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Eco-evolutionary routes towards animal sociality

Ma, Long

DOI:

10.33612/diss.160350920

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Ma, L. (2021). Eco-evolutionary routes towards animal sociality: Ecology, behaviour and communication in

communal breeding of burying beetles. University of Groningen. https://doi.org/10.33612/diss.160350920

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(2003) Comparative study of the cuticular hydrocarbon composition of Melipona bicolor Lepeletier, 1836 (Hymenoptera, Meliponini) workers and queens. Genetics and Molecular Research, 2: 191-199.

Aitchison J. (1986) The statistical analysis of compositional data: Monographs in Statistics and Applied Probability. (Chapman & Hall, London).

Albert S., Bhattacharya D., Klaudiny J., Schmitzova J., Simuth J. (1999) The family of major royal jelly proteins and its evolution. J. Mol. Evol., 49: 290-297.

Alonzo S.H., Klug H. (2012) Paternity, maternity, and parental care. The Evolution of Parental Care (ed. by N. J. Royle, P. T. Smiseth and M. Kölliker), pp. 189-205. Oxford University Press, Oxford, U. K.

Amdam G.V., Norberg K., Fondrk M.K., Page R.E. (2004) Reproductive ground plan may mediate colony-level selection effects on individual foraging behavior in honey bees. Proc. Natl. Acad. Sci. USA., 101(11): 350-355. Amdam G.V., Norberg K., Hagen A., Omholt S.W. (2003)

Social exploitation of vitellogenin. Proc. Natl. Acad. Sci. USA., 100: 1799-1802.

Ament S.A., Corona M., Pollock H.S., Robinson G.E. (2008) Insulin signaling is involved in the regulation of worker division of labor in honey bee colonies. Proc. Natl. Acad. Sci. USA., 105 (11): 4226-4231.

Amsalem E., Malka O., Grozinger C., Hefetz A. (2014) Exploring the role of juvenile hormone and vitellogenin in reproduction and social behavior in bumble bees. BMC Evol. Biol., 14: 45.

Angilletta M.J., Wilson R.S., Navas C.A., James R.S. (2003) Tradeoffs and the evolution of thermal reaction norms. Trends Ecol. Evol., 18(5): 234-240.

Archie E. A., Tung J., Clark M., Altmann J., Alberts S.C. (2014) Social affiliation matters: Both same-sex and opposite-sex relationships predict survival in wild female baboons. Proc. R. Soc. B., 281(1793).

Armitage K.B., Schwartz O.A. (2000) Social enhancement of fitness in yellow-bellied marmots. Proc. Natl. Acad. Sci. U.S.A., 97: 12149-12152.

Arnold K. E., Owens I. P. F. (1998) Cooperative breeding in birds: A comparative test of the life history hypothesis. Proc. R. Soc. B., 265(1398), 739–745.

Arnold P. A., Nicotra A. B., Kruuk L. E. B. (2019) Sparse evidence for selection on phenotypic plasticity in response to temperature. Phil. Trans. R. Soc. B., 374(1768).

Arnott G., Elwood R.W. (2009) Assessment of fighting ability in animal contests. Anim. Behav., 77: 991-1004. Arnqvist G, Rowe L. (2005) Sexual conflict. Princeton, NJ:

Princeton University Press.

Ayasse M., Paxton R.J., Tengö J. (2001) Mating behavior and chemical communication in the order Hymenoptera. Annu. Rev. Entomol., 46: 31-78.

B

Baglione V., Canestrari D., Marcos J. M., Ekman J. (2006) Experimentally increased food resources in the natal territory promote offspring philopatry and helping in cooperatively breeding carrion crows. Proc. R. Soc. B., 273(1593), 1529–1535.

Balshine-Earn S., Neat F.C., Reid H., Taborsky, M. (1998). Paying to stay or pay to breed? Field evidence for direct benefits of helping behavior in a cooperatively breeding fish. Behav. Ecol., 9(5): 432-438.

Bandoli J.H. (2002) Brood defense and filial cannibalism in the spottail darter (Etheostoma squamiceps): the effects of parental status and prior experience. Beha. Ecol. Sociobiol., 51: 222-226.

Barker J.L., Barclay P., Reeve H.K. (2012) Within-group competition reduces cooperation and payoffs in human groups. Behav. Ecol., 23(4): 735-741.

Earth’s sixth mass extinction already arrived? Nature, 471(7336), 51–57.

Barrett L., Gaynor D., Henzi S.P. (2002) A dynamic interaction between aggression and grooming reciprocity among female chacma baboons. Anim. Behav., 63(6): 1047-1053.

Bartlett J. (1987) Filial cannibalism in burying beetles. Behav. Ecol. Sociobiol., 21: 179-183.

Bates D., Mächler M., Bolker B., Walker S. (2015). Fitting linear mixed-effects models using lme4. J. Stat. Software, 67: 1-48.

Beeler A.E., Rauter C.M., Moore A.J. (1999) Pheromonally mediated mate attraction by males of the burying beetle Nicrophorus orbicollis: alternative calling tactics conditional on both intrinsic and extrinsic factors. Behav. Ecol., 10(5): 578-584.

Bell G., Collins S. (2008) Adaptation, extinction and global change. Evol. Appl., 1(1), 3–16.

Bender N., Hamilton I.M., Heg D. (2005) Size differences within a dominance hierarchy influence conflict and help in a cooperatively breeding cichlid. Behav., 142(11-12): 1591-1613.

Benelli G., Desneux D., Romano D., Conte G., Messing R.H., Canale A. (2015) Contest experience enhances aggressive behaviour in a fly: when losers learn to win. Sci. Rep., 5: 9347.

Bennett P.M., Owens I.P.F. (2002) Evolutionary ecology of birds: life histories, mating systems and extinction. Oxford, U.K.: Oxford University Press.

Benowitz K.M., McKinney E.C., Cunningham C.B., Moore A.J. (2019) Predictable gene expression related to behavioral variation in parenting. Behav. Ecol., 30(2): 402-407. Ben-Shahar Y., Robichon A., Sokolowski M.B., Robinson G.E.

(2002) Influence of gene action across different time scales on behavior. Science, 296: 741-744.

Ben-Shahar Y., Dudek N.L., Robinson G.E. (2004) Phenotypic deconstruction reveals involvement of manganese transporter malvolio in honey bee division of labor. J. Exp. Biol., 207: 3281-3288.

Bergmüller R., Heg D., Taborsky M. (2005) Helpers in a cooperatively breeding cichlid stay and pay or disperse and breed, depending on ecological constraints. Proc. R. Soc. B., 272(1560), 325–331.

Bergmüller R., Johnstone R.A., Russell A.F., Bshary R. (2007) Integrating cooperative breeding into theoretical concepts of cooperation. Behav. Ecol., 76: 61-72. Bergmüller R., Taborsky M. (2005) Experimental manipulation

of helping in a cooperative breeder: helpers ‘pay to stay’ by pre-emptive appeasement. Anim. Behav., 69(1): 19-28.

Bergmüller R., Taborsky M. (2010). Animal personality due to social niche specialization. Trends Ecol. Evol., 25: 504-511.

Billman E.J., Creighton J.C., Belk M.C. (2014) Prior experience affects allocation to current reproduction in a burying beetle. Behav. Ecol., 25 (4): 813-818.

Bloch G., Borst D.W., Huang Z.-Y., Robinson G.E., Cnaani J., Hefetz A. (2000) Juvenile hormone titers, juvenile hormone biosynthesis, ovarian development and social environment in Bombus terrestris. J. Insect Physiol., 46(1): 47-57.

Bloch G., Hefetz A., Hartfelder K. (2000) Ecdysteroid titer, ovary status and dominance in adult worker and queen bumble bees (Bombus terrestris). J. Insect Physiol., 46: 1033-1040.

Bluher S.E., Miller S.E., Sheehan M.J. (2020) Fine-Scale Population Structure but Limited Genetic Differentiation in a Cooperatively Breeding Paper Wasp. Genome Biol. Evol., 12(5), 701–714.

(4)

Boncoraglio G., Kilner R.M. (2012) Female burying beetles benefit from male desertion: sexual conflict and counter-adaptation over parental investment. PLOS one,doi.org/10.1371/journal.pone.0031713.

Bonsall M.B., Klug H. (2011) The evolution of parental care in stochastic environments. J. Evol. Biol., 24(3): 645-655. Botero C.A., Weissing F.J., Wright J., Rubenstein D.R. (2015)

Evolutionary tipping points in the capacity to adapt to environmental change. Proc. Natl. Acad. of Sci. U.S.A., 112(1), 184–189.

Both C., Artemyev A.V., Blaauw B., Cowie R.J., Dekhuijzen, A.J., Eeva T., Enemar A., Gustafsson L., Ivankina E.V., Järvinen A., Metcalfe N.B., Nyholm N. E.I., Potti J., Ravussin P.A., Sanz J.J., Silverin B., Slater F.M., Sokolov L.V., Török J., … Visser M.E. (2004) Large-scale geographical variation confirms that climate change causes birds to lay earlier. Proc. R. Soc. B., 271(1549), 1657–1662.

Böröczky K., Crook D.J., Jones T.H., Kenny J.C., Zylstra K.E., Mastro V.C., Tumlinson J.H. (2009) Monoalkenes as contact sex pheromone components of the woodwasp Sirex noctilio. J. Chem. Ecol., 35: 1202–1211.

Boulay R., Katzav-Gozansky T., Hefetz A., Lenoir A. (2004) Odour convergence and tolerance between nestmates through trophallaxis and grooming in the ant Camponotus fellah (Dalla Torre). Insect. Soci., 51: 55-61. Bourke A.F.G., Heinze J. (1994) The ecology of communal breeding: the case of multiple-queen leptothoracine ants. Phil. Trans. R. Soc. Lond. B, 345: 359-372.

Bowen B.S., Koford R.R., Vehrencamp S.L. (1989) Dispersal in the communally breeding groove-billed ani (Crotophaga sulcirostris). Condor, 91(1): 52-64.

Boyd R., Gintis H., Bowles S., Richerson P.J. (2003) The evolution of altruistic punishment. Proc. Natl. Acad. Sci. USA., 100: 3531-3535.

Boyd R., Richerson P.J. (1989) The evolution of indirect reciprocity. Social Networks, 11(3): 213-236.

Bradley B., Robbins M.M., Williamson E.A., Steklis H.D., Steklis N.G., Eckhardt N., Boesch C., Vigilant L. (2005) Mountain gorilla tug-of-war: Silverbacks have limited control over reproduction in multimate groups. Proc. Natl. Acad. Sci. USA., 102(26): 9418-9423.

Branconi R., Barbasch T.A., Francis R.K., Srinivasan M., Jones G.P., Buston P.M. (2020) Ecological and social constraints combine to promote evolution of non-breeding strategies in clownfish. Comm. Biol., 3(1), 649.

Bray S., Amrein H.A. (2003) PutativeDrosophila pheromone receptor expressed in male-specific taste neurons is required for efficient courtship. Neuron, 39: 1019-1029. Bray J., Pusey A.E., Gilby I.C. (2016). Incomplete control and

concessions explain mating skew in male chimpanzees. Proc. R. Soc. B, 283: 20162071.

Brent L.J.N., Ruiz-Lambides A., Platt M.L. (2017) Family network size and survival across the lifespan of female macaques. Proc. R. Soc. B., 284(1854).

Brockmann, H.J. (1997). Cooperative breeding in wasps and vertebrates: the role of ecological constraints. The Evolution of social behavior in insects and arachnids, Cambridge University Press. pp: 347-371.

Brockmann A., Dietz D., Spaethe J., Tautz J. (2006) Beyong 9-ODA: sex phermone communication in the european honey bee Apis mellifera L.. J. Chem. Ecol., 32(3): 657-667.

Brouwer L., Heg D., Taborsky M. (2005) Experimental evidence for helper effects in a cooperatively breeding cichlid. Behav. Ecol., 16(3), 667–673.

Brouwer L., Richardson D.S., Eikenaar C., Komdeur J. (2006) The role of group size and environmental factors on survival in a cooperatively breeding tropical passerine. J.Anim. Ecol., 75(6), 1321–1329.

Brown J.L. (1987) Helping communal breeding in birds: Ecology and Evolution. Princeton University Press. Princeton, New Jersey, US.

Bruintjes R., Heg-Bachar Z., Heg D. (2013) Subordinate removal affects parental investment, but not offspring survival in a cooperative cichlid. Funct. Ecol., 27: 730-738.

Bulmer, E., Celis, P., Gil, D. (2008) Parent-absent begging: evidence for sibling honesty and cooperation in the spotless starling (Sturnus unicolor). Behav. Ecol., 19: 279-284.

Buston P. (2003) Size and growth modification in clownfish. Nature, 424: 145-146.

Buston P.M. (2004) Territory inheritance in clownfish. Proc. R. Soc. B., 271(SUPPL. 4), 252–254.

Buston P.M., Elith J. (2011) Determinants of reproductive success in dominant pairs of clownfish: A boosted regression tree analysis. J. Anim. Ecol., 80(3), 528–538. Butchart S.H.M., Walpole M., Collen B., van Strien A.,

Scharlemann J.P.W., Almond R.E.A., Baillie J.E.M., Bomhard B., Brown C., Bruno J., Carpenter K.E., Carr G.M., Chanson J., Chenery A.M., Csirke J., Davidson N.C., Dentener F., Foster M., Galli A., … Watson R. (2010). Global Biodiversity: Indicators of Recent Declines. Science, 328(5982), 1164–1168.

Byholm P., Rousi H., Sole I. (2011) Parental care in nesting hawks: breeding experience and food availability influence the outcome. Behav. Ecol., 22(3): 609-615. Byrne R.W., Bates L.A. (2007) Sociality, evolution and

cognition. Curr. Biol., 17: 714-723.

C

Cameron E.Z., Setsaas T.H., Linklater W.L. (2009) Social bonds between unrelated females increase reproductive success in feral horses. Proc. Natl. Acad. Sci. U.S.A., 106(33), 13850–13853.

Canestrari D., Marcos J.M., Baglione V. (2011) Helpers at the nest compensate for reduced maternal investment in egg size in carrion crows. J. Evol. Biol., 24(9), 1870–1878. Cant M.A. (2000) Social control of reproduction in banded

mongooses. Anim. Behav., 59(1): 147-158.

Cant M.A. (2006) A tale of two theories: parent-offspring conflict and reproductive skew. Anim. Behav., 71: 255-263.

Cant M.A. (2010) The role of threats in animal cooperation. Proc. R. Soc. B. 278, 170-178.

Cant M.A. (2012). Cooperative breeding systems. In: Royle N.J., Smiseth P.T., Kölliker M. (eds) The evolution of parental care. Oxford University Press, Oxford, pp. 206-225.

Cant M.A., English S., Reeve H.K., Field J. (2006) Escalated conflict in a social hierarchy. Proc. R. Soc. B. 273, 2977-2984.

Cant M.A., Hodge S.J., Bell M.B.V., Gilchrist J.S., Nichols H.J. (2010) Reproductive control via eviction (but not the threat of eviction) in banded mongooses. Proc. R. Soc. B., 277, 2219-2226.

Cant M.A., Llop J.B., Field J. (2006) Individual variation in social aggression and the probability of inheritance: theory and a field test. Am. Nat., 167: 837-852. Cant M.A., Nichols H.J., Thompson F.J., Vitikainen E. (2016)

Banded mongooses: Demography, life history, and social behavior. In J. L. Koenig, W.D., Dickinson (Ed.), Cooperative Breeding in Vertebrates: Studies of Ecology, Evolution, and Behavior (pp. 318–337). Cambridge Univ. Press.

Cant M.A., Vitikainen E., Nichols H.J. (2013) Demography and social evolution of banded mongooses. In Advances in the Study of Behavior (Vol. 45). Elsevier Inc.

Cant M.A., Young A.J. (2013) Resolving social conflict among females without overt aggression. Phil. Trans. R. Soc. B. 368: 20130076.

(5)

190

Cardinale B.J., Duffy J.E., Gonzalez A., Hooper D.U., Perrings

C., Venail P., Narwani A., MacE G.M., Tilman D., Wardle D.A., Kinzig A.P., Daily G.C., Loreau M., Grace J.B., Larigauderie A., Srivastava D.S., Naeem S. (2012) Biodiversity loss and its impact on humanity. Nature, 486(7401), 59–67.

Carlson D.A., Yocom S.R. (2005) Cuticular hydrocarbons from six species of tephritid fruit flies. Arch. Insect Biochem. Physiol., 3: 397-412.

Carter M.J., Head M.L., Moore A.J., Royle, N.J. (2015). Behavioral plasticity and G×E of reproductive tactics in Nicrophorus vespilloides burying beetles. Evol., 69: 969-978.

Châline N., Sandoz J.-C., Martin S.J., Ratnieks F.W., Jones G.R. (2005) Learning and discrimination of individual cuticular hydrocarbons by honeybees (Apis mellifera). Chemical Senses, 30: 327-335.

Chan S.F., Shih W.K., Chang A.Y., Shen S.F., Chen, I.C. (2019). Contrasting forms of competition set elevational range limits of species. Ecol. Lett., 22: 1668-1679. Chapman T., Arnquist G., Bangham J., Rowe L. (2003) Sexual

conflict. Trends Ecol. Evol., 18:1.

Chase I., Bartolomeo, Dugatkin L. (1994) Aggressive interactions and inter-contest interval: how long do winners keep winning? Anim. Behav., 48: 393-400. Chemnitz J., Bagrii N., Ayasse M., Steiger S. (2017) Staying

with the young enhances the father’s attractiveness in burying beetles. Evol., 71(4): 985-994.

Chen B.F., Liu M., Rubenstein D.R., Sun S.J., Liu J.N., Lin Y.H., Shen S.F. (2020) A chemically triggered transition from conflict to cooperation in burying beetles. Ecol. Lett., 23(3): 467-475.

Chevin L.M., Hoffmann A.A. (2017) Evolution of phenotypic plasticity in extreme environments. Phil. Trans. R. Soc. B., 372(1723).

Chevin L.M., Lande R. (2010) When do adaptive plasticity and genetic evolution prevent extinction of a density-regulated population? Evol., 64(4), 1143–1150. Chevin L.M., Lande R. (2015) Evolution of environmental cues

for phenotypic plasticity. Evol., 69(10), 2767–2775. Chevin L.M., Lande R., Mace G.M. (2010) Adaptation,

plasticity, and extinction in a changing environment: Towards a predictive theory. PLoS Biol., 8(4).

Chung H., Carroll S.B. (2015) Wax, sex and the origin of species: dual roles of insect cuticular hydrocarbons in adaptation and mating. Bioessays, 37(7): 822-830. Clutton-Brock T.H. (1984) Reproductive effort and terminal

investment in iteroparous animals. Am. Nat., 123: 212-229.

Clutton-Brock T.H. (1991) The evolution of parental care. Princeton University Press. Princeton, USA.

Clutton-Brock T.H. (1998) Reproductive skew, concessions and limited control. Trends Ecol. Evol., 13(7): 288-292. Clutton-Brock T.H. (2002). Breeding together: kin selection

and mutualism in cooperative vertebrates. Science, 296: 69-72.

Clutton-Brock T.H., Parker G.A. (1995) Punishment in animal societies. Nature, 373: 209-216.

Clutton-Brock T.H. (2009). Cooperation between non-kin in animal societies. Nature, 462(5): 51-57.

Clutton-Brock T. (2016) Mammal societies. John Wiley & Son Clutton-Brock T.H., Hodge S.J., Spong G., Russel A.F., Jordan

N.R., Bennett N.C., Sharpe L.L., Manser M.B. (2006) Intrasexual competition and sexual selection in cooperative mammals. Nature, 444: 1065-1068. Clutton-Brock T., Sheldon B.C. (2010) Individuals and

populations: The role of long-term, individual-based studies of animals in ecology and evolutionary biology. Trends Ecol. Evol., 25(10), 562–573.

Cnaani J., Robinson G.E., Hefetz A. (2000) The critical period for caste determination in Bombus terrestris and its

juvenile hormone correlates. J. Comp. Physiol. A, 186: 1089-1094.

Cockburn A., Sims R.A., Osmond H.L., Green D.J., Double M.C., Mulder R.A. (2008) Can we measure the benefits of help in cooperatively breeding birds: the case of superb fairy-wrens Malurus cyaneus? J. Anim. Ecol., 77, 430–438.

Cockburn A. (1998) Evolution of helping behavior in cooperatively breeding birds. Ann. Rev. Ecol. Systemat., 29, 141–177.

Colombelli-Négrel D., Kleindorfer S. (2009) Nest height, nest concealment, and predator type predict nest predation in superb fairy-wrens (Malurus cyaneus). Ecol. Res., 24(4), 921–928.

Cooney R., Bennett N.C. (2000) Inbreeding avoidance and reproductive skew in a cooperative mammal. Proc. R. Soc. Lond. B. 267: 801-806.

Coppack T., Both C. (2002) Predicting life-cycle adaptation of migratory birds to global climate change. Ardea, 90(3), 369–378.

Corona M., Libbrecht R., Wurm Y., Riba-Grognuz O., Studer R.A, Keller L. (2013) Vitellogenin underwent subfunctionalization to acquire caste and behavioral specific expression in the harvester ant Pogonomyrmex barbatus. PLoS Genetics, 9: e1003730.

Cornwallis C.K., Botero C.A., Rubenstein D.R., Downing P.A., West S.A., Griffin A.S. (2017) Cooperation facilitates the colonization of harsh environments. Nature Ecol. Evol., 1(3), 57.

Cotter S.C., Kilner R. M. (2009) Sexual division of antibacterial resource defence in breeding burying beetles, Nicrophorus vespilloides. J. Anim. Ecol., 79: 35-43. Cotter S.C., Ward R.J.S., Kilner R.M. (2010) Age-specific

reproductive investment in female burying beetles: independent effects of state and risk of death. Funct. Ecol., 25: 652-660.

Covas R., Griesser M. (2007) Life history and the evolution of family living in birds. Proc. R. Soc. B., 274(1616), 1349–1357.

Creel S.R., Creel N.M. (1991) Energeties, reproductive suppression and obligate communal breeding in carnivores. Behav. Ecol. Sociobiol., 28(4): 263-270. Creel S., Creel N.M. (2001). The African wild dog: behavior,

ecology and conservation (Princeton Univ. Press, 2001). Creel S., Creel N., Wildt D.E., Monfort S.L. (1992) Behavioral

and endocrine mechanisms of reproductive suppression in Serengeti dwarf mongooses. Anim. Behav., 43: 231-245.

Creel S.R., Waser P.M. (1991) Failures of reproductive suppression in dwarf mongoose (Helogale parvula): accident or adaptation? Behav. Ecol., 2(1):7-15. Creel S., Waser P.M. (1994) Inclusive fitness and reproductive

success in dwarf mongooses. Behav. Ecol., 5(3): 339-348.

Creel S., Waser P.M. (1997) Variation in reproductive suppression among dwarf mongooses: interplay between mechanism and evolution. In: Cooperative breeding in Mammals (Ed. By Solomon N.G., French J.A.), pp. 150-170. Cambridge: Cambridge University Press. Creighton J.C. (2005) Population density, body size, and

phenotypic plasticity of brood size in a burying beetle. Behav. Ecol., 16: 1031-1036.

Creighton J.C., Heflin N.D., Belk M.C. (2009) Cost of reproduction, resource quality, and terminal investment in a burying beetle. Am. Nat., 174: 673-684.

Cremer S., Sledge M.F., Heinze J. (2002) Male ants disguised by the queen’s bouquet. Nature, 419: 897.

Crespi R.H., Yanega D. (1995) The definition of eusociality. Behav. Ecol. 6: 109-115.

Crick H.Q.P. (1992) Load‐lightening in cooperatively breeding birds and the cost of reproduction. Ibis, 134(1), 56–61.

(6)

Crofoot M.C., Gilby I.C. (2012) Cheating monkeys undermine group strengthen in enemy territory. Proc. Natl. Acad. Sci., U.S.A., 109 (2): 501-505.

Crook T.C., Flatt T., Smiseth P.T. (2008) Hormonal modulation of larval begging and growth in the burying beetleNicrophorus vespilloides. Anim. Behav., 75: 71-77. Cunningham C.B., Badgett M.J., Meagher R.B., Orlando R., Moore A.J. (2016) Ethological principles predict the neuropeptides co-opted to influence parenting. Nat. Comm., 8:14225.

Cunningham C.B., Douthit M.K., Moore A.J. (2014) Octopaminergic gene expression and flexible social behaviour in the subsocial burying beetle Nicrophorus vespilloides. Insect Mol. Biol., 23(3): 391-404.

Cunningham C.B., Ji L., McKinney E.C., Benowitz K.M., Schmitz R.J., Moore A.J. (2019) Changes of gene expression but not cytosine methylation are associated with male parental care reflecting behavioural state, social context and individual flexibility. J. Exp. Biol., 222:jeb188649.

Cunningham C.B., Ji L., Wiberg R.A.W., Shelton J., McKinney E.C., Parker D.J. et al. (2015) The Nicrophorus vespilloides genome and methylome, a beetle with complex social behavior. Genome Biol. Evol., doi: 10.1093/gbe/evv194.

Cunningham C.B., VanDenHeuvel K., Khana D.B., McKinney E.C., Moore A.J. (2016) The role of neuropeptide F in a transition to parental care. Biol. Lett., 12: 20160158.

D

Danchin É., Charmantier A., Champagne F.A., Mesoudi A., Pujol B., Blanchet S. (2011) Beyond DNA: Integrating inclusive inheritance into an extended theory of evolution. Nature Rev. Genet., 12(7), 475–486.

Danchin E., Wagner R.H. (1997) The evolution of coloniality: the emergence of new perspectives. Trends Ecol. Evol., 12: 342-347.

Dani F.R., Jones G. R., Corsi S., Beard R., Pradella D., Turillazzi S. (2005) Nestmate recognition cues in the honey bee: Differential importance of cuticular alkanes and alkenes. Chem. Senses, 30: 477-489.

Dapporto L., Sledge F.M., Turillazzi S. (2005) Dynamics of cuticular chemical profiles ofPolistes dominulus worker in orphaned nests (Hymenoptera, Vespidae). J. Insect Physiol., 51: 969-973.

Dapporto L., Bruschini C., Cervo R., Petrocelli I., Turillazzi S. (2013) Hydrocarbon rank signatures correlate with differential oophagy and dominance behaviour inPolistes dominulus foundresses. J. Exp. Biol., 213: 453-458. Dantzer B., Newman A.E.M., Boonstra R., Palme R., Boutin S.,

Humphries M.M., Mcadam A.G. (2013) Growth in a Wild Mammal. Science, 1215(June), 1215–1218.

Dauwalder B., Tsujimoto S., Moss J., Mattox W. (2002) The Drosophila takeout gene is regulated by the somatic sex-determination pathway and affects male courtship behavior. Genes Dev., 16: 2879-2892 .

Davis N.B. (1976) Parental care and the transition to independent feeding in the young spotted flycatcher (Muscicapa striata). Behav., 59: 280-295.

Degenkolb T., Düring R.-A., Vilcinskas A. (2011) Secondary metabolites released by the burying beetle Nicrophorus vespilloides: chemical analyses and possible ecological functions. J. Chem. Ecol., 37: 724-735.

De Kort C.A.D. (1981) Regulation of the juvenile hormone titer. Annu. Rev. Entomol., 26:1-28.

Den Boer S.P.A., Duchateau M.J.H.M. (2006) A larval hunger signal in the bumblebeeBombus terrestris. Insectes Soc., 53:369-373.

Detemann V., Peeters C., Liebig J., Thivet V., Hölldobler B. (2003) Cuticular hydrocarbons mediate discrimination of reproductives and nonreproductives in the antMyrmeica gulosa. Proc. Natl. Acad. Sci., U.S.A., 100(18): 10341-10346.

Dietemann V., Zheng H., Hepburn C., Hepburn H.R., Jin S., Crewe R.M., Radloff S.E., Hu F., Pirk C.W.W. (2008) Self-assessment in insects: Honeybee queens know their own strength. PloS ONE, 3(1): e1412. Doi:10.1371/journal.pone.0001412.

Dickinson J.L., Ferree E.D., Stern C.A., Swift R., Zuckerberg B. (2014) Delayed dispersal in western bluebirds: Teasing apart the importance of resources and parents. Behav. Ecol., 25(4), 843–851.

Dickinson J.L., McGowan A. (2005) Winter resource wealth drives delayed dispersal and family-group living in western bluebirds. Proc. R. Soc. B., 272(1579), 2423–2428.

Dötterl S., Wolfe L.M., Jürgens A. (2005) Qualitative and quantitative analyses of flower scent in Silene latifolia. Phytochem., 66: 203-213.

Downing P.A., Griffin A.S., Cornwallis C.K. (2018) Sex differences in helping effort reveal the effect of future reproduction on cooperative behaviour in birds. Proc. R. Soc. B, 285: 20181164.

Drapeau M.D., Albert S., Kucharski R., Prusko C., Maleszka R. (2006) Evolution of the Yellow/Major Royal Jelly Protein family and the emergence of social behavior in honey bees. Genome Res., 16: 1385-1394.

Dubuc C., Clutton-Brock T.H. (2019) Male immigration triggers increased growth in subordinate female meerkats. Ecol. Evol., 9(3), 1127–1134.

Dugatkin L.A. (1997) Cooperation Among Animals: An Evolutionary Perspective. Oxford Univ. Press.

Dugatkin L.A. (2002) Animal cooperation among unrelated individuals. Sci. Nat., 89: 533-541.

Dunbar R. (2003) Evolution of the social brain. Science, 302:1160-1161.

Durant S.M. (2000) Predator avoidance, breeding experience and reproductive success in endangered cheetahs, Acinonyx jubatus. Anim. Behav., 60: 121-130.

Duarte A., Welch M., Swannack C., Wagner J., Kilner R.M. (2018) Strategies for managing rival bacterial communities: Lessons from burying beetles. J. Anim. Ecol., 87: 414-427.

E

Ebensperger L.A., Cofré H. (2001) On the evolution of group-living in the New Word cursorial hystricognath rodents. Behav. Ecol., 12(2): 227-236.

Ebensperger L.A., Sobrero R., Quirici V., Castro R.A., Tolhuysen L.O., Vargas F., Burger J.R., Quispe R., Villavicencio C.P., Vásquez R.A., Hayes L.D. (2012) Ecological drivers of group living in two populations of the communally rearing rodent,Octodon degus. Behav. Ecol. Sociobiol., 66: 261-274.

Ebensperger L.A., Hurtado M.J., León C. (2007) An experimental examination of the consequences of communal versus solitary breeding on maternal conditions and the early postnatal growth and survival degu,Octodon degus, pups. Anim. Behav., 73: 185-194. Edwards A.C., Rollmann S.M., Morgan T.J., Mackay T.F.C. (2006) Quantitative genomics of aggressive behavior in Drosophila melanogaster. Plos Genetics, 2(9): e154. Eggert A.-K. (1992) Alternative male mate-finding tactics in

burying beetles. Behav. Ecol., 3(3): 243-254.

Eggert A.-K., Müller J.K. (1992) Joint breeding in female burying beetles. Behav. Ecol. Sociobiol., 31(4): 237-242. Eggert A.-K., Müller J.K. (2000) Timing of oviposition and

reproductive skew in cobreeding female burying beetles (Nicrophorus vespilloides). Behav. Ecol., 11 (4): 357-366. Eggert A.-K., Müller J.K. (2011) Timing of oviposition enables dominant female burying beetles to destroy brood-parasitic young. Anim. Behav., 82(6): 1227-1233. Eggert A.-K., Otte, T., Müller J.K. (2008) Starving the

competition: a proximate cause of reproductive skew in burying beetles (Nicrophorus vespilloides). Proc. R. Soc. B., 275: 2521-2528.

(7)

192

Eggert A.-K., Reinking M., Müller J.K. (1998) Parental care

improves offspring survival and growth in burying beetles. Anim. Behav., 55: 97-107.

Eggert A.-K., Sakaluk S.K. (1995) Female-coerced monogamy in burying beetles. Behav. Ecol. Sociobiol., 37: 147-153. Eggert A.-K, Sakaluk S.K. (2000) Benefits of communal

breeding in burying beetles: a field experiment. Ecol. Entomol., 25(3):262-266.

Eikenaar C., Richardson D.S., Brouwer L., Bristol R., Komdeur J. (2009) Experimental evaluation of sex differences in territory acquisition in a cooperatively breeding bird. Behav. Ecol., 20(1), 207–214.

Ekman J., Hatchwell B.J., Dickinson J., Griesser M. (2004) Delayed Dispersal. In Walter D. Koenig & J. L. Dickinson (Eds.), Ecology and Evolution of Cooperative Breeding in Birds. Cambridge Univ. Press.

Ellis S., Franks D.W., Nattrass S., Cant M.A., Weiss M.N., Giles D., Balcomb K.C., Croft D.P. (2017) Mortality risk and social network position in resident killer whales: Sex differences and the importance of resource abundance. Proc. R. Soc. B., 284(1865).

Emlen, S.T. (1982). The evolution of helping I. An ecological constraints model. Am. Nat., 119: 29-39.

Emlen S.T. (1991) Behavioural Ecology: An Evolutionary Approach. 3rd ed. In N. B. Krebs, J.R., Davies (Ed.), Evolution of cooperative breeding in birds and mammals (pp. 301–337). Blackwell.

Endler A., Liebig J., Hölldobler B. (2006) Queen fertility, egg marking and colony size in the ant Camponotus floridanus. Behav. Ecol. Sociobiol., 59: 490-499. Engel K.C., von Hoermann C., Eggert A.-K., Müller J. K.,

Steiger S. (2014) When males stop having sex: adaptive insect mating tactics during parental care. Anim. Behav., 90: 245-253.

Engel K.C., Stokl J., Schweizer R., Vogel H., Ayasse M., Ruther J., Steiger S. (2016) A hormone-related female anti-aphrodisiac signals temporary infertility and causes sexual abstience to synchronize parental care. Nature comm., 7: 11035.

Evans J.D., Wheeler D.E. (1999) Differential gene expression between developing queens and workers in the honey bee, Apis mellifera. Proc. Natl Acad. Sci. USA, 96: 5575-5580.

Eyre T.A., Ducluzeau F., Sneddon T.P., Povey S., Bruford E.A. et al. (2006) The HUGO gene nomenclature datadase, 2006 updates, Nucleic Acids Research, 34 (suppl. 1): 319-321.

F

Farooqui T. (2012) Review of octopamine in insect nervous systems. Open Access Insect Physiol., 4:1-17.

Faulkes C.G., Abbott D.H. (1993) Evidence that primer pheromones do not cause social suppression of reproduction in male and female naked mole-rats, Heterocephalus glaber. J. Reproductive Fertility, 99: 225-230.

Fawcett T.W., Johnstone R.A. (2010) Learning your own strength: winner and loser effects should change with age and experience. Proc. Biol. Sci, 277: 1427-1434. Ferveur J.-F. (2005a) Cuticular hydrocarbons: Their evolution

and roles in Drosophila pheromonal communication. Behav. Genet., 35: 279-295.

Ferveur J.-F. (2005b) The pheromonal role of cuticular hydrocarbons inDrosophila melanogaster. BioEssays, 19 (4): 353-358.

Fetherston I.A., Scott M.P., Traniello J.F.A. (1994) Behavioural compensation for mate loss in the burying beetleNicrophorus orbicollis. Anim. Behav., 47: 777-785. Field J. (1992) Intraspecific parasitism as an alternative reproductive tactic in nest-building wasps and bees. Biol. Rev., 67: 79-126.

Field J., Brace S. (2004) Pre-social benefits of extended parental care. Nature. 428: 650-652.

Field J., Leadbeater E. (2016) Cooperation between non-relatives in a primitively eusocial paper wasp, polistes dominula. Phil. Trans. R. Soc. B., 371(1687). Field J., Solis C.R., Queller D.C., Strassmann J.E. (1998) Social

and genetic structure of paper wasp cofoundress associations: test of reproductive skew models. Am. Nat., 6: 545-563.

Filippi-Tsukamoto L., Nomakuchi S., Kuki K., Tojo S. (1995) Adaptiveness of parental care inParastrachia japonensis (Hemiptera: Cydnidae). Annu. Entomol. Soc. America, 88(3): 374-383.

Fischer E.K., O’Connell L.A. (2017) Modification of feeding circuits in the evolution of social behavior. J. Exp. Biol. 22: 92-102.

Fitzpatrick M.J., Ben-Shahar Y., Smid H.M., Vet L.E.M., Robinson G.E., Sokolowski M.B. (2005) Candidate genes for behavioral ecology. Trends Ecol. Evol., 20: 96-104. Fitzpatrick J.W., Bowman R. (2016) Florida scrub-jays:

Oversized territories and group defense in a fire-maintained habitat. In J. L. Koenig, W.D., Dickinson (Ed.), Cooperative Breeding in Vertebrates: Studies of Ecology, Evolution, and Behavior (pp. 77–96). Cambridge Univ. Press.

Flint J., Munafò M.R. (2013) Candidate and non-candidate genes in behavior genetics. Curr. Opin. Neurol., 23: 57-61.

Foley B., Chenoweth S.F., Nuzhdin S.V., Blows M.W. (2007) Natural genetic variation in cuticular hydrocarbon expression in male and femaleDrosophila melanogaster. Genetics, 175: 1465-1477.

Ford L.E., Smiseth P.T. (2016) Asynchronous hatching provides females with a means for increasing male care but incurs a cost by reducing offspring fitness. J. Evol. Biol., 29(2): 428-437.

Fox C.W., Reed D.H. (2011) Inbreeding depression increases with environmental stress: an experimental study and meta-analysis. Evol., 65: 246–258.

Fox R.J., Donelson J.M., Schunter C., Ravasi T., Gaitán-Espitia J.D. (2019) Beyond buying time: The role of plasticity in phenotypic adaptation to rapid environmental change. Phil. Trans. R. Soc. B., 374(1768).

Francke W., Dettner K. (2005) Chemical signaling in Beetles. Top. Curr. Chem., 240 : 85-166.

Frank S.A. (2003) Repression of competition and the evolution of cooperation. Evol., 57 (4): 693-705. Freeberg T.M., Dunbar R.I.M., Ord T.J. (2012) Social

complexity as a proximate and ultimate factor in communicative complexity. Phil. Trans. R. Soc. B. 367: 1785-1801.

Frère C.H., Krützen M., Kopps A.M., Ward P., Mann J., Sherwin W.B. (2010) Inbreeding tolerance and fitness costs in wild bottlenose dolphins. Proc. R. Soc. B., 277(1694), 2667–2673.

Frost A.J., Winrow-Giffen A., Ashley P.J., Sneddon L.U. (2007) Plasticity in animal personality traits: does prior experience alter the degree of boldness? Proc. Biol Sci. 274: 333-339.

Funaro C.F., Böröczky K., Vargo E.L., Schal C. (2018) Identification of a queen and king recognition pheromone in the subterranean termiteReticulitermes flavipes. Proc. Natl Acad. Sci. USA, 115(15): 3888-3893.

G

Gadagkar R. (1990) Evolution of eusociality - the advantage of assured fitness returns. Phil. Trans. R. Soc. B, 329: 17-25.

Gailey D.A., Jackson F.R., Siegel R.W. (1984) Conditioning mutations in Drosophila melanogaster affect an experience-dependent behavioral modification in coursing males. Genetics, 106: 613-623.

Garcia R.A., Cabeza M., Rahbek C., Araújo M.B. (2014) Multiple dimensions of climate change and their implications for biodiversity. Science, 344(6183).

(8)

Garcia M.J., Murphree J., Wilson J., Earley R.L. (2014) Mechanisms of decision making during contests in green anole lizards: prior experience and assessment. Anim. Behav., 92: 45-54.

De Gasperin O., Duarte A., Troscianko J., Kilner, R.M. (2016) Fitness costs associated with building and maintaining the burying beetle’s carrion nest. Sci. Rep., 6: 35293. Gaston A.J. (1978) The evolution of group territorial behavior

and cooperative breeding. Am. Nat., 112: 1091-1100. Ghalambor C.K., McKay J.K., Carroll S.P., Reznick D.N. (2007)

Adaptive versus non-adaptive phenotypic plasticity and the potential for contemporary adaptation in new environments. Funct. Ecol., 21(3), 394–407.

Gibbs A.G., Louie A.K., Ayala J.A. (1998) Effects of temperature on cuticular lipids and water balance in a desert Drosophila: is thermal acclimation beneficial? J. Exp. Biol., 201: 71-80.

Gilbert L.I., Granger N.A., Roe R.M. (2000) The juvenile hormones: historical facts and speculations on future research directions. Insect Biochem. Mol. Biol., 30: 617-644.

Gilbert J.D.J., Manica A. (2010) Parental care trade-offs and life-history relationships in insects. Am. Nat., 173 (2): 212-226.

Gilchrist J.S. (2004) Pup escorting in the communal breeding banded mongoose: behavior, benefits, and maintenance. Behav. Ecol., 15(6):952-960.

Gilchrist J.S. (2006) Reproductive success in a low skew, communal breeding mammal: the banded mongoose, Mungos mungo. Behav. Ecol. Sociobiol., 60: 854-863. Gilchrist J.S., Otali E., Mwanguhya F. (2004) Why breed

communally? Factors affecting fecundity in a communal breeding mammal: the banded mongoose (Mungos mungo). Behavi. Ecol. Sociobiol., 57: 119-131.

Gillespie J.H. (1977) Natural selection for variance in offspring numbers: A new evolutionary principle. Am. Nat. 111, 1010–1014.

Giray T., Giovanetti M., West-Eberhard M.J. (2005) Juvenile hormone, reproduction, and worker behavior in the neotropical social wasp Polistes canadensis. Proc. Natl. Acad. Sci. USA.,102(9): 3330-3335.

Godfray H.C.J. (1995) Evolutionary theory of parent-offspring conflict. Nature, 376: 133-138.

Godfray H.C.J., Parker G.A. (1992) Sibling competition, parent-offspring conflict and clutch size. Anim. Behav., 43: 473-490.

Gomes C.M., Mundry R., Boesch C. (2009) Long-term reciprocation of grooming in wild West African chimpanzees. Proc. R. Soc. B 276: 699-706.

Goodman W.G, Cusson M. (2012)The juvenile hormones. In: Gilbert LI, ed. Insect Endocrinology. London: Academic Press; pp: 310-365.

Grafen A. (1982) How not to measure inclusive fitness. Nature, 298: 425-426.

Graham M.E., Herberholz J. (2009) Stability of dominance relationships in crayfish depends on social context. Anim. Behav., 77: 195-199.

Greene M.J., Gordon D.M. (2003) Cuticular hydrocarbons inform task decisions. Nature, 423, 32.

Griesser M., Drobniak S.M., Nakagawa S., Botero C.A. (2017) Family living sets the stage for cooperative breeding and ecological resilience in birds. PLoS Biol., 15(6), 1–17. Griesser M., Ekman J. (2004) Nepotistic alarm calling in the

Siberian jay, Perisoreus infaustus. Anim. Behav., 67(5), 933–939.

Griffith L.C., Ejima A. (2009) Courtship learning inDrosophila melanogaster: Diverse plasticity of a reproductive behavior. Learning & Memory, 16:743-750.

Griggio M., Pilastro A. (2007) Sexual conflict over parental care in a species with female and male brood. Anim. Behav., 74(4): 779-785.

Grinnell J., Packer C., Pusey A.E. (1995) Cooperation in male lions: kinship, reciprocity or mutualism? Anim. Behav., 49(1): 95-105.

Grindstaff J.L., Brodie E.D., Ketterson E.D. (2003) Immune function across generations: Integrating mechanism and evolutionary process in maternal antibody transmission. Proc. R. Soc. B., 270(1531), 2309–2319.

Grinsted L., Field J. (2017) Market forces influence helping behaviour in cooperatively breeding paper wasps. Nat. Comm., 8: 13750.

Grinsted L., Field J. (2018) Predictors of nest growth: diminishing returns for subordinates in the paper wasp Polistes dominula. Behav. Ecol. Sociobiol., 72(6). Groenewoud F., Frommen J.G., Josi D., Tanaka H., Jungwirth

A., Taborsky M. (2016) Predation risk drives social complexity in cooperative breeders. Proc. Natl. Acad. Sci. USA., 113(15): 4104-4109.

Groenewoud F., Clutton‐Brock T. (2020) Meerkat helpers buffer the detrimental effects of adverse environmental conditions on fecundity, growth and survival. J. Anim. Ecol., November, 1–12.

Gronenberg W., Riveros A.J. (2009) Social brains and behavior: past and present. In Organization of Insect Societies: From Genome to Sociocomplexity. Edited by Gadau J., Fewell J. Cambridge: Harvard University Press, 377-401.

Grosenick L., Clement T.S., Fernald R.D. (2007) Fish can infer social rank by observation alone. Nature, 445: 429-423. Gross M.R. (1996) Alternative reproductive strategies and

tactics: diversity within sexes. Trends Ecol. Evol. 11 (2): 92-98.

Grozinger C.M., Fan Y., Hoover S.E.R., Winston M. L. (2007) Genome-wide analysis reveals differences in brain gene expression patterns associated with caste and reproductive status in honey bees. Mol. Ecol., 16: 4837-4848.

Grozinger C.M., Sharabash N.M., Whitfield C.W., Robinson G.E. (2003) Pheromone-mediated gene expression in the honey bee brain. Proc. Natl Acad. Sci. USA, 100: 14519-14525.

Guidugli K.R., Nascimento A.M., Amdam G.V., Barchuk A.R., Omholt S. et al. (2005) Vitellogenin regulates hormonal dynamics in the worker caste of a eusocial insect. FEBS Letters, 579: 4961-4965 .

H

Haberer W., Schmitt T., Peschke K., Schreier P., Müller J.K. (2008) Ethyl 4-methyl heptanoate: a male-produced pheromone of Nicrophorus vespilloides. J. Chem. Ecol., 34: 94-98.

Haberer W., Schmitt T., Schreier P., Müller J.K. (2011) Intended and unintended receivers of the male pheromones of the burying beetlesNicrophorus humator andNicrophorus vespilloides. Entomol. Exp. Appl., 140: 122-126.

Haberer W., Steiger S., Müller J.K. (2010) (E)-Methylgeranate, a chemical signal of juvenile hormone titre and its role in the partner recognition system of burying beetles. Anim. Behav., 79(1): 17-24.

Haberer W., Steiger S., Müller J.K. (2014) Dynamic changes in volatile emissions of breeding burying beetles. Physiol. Entomol., 39: 153-164.

Hamilton I.M. (2013) The effects of behavioral plasticity and leadership on the predictions of optimal skew models. Behav. Ecol., 24(2): 444-456.

Hamilton W.D. (1964) Then genetical evolution of social behaviour. I, II. J. Theor. Biol., 7(1): 1-52.

Hamilton I.M., Heg D., Bender N. (2005) Size differences within a dominance hierarchy influence conflict and help in a cooperatively breeding cichlid. Behav., 142: 1591-1613.

(9)

194

Hamilton I.M., Taborsky M. (2005) Contingent movement and

cooperation evolve under generalized reciprocity. Proc. R. Soc. B, 272: 2259-2267.

Hammers M., Kingma S.A., Spurgin L.G., Bebbington K., Dugdale H.L., Burke T., Komdeur J., Richardson D.S. (2019) Breeders that receive help age more slowly in a cooperatively breeding bird. Nat. Comm., 10(1), 1–10. Hammers M., Kingma S.A., van Boheemen L.A., Sparks A.M.,

Burke T., Dugdale H.L., Richardson D.S., Komdeur J. (2021) Helpers compensate for age-related declines in parental care and offspring survival in a cooperatively breeding bird. Evol. Lett., (accepted).

Hannon S.J., Mumme R.L., Koenig W.D., Pitelka F.A. (1985) Replacement of breeders and within-group conflict in the cooperatively breeding acorn woodpecker. Behav. Ecol. Sociobiol., 17(4), 303–312.

Hannonen M., Sledge M.F., Turillazzi S., Sundström L. (2002) Queen reproduction, chemical signalling and worker behaviour in polygyne colonies of the antFormica fusca. Anim. Behav., 64: 477-485.

Hatchwell B.J. (1999) Investment strategies of breeders in avian cooperative breeding systems. Am. Nat. 154(2): 205-219.

Hatchwell B.J. (2010) Cryptic kin selection: Kin structure in vertebrate populations and opportunities for kin-directed cooperation. Ethol., 116(3), 203–216.

Hatchwell B.J., Komdeur J. (2000) Ecological constraints, life history traits and the evolution of cooperative breeding. Anim. Behav., 59: 1079-1086.

Hatchwell B.J., Russell A.F. (1996) Provisioning rules in cooperatively breeding long-tailed tits, Aegithalos caudatus: an experimental study. Proc. R. Soc. B, 263: 83-88.

Hayes, L.D. (2000). To nest communally or not to nest communally: a review of rodent communal nesting and nursing. Anim. Behav., 59: 677-688.

Heg D., Bachar Z., Brouwer L., Taborsky M. (2004) Predation risk is an ecological constraint for helper dispersal in a cooperatively breeding cichlid. Proc. R. Soc. B, 271: 2367-2374.

Heg D., Bender N., Hamilton I.M. (2004) Strategic growth decisions in helper cichlids. Proc. Roy. Soc. Lond. B, 271: 505-508.

Heg D., Hamilton I.M. (2008) Tug-of-war over reproduction in a cooperatively breeding cichlid. Behav. Ecol. Sociobiol., 62: 1249-1257.

Heg D., Jutzeler E., Mitchell J.S., Hamilton I.M. (2009) Helpful female subordinate cichlids are more likely to reproduce. Plos One, 4(5): e5458.

Heimpel G.E., Rosenheim J.A. (1995) Dynamic host feeding by the parasitoidAphytis melinus: the balance between current and future reproduction. J. Anim. Ecol., 64: 153-167.

Heinsohn R.G. (2004) Parental care, load-lightening and costs. In W.D. Koenig & J. L. Dickinson (Eds.), Ecology and Evolution of Cooperative Breeding in Birds (pp. 67–80). Cambridge Univ. Press.

Heinsohn R., Packer C. (1995) Complex cooperative strategies in group-territorial African lions. Science, 269(5228): 1260-1262.

Heinze J., Stengl B., Sledge M.F. (2002) Worker rank, reproductive status and cuticular hydrocarbon signature in the ant, Pachycondyla cf. Inversa. Behav. Ecol. Sociobiol., 52L 59-65.

Hinde C.A., Johnstone R.A., Kilner R.M. (2010) Parent-offspring conflict and coadaptation. Science, 327: 1373-1376.

Hodge S.J., Bell M.B.V., Cant M.A. (2011) Reproductive competition and the evolution of extreme birth synchrony in a cooperative mammal. Biol. Lett., 7: 54-56.

Hodge S.J., Bell M.B.V., Mwanguhya F., Kyabulima S., Waldick R.C., Russell A.F. (2009) Maternal weight, offspring

competitive ability, and the evolution of communal breeding. Behav. Ecol., 20: 729-735.

Hodge S.J., Manica A., Flower T.P., Clutton-Brock T.H. (2008) Determinants of reproductive success in dominant female meerkats. J. Anim. Ecol., 77, 99–102.

Hof C., Araújo M.B., Jetz W., Rahbek C. (2011) Additive threats from pathogens, climate and land-use change for global amphibian diversity. Nature, 480(7378), 516–519. Hof C., Levinsky I., Araújo M.B., Rahbek C. (2011) Rethinking species’ ability to cope with rapid climate change. Global Change Biol., 17(9), 2987–2990.

Hoffmann A.A., Sgrò C.M. (2011) Climate change and evolutionary adaptation. Nature, 470(7335), 479–485. Hogendoorn K., Velthuis H.H.W. (1998) Task allocation and

reproductive skew in social mass provisioning carpenter bees in relation to age and size. Insect. Soci., 46 (3): 198-207.

Holman L., Jorgense C.G., Nielsen J., d’Ettorre P. (2010a) Identification of an ant queen pheromone regulating worker sterility. Proc. R. Soc. B. 277: 3793-3800. Holman L., Dreier S., d’Ettorre P. (2010b) Selfish strategies

and host signalling: reproductive conflicts in ant queen associations. Proc. R. Soc. B. 277: 2007-2015.

Hoover S.E.R., Winston M.L., Oldroyd B.P. (2005) Retinue attraction and ovary activation: responses of wild type and anarchistic honey bees (Apis mellifera) to queen and brood pheromones. Behav. Ecol. Sociobiol. 59: 278-284. Hopwood P.E., Moore A.J., Royle N. (2013) Nutrition during

sexual maturation affects competitive ability but not reproductive productivity in burying beetles. Funct. Ecol., 27: 1350-1357.

Hopwood P.E., Moore A.J., Royle N.J. (2014). Effects of resource variation during early life and adult social environment on contest outcomes in burying beetles: silver spoon or context-dependent strategy? Proc. R. Soc. B, 281: 1394-1402.

Hopwood P.E., Moore A.J., Tregenza T., Royle N.J. (2015) Male burying beetles extend, not reduce, parental care duration when reproductive competition is high. J. Evol. Biol., 28: 1394-1402.

Hopwood P.E., Moore A.J., Tregenza T. (2016) Niche variation and the maintenance of variation in body size in a burying beetle. Ecol. Entomol., 41: 96-104.

Houston A., Davies N.B. (1985) The evolution of cooperation and life history in the dunnock,Prunella modularis. In R. Sibly, & R. Smith (Eds.), Behavioural ecology: The ecological consequences of adaptive behaviour (pp. 471e487). Oxford: Blackwell Scientific Publications. Houston A.I., Székely T., McNamara J.M. (2005) Conflict

between parents over care. Trends Ecol. Ecol., 20 (1): 33-38.

Howard R.W. (2001) Cuticular hydrocarbons of adult Pteromalus cerealellae (hymenoptera: Pteromalidae) and two larval hosts, Angoumois grain moth (Lepidoptera: Gelechiidae) and cowpea weevil (Coleptera: Bruchidae). Annu. Entomol. Soc. Am., 94: 152-158.

Howard R.W., Blomquist G.J. (2005) Ecological, behavioral, and biochemical aspects of insect hydrocarbons. Annu. Rev. Entomol., 50: 371-93.

Hsu Y., Earley R.L., Wolf L.L. (2006) Modulation of aggressive behaviour by fighting experience: mechanisms and contest outcomes. Biol. Rev., 81: 33-74.

Huang Z.-Y., Robinson G.E. (1996) Regulation of honey bee division of labor by colony age demography. Behav. Ecol. Sociobiol., 39: 147-158.

Huchard E., English S., Bell M.B.V., Thavarajah N., Clutton-Brock T. (2016) Competitive growth in a cooperative mammal. Nature, 533: 532-534.

Huerta C., Halffter G., Fresneau D. (1992) Inhibition of stridulation in Nicrophorus (Coleoptera: Silphidae): consequences for reproduction. Elytron, 6:151-157.

(10)

Huey R.B., Hertz P.E., Sinervo B. (2003) Behavioral drive versus behavioral inertia in evolution: A null model approach. Am. Nat., 161(3), 357–366.

Hunt G.J., Amdam G.V., Schlipalius D., Emore C., Sardesai N. et al. (2007) Behavioral genomics of honeybee foraging and nest defense. Sci. Nat., 94: 247-267.

Hunt J., Brooks R., Jennions M.D., Smith M.J., Bentsen C.L., Bussiere L.F. (2004) High-quality male field crickets invest heavily in sexual display but die young. Nature, 432: 1024-1027.

Hunt G.J., Wood K.V., Guzman-Novoa E., Lee H.D., Rothwell A.P., Bonham C.C. (2003) Discovery of 3-methyl-2-buten-1-yl acetate, a new alarm component in the sting apparatus of Africanized honeybees. J. Chem. Ecol., 29: 453-463.

Huntingford F.A., Meycalfe N.B., Thorpe J.E., Graham W.D., Adams C.E. (1990) Social dominance and body size in Atlantic salmon parr, Salmo salar L.. J. Fish Biol., 36: 877-881.

I

Izzo A., Wells M., Huang Z., Tibbetts E. (2010) Cuticular hydrocarbons correlate with fertility, not dominance, in a paper wasp,Polistes dominulus. Behav. Ecol. Sociobiol., 64(5): 857-864.

J

Jackson F.R., Gailey D.A., Siegel R.W. (1983) Biological rhythm mutations affect an experience-dependent modification of male courtship behavior in Drosophila melanogaster. J. Comp. Physiol., 151: 545-552.

Jacques B.J., Akahane S., Abe M., Middleton W., Hoback W.W., Shaffer J.J. (2009) Temperature and food availability differentially affect the production of antimicrobial compounds in oral secretions produced by two species of burying beetle. J. Chem. Ecol., 35: 871-877.

Jamieson I.G. (1997) Testing reproductive skew models in a communally breeding bird, the pukeko, Porphyrio porphyrio. Proc. R. Soc. Lond. B, 264: 335-340. Jassim O., Huang Z.Y., Robinson G.E. (2000) Juvenile

hormone profiles of worker honey bees, Apis mellifera, during normonal and accelerated behavioural development. J. Insect Physiol., 46(3):243-249. Jenkins E.V., Morris C., Blackman S. (2000) Delayed benefits

of paternal care in the burying beetle Nicrophorus vespilloides. Anim. Behav., 60: 443-451.

Jennions M.D., Macdonald D.W. (1994) Cooperative breeding in mammals. Trends Ecol. Evol., 9(3): 89-93.

Jetz W., Rubenstein D.R. (2011) Environmental uncertainty and the global biogeography of cooperative breeding in birds. Curr. Biol., 21(1), 72–78.

Jindra M., Palli S.R., Riddiford L.M. (2013) The juvenile hormone signaling pathway in insect development. Annu. Rev. Entomol., 58: 181-204.

Johnstone R.A., Cant M.A. (1999) Reproductive skew and the threat of eviction: A new perspective. Proc. R. Soc. B., 266(1416), 275–279.

Johnstone R.A., Hinde C.A. (2006) Negotiation over offspring care - how should parents respond to each other's effort? Behav. Ecol. 17: 818-827.

K

Kalinová B., Podskalská H., Růžička J., Hoskovec M. (2009) Irresistible bouquet of death - how are burying beetles (Coleoptera: Silphidae: Nicrophprus) attracted by carcasses. Sci. Nat., 96: 889-899.

Kather R., Drijfhout F.P., Martin S.J. (2011) Task group differences in cuticular lipids in the honey bee Apis mellifera. J. Chem. Ecol., 37: 205-212.

Kather R., Martin S.J. (2015) Evolution of Cuticular Hydrocarbons in the Hymenoptera: a Meta-Analysis. J. Chem. Ecol., 41: 871-883.

Katzav-Gozansky T., Soroker V., Ibarra F., Francke W., Hefetz A. (2001) Dufour’ s gland secretion of the queen honeybee (Apis mellifera): an egg discriminator pheromone or a queen signal? Behav. Ecol. Sociobiol., 51: 76-86.

Katzav-Gozansky T., Soroker V., Kamer J., Schulz C.M., Francke W., Hefetz A. (2003) Ultrastructural and chemical characterization of egg surface of honeybee worker and queen-laid eggs. Chemoecol., 13: 129-134. Keller L., Nonacs P. (1993) The role of queen pheromones in

social insects: queen control or queen signal? Anim. Behav., 45: 787-794.

Keller L., Reeve H.K. (1994) Partitioning of reproduction in animal societies. Trends. Ecol. Evol., 9(3), 98–102. Kennedy P., Higginson A.D., Radford A.N., Sumner S. (2018)

Altruism in a volatile world. Nature, 555(7696), 359–362. Keppner E.M., Prang M., Engel K.C., Ayasse M., Stökl J., Steiger S. (2017) Beyond cuticular hydrocarbons: Chemically mediated mate recognition in the subsocial burying beetle Nicrophorus vespilloides. J. Chem. Ecol., 43: 84-93.

Khidr S.K., Linforth R.S.T., Hardy I.C.W. (2013) Genetic and environmental influences on the cuticular hydrocarbon profiles of Goniozus wasps. Entomol. Exp. Appl., 147:175-185.

Kilner R.M., Drummond H. (2007) Parent-offspring conflict in avian families. J. Ornithol., 148(suppl 2): S241-246. Kilner R.M., Hinde C.A. (2008) Information warfare and

parent-offspring conflict. Advances in the Study of Behavior, 38: 283-336.

Kim T., Zuk M. (2000) The effects of age and previous experience on social rank in female red junglefowl,Gallus gallus spadiceus. Anim. Behav., 60: 239-244.

Kingma S.A. (2017) Direct benefits explain interspecific variation in helping behaviour among cooperatively breeding birds. Nat. Comm., 8:1094.

Kingma S.A., Bebbington K.L., Hammers M., Groenewoud F., Dugdale H., Van der Velde M., Taborsky M., Weissing F.J., Richardson D.S., Komdeur J. (2021) Reproduction successions drive cooperative breeding in social birds: subordinate group members’ help for reproductive participation. In Prep.

Kingma S.A., Bebbington K., Hammers M., Richardson D.S., Komdeur J. (2016) Delayed dispersal and the costs and benefits of different routes to independent breeding in a cooperatively breeding bird. Evol., 70(11), 2595–2610. Kingma S.A., Hall M.L., Arriero E., Peters A. (2010) Multiple

benefits of cooperative breeding in purple-crowned fairy-wrens: a consequence of fidelity? J. Anim. Ecol. 79: 757-768.

Kingma S.A., Komdeur J., Hammers M., Richardson D.S. (2016) The cost of prospecting for dispersal opportunities in a social bird. Biol. Lett., 12(6).

Kingma S.A., Santema P., Taborsky M., Komdeur J. (2014) Group augmentation and the evolution of cooperation. Trends. Ecol. Evol., 29(8), 476–484.

Klug H., Bonsall M.B. (2010) Life history and the evolution of parental care. Evol., 64(3): 823-835.

Koenig W.D., Dickinson J.L. (2016) Cooperative breeding in vertebrates: studies of ecology, evolution, and behavior. Cambridge: Cambridge University Press; 2016.

Koenig W.D., Dickinson J.L. (2004) Ecology and evolution of cooperative breeding in birds. Cambridge Univ. Press. Koenig W.D., Pitelka F.A., Carmen W.J., Mumme R.L., Mark T.,

Road E.C.V., Valley C. (1992) THE QUARTERLY of IN COOPERATIVE BREEDERS. Review Literature And Arts Of The Americas, 67(2), 111–150.

Koenig W.D., Walters E.L. (2015) Temporal variability and cooperative breeding: Testing the bet-hedging hypothesis in the acorn woodpecker. Proc. R. Soc. B., 282(1816).

(11)

196

Koenig W.D., Walters E.L., Barve S. (2019) Does

Helping-at-the-Nest Help? The Case of the Acorn Woodpecker. Front. Ecol. Evol., 7(July), 1–9.

Koenig W.D., Walters E.L., Haydock J. (2011) Variable helper effects, ecological conditions, and the evolution of cooperative breeding in the acorn woodpecker. Am. Nat., 178(2), 145–158.

Kokko H., Jennions M. (2012) Sex differences in parental care. In:The Evolution of Parental Care (N. Royle, P. Smiseth & M.Kolliker, eds), pp. 101–116. Oxford University Press, Oxford.

Kokko H., Johnstone R.A., Clutton-Brock T.H. (2001) The evolution of cooperative breeding through group augmentation. Proc. R. Soc. B., 268(1463), 187–196. Kokko H., Johostone R.A., Wright J. (2002) The evolution of

parental and alloparental effort in cooperative breeding groups: when should helpers pay to stay? Behav. Ecol., 13(3): 291-300.

Kokko H., Ekman J. (2002) Delayed dispersal as a route to breeding: Territorial inheritance, safe havens, and ecological constraints. Am. Nat., 160(4), 468–484. Komdeur J. (1992) Importance of habitat saturation and

territory quality for evolution of cooperative breeding in the Seychelles warbler. Nature, 358, 493–495.

Komdeur J. (1993) Fitness-related dispersal. Nature, 366(6450), 23–24.

Komdeur J. (1994) The effect of kinship on helping in the cooperative breeding Seychelles warbler (Acrocephalus sechellensis). Proc. R. Soc. B., 256(1345), 47–52. Komdeur J. (1995) Influence of helping and breeding

experience on reproductive performance in the Seychelles warblers: a translocation experiment. Behav. Ecol., 7(3): 326-333.

Komdeur J. (2001) Mate guarding in the Seychelles warbler is energetically costly and adjusted to paternity risk. Proc. R. Soc. Lond. B. 268: 2103-2111.

Komdeur J., Ekman J. (2010) Adaptations and constraints in the evolution of delayed dispersal: implications for cooperation. In J. Szekely, T., Moore, A.J., Komdeur (Ed.), Social behaviour: genes, ecology and evolution (pp. 306–327). Cambridge Univ. Press.

Komdeur J., Hatchwell B.J. (1999) Kin recognition: function and mechanism in avian societies. Trends Ecol. Evol., 14(6): 237-241.

Komdeur J., Richardson D.S., Hammers M., Eikenaar C., Brouwer L., Kingma S.A. (2017) The evolution of cooperative breeding in vertebrates. In Encyclopedia Life Sciences. John Wiley & Sons, Ltd.

Komdeur J., Huffstadt A., Prast W., Castle G., Mileto R., Wattel J. (1995) Transfer experiments of Seychelles warblers to new islands: changes in dispersal and helping behaviour. Animal Behaviour, 49(3), 695–708. https://doi.org/10.1016/0003-3472(95)80202-9

Komdeur J., Schrama, M.J.J., Meijer, K., Moore, A.J., Beukeboom, L.W. (2013). Cobreeding in the burying beetle, Nicrophorus vespilloides: Tolerance rather than cooperation. Ethol., 119: 1138-1148.

Korb J., Schmidinger S. (2004) Help or disperse? Cooperation in termites influenced by food conditions. Behav. Ecol. Sociobiol., 56(1), 89–95.

Kramer K.L. (2010) Cooperative breeding and its significance to the demographic success of humans. Ann. Rev. Anthropol., 39, 417–436.

Kramer J., Meunier J. (2019) The other facets of family life and their role in the evolution of animal sociality. Biol. Rev., 94: 199-215.

Krause J., Ruxton G.D. (2002). Living in Groups. Oxford Univ. Press.

Krupp J.J., Kent C., Billeter J., Azanchi R., So A.K.-C., Schonfeld J.A., Smith B.P., Lucas C., Levine J.D. (2008) Social experience modifies pheromones expression and

mating behavior in maleDrosophila melanogaster. Curr. Biol., 18(18): 1371–1383.

Kucharski R., Maleszka R. (2002) Molecular profiling of behavioural development: differential expression of mRNAs for inositol 1,4,5-trisphosphate 3-kinase isoforms in naive and experienced honeybees (Apis mellifera). Mol. Brain Res., 99: 92-101.

Kucharski R., Maleszka J., Foret S., Maleszka R. (2008) Nutritional control of reproductive status in honeybees via DNA methylation. Science, 319: 1827-1830.

Kurtovic A., Widmer A., Dickson B.J. (2007) A single class of olfactory neurons mediates behavioural responses to a Drosophila sex pheromone. Nature, 446: 542-546. Kvarnemo C. (2006) Evolution and maintenance of male care:

is increased paternity a neglected benefit of care? Behav. Ecol., 17: 144-148.

Kyriacou C.P, Hall J.C. (1985) Action potential mutations stop a biological clock inDrosophila. Nature, 314: 171–173.

L

Langen T.A., Rabenold K.E. (1994) Dominance and diet selection in juncos. Behav. Ecol., 5: 334-338.

Langenhof M.R., Komdeur J. (2018) Why and how the early-life environment affects development of coping behaviours. Behav. Ecol. Sociobiol., 72(3), 1–32. Langer P., Hogendoorn K., Keller L. (2004) Tug-of-war over

reproduction in a social bee. Nature, 428: 844-847. Langmore N.E., Bailey L.D., Heinsohn R.G., Russell A.F.,

Kilner R.M. (2016) Egg size investment in superb fairy-wrens: Helper effects are modulated by climate. Proc. R. Soc. B., 283(1843), 10–12.

Le Conte Y., Aranold G., Trouiller J., Masson C., Chappe B. (1990) Identification of a brood pheromone in honeybees. Sci. Nat., 77: 334-336.

Le Conte Y., Mohammedi A., Robinson G.E. (2001) Primer effects of a brood pheromone on honeybee behavioural development. Proc. R. Soc. B, 268: 163-168.

Le Conte Y., Sreng L., Poitout S.H. (1995) Brood pheromone can modulate the feeding behavior of Apis mellifera workers (Hymenoptera: Apidae). J. Econom. Entomol., 88: 798-804.

Lee V.E., Head M.L., Carter M.J., Royle N.J. (2013) Effects of age and experience on contest behavior in the burying beetle, Nicrophorus vespilloides. Behav. Ecol., 25(1): 172-179.

Lehmann L., Balloux F. (2007) Natural selection on fecundity variance in subdivided populations: Kin selection meets bet hedging. Genetics, 176(1), 361–377.

Leigh D., Smiseth P.T. (2012) Parent-offspring conflict over the transition to independence in Nicrophorus vespilloides: parental chemical cues and offspring begging. Ethol., 118(5): 460-465.

Leighton G.M., Meiden L.V. (2016) Sociable weavers increase cooperative nest construction after suffering aggression. Plos one.11(4): e0154470.

Lengyel F., Westerlund S.A., Kaib M. (2007) Juvenile hormone III influences task-specific cuticular hydrocarbon profile changes in the ant Myrmicaria eumenoides. J. Chem. Ecol., 33: 167-181.

Leimar O. (2009) Environmental and genetic cues in the evolution of phenotypic polymorphism. Evol. Ecol., 23(1), 125–135.

Leonard M.L., Horn A.G., Brown C.R., Fernandez N.J. (1997) Parent-offspring recognition in tree swallows, Tachycineta bicolor. Anim. Behav., 54: 1107-1116. Leoncini I., Le Conte Y., Costagliola G., Plettner E., Toth A.L.,

et al. (2004) Regulation of behavioral maturation by a primer pheromone produced by adult worker honey bees. Proc. Natl. Acad. Sci. USA, 101:17559-17564.

Leonhardt S.D., Menzel F., Nehring V., Schmitt T. (2016) Ecology and evolution of communication in social insects. Cell, 164(6):1277-1287.

(12)

Lessells C.M. (2012). Sexual conflict. In N. J. Royle, P. T. Smiseth, & M. Kolliker (Eds.), The evolution of parental care (pp. 150-170). Oxford, U.K.: Oxford University Press.

Lhomme P., Hines H.M. (2018) Reproductive dominance strategies in insect social parasites. J. Chem. Ecol., 44: 838-850.

Liebig J., Peeters C., Oldham N.J., Markstädter C., Hölldobler B. (2000) Are variations in cuticular hydrocarbons of queens and workers a reliable signal of fertility in the ant Harpegnathos saltator? Proc. Natl. Acad. Sci. USA, 97(8): 4124-4131.

Ligon J.D., Ligon S.H., Ford H.A. (1991) An Experimental Study of the Bases of Male Philopatry in the Cooperatively Breeding Superb Fairy‐Wren Malurus cyaneus. Ethol, 87(1–2), 134–148.

Ligon J.D., Burt D.B. (2004) Evolutionary origins. In J. L. Koenig, W.D., Dickinson (Ed.), Ecology and evolution of cooperative breeding in birds (pp. 5–34). Cambridge Univ. Press.

Lin N., Michener C.D. (1972) Evolution of sociality in insects. Quarte. Rev. Biol., 47(2):131-159.

Liu M., Chan S.-F., Rubenstein D.R., Sun S.-J., Chen B.-F., Shen S.-F. (2020) Ecological transitions in grouping benefits explain the paradox of environmental quality and sociality. Am. Nat., 195(5): 818-832.

Lock J.E., Smiseth P.T., Moore A.J. (2004) Selection, inheritance, and the evolution of parent-offspring interactions. Am. Nat., 164(1): 13-24.

Lockey K.H. (1980) Insect cuticular hydrocarbons. Comp. Biochem. Physiol., 65: 457-462.

Love O.P., Gilchrist H.G., Descamps S., Semeniuk C.A.D., Bêty J. (2010) Pre-laying climatic cues can time reproduction to optimally match offspring hatching and ice conditions in an Arctic marine bird. Oecologia, 164(1), 277–286. de Luca D.W., Ginsberg J.R. (2001) Dominance, reproduction

and survival in banded mongooses: towards an egalitarian social system? Anim. Behav., 61: 17-30. Lukas D., Clutton-Brock T. (2012) Cooperative breeding and

monogamy in mammalian societies. Proc. R. Soc. B., 279(1736), 2151–2156.

Lukas D., Clutton-Brock T. (2014) Costs of mating competition limit male lifetime breeding success in polygynous mammals. Proc. R. Soc. B., 281(1786). Lukas D., Clutton-Brock T. (2017) Climate and the distribution

of cooperative breeding in mammals. R. Soc. Open Sci., 4(1).

Lutermann H., Schmelting B., Radespiel U., Ehresmann P., Zimmermann E. (2006). The role of survival for the evolution of female philopatry in a solitary forager, the grey mouse lemur (Microcebus murinus). Proc. R. Soc. B., 273(1600), 2527–2533.

Luzar A.B., Schweizer R., Sakaluk S.K., Steiger S. (2017) Access to a carcass, but not mating opportunities, influences paternal care in burying beetles. Behav. Ecol. Sociobiol., 71:7.

M

MacColl A.D.C., Hatchwell B.J. (2003) Sharing of caring: nestling provisioning behaviour of long-tailed tit, Aegithalos caudatus, parents and helpers. Anim. Behav., 66: 955-964.

Macedo R.H., Bianchi C.A. (1997) Communal Breeding in Tropical Guira Cuckoos Guira guira: Sociality in the Absence of a Saturated Habitat. J. Avian Biol., 28(3), 207.

Mäenpää M.I., Andrewa C.P., Collette D., Leigh D., Smiseth P.T. (2015) Burying beetle larvae discriminate between individual parents and between some class of adults. Ethol., 121: 395-402.

Mappes J., Kaitala A., Alatalo R.V. (1995) Joint brood guarding in parent bugs–an experiment on defense against predation. Behav. Ecol. Sociobiol., 36: 343-347.

Marshall H.H., Sanderson J.L., Mwanghuya F., Businge R., Kyabulima S., Hares M.C., Inzani E., Kalema-Zikusoka G., Mwesige K., Thompson F.J., Vitikainen E.I.K., Cant M.A. (2016) Variable ecological conditions promote male helping by changing banded mongoose group composition. Behav. Ecol., 27(4), 978–987.

Martínez-Abraín A., Tavecchia G., Regan H.M., Jiménez J., Surroca M., Oro D. (2012) Effects of wind farms and food scarcity on a large scavenging bird species following an epidemic of bovine spongiform encephalopathy. J. Appl. Ecol., 49(1), 109–117.

Maruska K.P., Fernald R.D. (2010) Behavioral and physiological plasticity: Rapid changes during social ascent in an African cichlid fish. Hormones and Behavior, 58 (2): 230-240.

Martin S.J., Vitikainen E., Helanterä H., Drijfhout F. P. (2008) Chemical basis of nestmate recognition in the ant Formica exsecta. Proc. Roy. Soc. B., 275: 1271–1278. Mas F., Haynes K.F., Kölliker M. (2009) A chemical signal of

offspring quality affects maternal care in a social insect. Proc. Roy. Soc. B., 276: 2847-2853.

Mas F., Kölliker M. (2008) Maternal care and offspring begging in social insects: chemical signalling, hormonal regulation and evolution. Anim. Behav., 76: 1121-1131. Mattey S.N., Smiseth P.T. (2015) Complex effects of

inbreeding on biparental cooperation. Am. Nat. 185(1): 1-12.

Maynard Smith J. (1982) Do animals convey information about their intentions? J. Theor. Biol., 97(1): 1-5. McFarland R., Murphy D., Lusseau D., Henzi S.P., Parker J.L.,

Pollet T.V., Barrett L. (2017) The ‘strength of weak ties’ among female baboons: fitness-related benefits of social bonds. Anim. Behav., 126, 101–106.

McNamara J.M., Gasson C.E., Houston A.I. (1999) Incorporating rules for responding into evolutionary games. Nature, 401: 368-371.

Mehlferber E.C., Benowitz K.M., Roy-Zokan E.M., McKinney E.C., Cunningham C.B., Moore A.J. (2017) Duplication and sub/neofunctionalization of Malvolio, an insect homolog of Nramp, in the subsocial beetle Nicrophorus vespilloides. G3: Genes, Genomes, Genetics, 7(10): 3393-3403.

Meierhofer I., Schwarz H.H., Müller J.K. (1999) Seasonal variation in parental care, offspring development, and reproductive success in the burying beetle,Nicrophorus vespillo. Ecol. Entomol., 24: 73-79.

Mello C.V., Vicario D.S., Clayton D.F. (1992) Song presentation induces gene expression in the songbird forebrain. Proc. Natl. Acad. Sci. USA, 89(15): 6818-6822. Nelson C.M., Ihle K.E., Fondrk M.K., Jr R.E.P., Amdam G.V. (2007) The gene vitellogenin Has multiple coordinating effects on social organization. PLoS Biology, 5(3): e62. doi:10.1371/

journal.pbio.0050062.

Merilä J., Hendry A.P. (2014) Climate change, adaptation, and phenotypic plasticity: The problem and the evidence. Evol. Appl., 7(1), 1–14.

Merrick M.J., Smith R.J. (2004) Temperature regulation in burying beetles (Nicrophorus spp.: Coleoptera: Silphidae): effects of body size, morphology and environmental temperature. J. Exp. Biol., 207: 723-733.

Metcalfe N.B., Monaghan P. (2001) Compensation for a bad start: grow now, pay later? Trends Ecol. Evol., 16: 254-260.

Mitani J.C., Call J., Kappeler P.M., Palombit R.A., Silk J.B. (2012) The Evolution of Primate Societies. In J. B. Mitani, J.C., Call, J., Kappeler, P.M., Palombit, R.A., Silk (Ed.), The Evolution of Primate Societies. Univ. of Chicago Press.

Mitchell J.S., Jutzeler E., Heg D., Taborsky M. (2009) Dominant members of cooperatively-breeding groups

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