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Peignier M, Bégué L, Ringler M, Szabo B, Ringler E. Regardless of personality, males show similar levels of plasticity in territory defense in a Neotropical poison frog. Sci Rep 2023; 13:3435. [PMID: 36859425 PMCID: PMC9977724 DOI: 10.1038/s41598-023-30546-7] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Grants] [Track Full Text] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 11/18/2022] [Accepted: 02/24/2023] [Indexed: 03/03/2023] Open
Abstract
Animal personality traits are sometimes linked to an individual's degree of plasticity, with certain personality types being more plastic than others. In territorial species, consistently high levels of aggression might increase the risk of harmful fights, while consistently low aggression might lead to the loss of a territory. Consequently, reacting plastically with an appropriate territorial response should be beneficial to avoid these risks. An integrative investigation of both personality traits and plasticity can help us better understand the dynamics of aggressive interactions during male-male competition. Here, we used a free-ranging Neotropical poison frog population to investigate the role of plasticity in male territorial aggression towards intruders. We conducted repeated standardized territorial intrusion experiments mimicking frogs of different body sizes via playback calls with different peak frequencies. We found individual repeatability for the latency to reach and approach a simulated intruder and observed that both aggressive and less aggressive males decreased their level of aggression towards big intruders. However, our results do not support a correlation between personality and plasticity in the context of male territory defense during the breeding season. We discuss how such a correlation between personality and plasticity might be conditional on the costs and benefits across contexts.
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Affiliation(s)
- Mélissa Peignier
- Division of Behavioural Ecology, Institute of Ecology and Evolution, University of Bern, Wohlenstrasse 50a, 3032, Hinterkappelen, Switzerland.
| | - Lauriane Bégué
- Division of Behavioural Ecology, Institute of Ecology and Evolution, University of Bern, Wohlenstrasse 50a, 3032, Hinterkappelen, Switzerland
| | - Max Ringler
- Division of Behavioural Ecology, Institute of Ecology and Evolution, University of Bern, Wohlenstrasse 50a, 3032, Hinterkappelen, Switzerland
- Institute of Electronic Music and Acoustics, University of Music and Performing Arts Graz, Graz, Austria
| | - Birgit Szabo
- Division of Behavioural Ecology, Institute of Ecology and Evolution, University of Bern, Wohlenstrasse 50a, 3032, Hinterkappelen, Switzerland
| | - Eva Ringler
- Division of Behavioural Ecology, Institute of Ecology and Evolution, University of Bern, Wohlenstrasse 50a, 3032, Hinterkappelen, Switzerland
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Órfão I, Carvalho C, Rodrigues I, Ascensão L, Pedaccini M, Vicente L, Barbosa M, Varela SAM. The role of intrasexual competition on the evolution of male-male courtship display: a systematic review. PeerJ 2023; 10:e14638. [PMID: 36751481 PMCID: PMC9899439 DOI: 10.7717/peerj.14638] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 10/19/2021] [Accepted: 12/05/2022] [Indexed: 02/05/2023] Open
Abstract
Background Evidence of male-male courtship display is widespread across the animal kingdom. Yet, its function and evolutionary origin remain unclear. Here, we hypothesise that male-male courtship display evolved in response to selection pressure exerted by intrasexual competition during male-female courtship interactions. Intrasexual competition can be caused by bystander male pressure through eavesdropping and exploiting on displayer male's courtship interactions with females. This bystander pressure can lead to an audience effect by the displayer, who will change their courtship behaviour in the presence of bystanders and display directly towards them, even in the absence of females, as an intimidation strategy. In species where this selection pressure has taken place, we predict that the male courtship display will have a dual function: attract females and deter competitors. Therefore, we expected to find more evidence of bystander-related behaviours in species for which male-male courtship display is linked to intrasexual competition compared to species for which other explanatory hypotheses are more plausible (e.g., mistaken identity or courtship practice). Methodology We conducted two systematic reviews to test this hypothesis. First, we conducted a search for studies of species with courtship display between males and of the hypotheses provided to explain this behaviour. Our goal was to identify the species with male-male courtship display and evidence of intrasexual competition. Second, among the species with male-male courtship display, we searched for evidence of bystander-related behaviours, i.e., articles referring to eavesdropping, exploitation, and audience effect during male-female courtship interactions. Our goal was to test whether species with intrasexual competition are also more likely to show bystander-related behaviours. Results Although most studies reporting male courtship display towards other males do not suggest any explanatory hypothesis for this behaviour, the intrasexual competition hypothesis was largely mentioned and supported by some studies reviewed. Additionally, there is more evidence of eavesdropping and of all three bystander-related behaviours combined in species for which the intrasexual competition hypothesis was suggested. Conclusions Overall, our review supports the hypothesis that intrasexual competition can play a key role in male courtship display evolution, namely that male-male courtship display may have evolved as a secondary function of male-female courtship interactions via bystander male pressure. However, our review also shows that despite the increasing interest in same-sex sexual behaviours, and male-male courtship display in particular, most studies were found to be merely descriptive, and the hypotheses they suggested to explain courtship display between males mostly speculative. This highlights an important gap in the literature. To clarify both the evolution and the function of male-male courtship display, this behaviour needs to be empirically studied more often. Our review can help advancing this research area, as it makes the 20 species with male-male courtship display for which the intrasexual competition hypothesis was suggested excellent candidates for empirical research.
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Affiliation(s)
- Inês Órfão
- CFCUL–Centre for Philosophy of Sciences of the University of Lisbon, Faculty of Sciences of the University of Lisbon, Lisboa, Portugal,cE3c–Centre for Ecology, Evolution and Environmental Changes, Faculty of Sciences of the University of Lisbon, Lisboa, Portugal,MARE–Marine and Environmental Sciences Centre/ARNET–Aquatic Research Network, Agência Regional para o Desenvolvimento da Investigação Tecnologia e Inovação (ARDITI), Funchal, Madeira, Portugal
| | - Constança Carvalho
- CFCUL–Centre for Philosophy of Sciences of the University of Lisbon, Faculty of Sciences of the University of Lisbon, Lisboa, Portugal,ISPA–Instituto Universitário, Lisboa, Portugal, Lisboa, Portugal
| | - Inês Rodrigues
- Faculty of Sciences of the University of Lisbon, Lisboa, Portugal
| | - Leonor Ascensão
- Faculty of Sciences of the University of Lisbon, Lisboa, Portugal
| | | | - Luís Vicente
- CFCUL–Centre for Philosophy of Sciences of the University of Lisbon, Faculty of Sciences of the University of Lisbon, Lisboa, Portugal,Department of Animal Biology, Faculty of Sciences of the University of Lisbon, Lisboa, Portugal,School of Psychology and Life Sciences of the Lusófona University, Lisboa, Portugal
| | - Miguel Barbosa
- School of Biology, University of St Andrews, Centre for Biological Diversity, St Andrews, United Kingdom,CESAM–Centro de Estudos do Ambiente e do Mar, Departamento de Biologia, Universidade de Aveiro, Aveiro, Portugal
| | - Susana A. M. Varela
- cE3c–Centre for Ecology, Evolution and Environmental Changes, Faculty of Sciences of the University of Lisbon, Lisboa, Portugal,IGC–Instituto Gulbenkian de Ciência, Oeiras, Portugal,William James Center for Research, ISPA–Instituto Universitário, Lisboa, Portugal
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Tóth Z, Jaloveczki B, Tarján G. Diffusion of Social Information in Non-grouping Animals. Front Ecol Evol 2020. [DOI: 10.3389/fevo.2020.586058] [Citation(s) in RCA: 5] [Impact Index Per Article: 1.0] [Reference Citation Analysis] [Abstract] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/13/2022] Open
Abstract
Recent findings indicate that the utilization of social information, produced inadvertently by other individuals through their spatial location and/or interaction with the environment, may be ubiquitous in the animal kingdom. If so, social information-mediated effects on population growth and interspecies interactions may be more prevalent than previously thought. However, little is known about how social information may spread among non-grouping individuals, i.e., in animals that do not form cohesive groups and therefore social attraction among group-mates does not facilitate information diffusion. Are there any perception-related, temporal, and/or spatial parameters that may facilitate or limit the spread of social information in temporary aggregations or among dispersed individuals in a population? We argue that living in cohesive groups is not necessarily required for the diffusion of social information and for social information-mediated effects to emerge in a population. We propose that while learning complex problem-solving techniques socially is less likely to occur in non-grouping animals, the spread of adaptive responses to social stimuli, especially to non-visual cues, can be common and may affect population, and/or community dynamics in a wide range of taxa. We also argue that network-based diffusion analysis could be a suitable analytical method for studying information diffusion in future investigations, providing comparable estimations of social effects on information spread to previous studies on group-living animals. We conclude that more studies are warranted to verify what intrinsic and extrinsic factors influence information propagation among incidentally and/or indirectly interacting individuals if we are to better understand the role of social information in animal populations and how the social and ecological characteristics of species are related to information spread in natural communities.
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