a field test using playback experiments. — Anim. Behav. 57: 41-50.
Siebeck, U.E., Parker, A.N., Sprenger, D., Mathger, L.M. & Wallis, G. (2010). A species of reef fish that uses ultraviolet patterns for covert face recognition. — Curr. Biol. 20: 407-410.
Sogawa, S., Ota, K. & Kohda, M. (2016). A dear enemy relationship in a territorial cichlid: evidence for the threat-level hypothesis. — Behaviour 153: 387-400.
Sopinka, N.M., Fitzpatrick, J.L., Desjardins, J.K., Stiver, K.A., Marsh-Rollo, S.E. & Balshine, S. (2009). Liver size reveals social status in the African cichlid Neolamprologus pulcher. — J. Fish Biol. 75: 1-16.
Steiger, S. & Muller, J.K. (2008). ‘True’ and ‘untrue’ individual recognition: suggestion of a less restrictive definition. — Trends Ecol. Evol. 23: 355.
Tanaka, H., Frommen, J., Takahashi, T. & Kohda, M. (2016). Predation risk promotes delayed dispersal in the cooperatively breeding cichlid Neolamprologus obscurus. — Anim. Behav. 117: 51-58.
Temeles, E.J. (1994). The role of neighbours in territorial systems: when are they ‘dear enemies’? — Anim. Behav. 47: 339-350.
Tibbetts, E.A. & Dale, J. (2007). Individual recognition: it is good to be different. — Trends Ecol. Evol. 22: 529-537.
Tibbetts, E.A., Sheehan, M.J. & Dale, J. (2008). A testable definition of individual recognition. — Trends Ecol. Evol. 23: 356.
Wang, M.Y. & Takeuchi, H. (2017). Individual recognition and the ‘face inversion effect’ in medaka fish (Oryzias latipes). — eLife 6: e24728.
White, S.L. & Gowan, C. (2013). Brook trout use individual recognition and transitive inference to determine social rank. — Behav. Ecol. 24: 63-69.
Wong, M. & Balshine, S. (2011). The evolution of cooperative breeding in the African cichlid fish, Neolamprologus pulcher. — Biol. Rev. 86: 511-530.
Ydenberg, C., Giraldeau, A. & Falls, B. (1998). Neighbors, strangers, and the asymmetric war of attrition. — Anim. Behav. 36: 343-347.
Yorzinski, J.L. (2017). The cognitive basis of individual recognition. — Behav. Sci. 16: 53-57.
All Time | Past 365 days | Past 30 Days | |
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True individual recognition (TIR), the ability to distinguish multiple familiar members individually, is more elaborate than class-level recognition, and evidence for the ability to perform TIR is reported from primates, some other social mammals, birds and lizard in vertebrates. These animals exhibit a highly social structure, wherein TIR is essential for their social interactions. Such high sociality has been documented in fish, but clear evidence of TIR has been limited. The cichlid, Neolamprologus pulcher, a cooperative breeder that guards a territory, exhibits the dear enemy relationship. Here, we show that this fish distinguishes two familiar neighbours individually, i.e., TIR ability, using one-way mirrors in experimental tanks. Focal fish established the dear enemy relationship with two neighbours, NA and NB, and displayed limited aggression towards these familiar neighbours. However, their aggressiveness towards neighbour NB increased when they were shifted from the original side of the tank after NA was removed, suggesting that they distinguished NB from NA or regarded NB as a stranger. Interestingly, this aggression level against the shifted neighbour NB largely decreased within 1 min. This decrease contrasted with the longer and more frequent aggressiveness towards unfamiliar strangers. These results suggest that focal fish recognised neighbour NB as a familiar stranger but probably punished NB that moved beyond its territory, that is, betrayed the dear enemy relationship. We prevented the effects of the behavioural reactions of exposed individuals using a one-way mirror. Thus, we conclude that this fish species displays TIR and discuss that TIR is prevalent in territorial animals in which the dear enemy effect is common.
All Time | Past 365 days | Past 30 Days | |
---|---|---|---|
Abstract Views | 1498 | 314 | 44 |
Full Text Views | 367 | 15 | 1 |
PDF Views & Downloads | 153 | 19 | 1 |