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We find that relatedness within supercolonies is low but positive when viewed on a population level, which may be due to limited dispersal of individuals and/or ecological factors such as nest site limitation and competition against conspecifics. Genetic structure of supercolonies varied with both sample class and sampling time point, which indicates that mobility of individuals varies according to both caste and season and suggests that generalizing has to be carried out with caution in studies of supercolonial species. Overall, our analysis provides novel evidence that native wood ant supercolonies exhibit fine-scale genetic substructure, which may explain the maintenance of cooperation in these low-relatedness societies.","sv":"Ant supercolonies are the largest cooperative units known in nature. They consist of networks of interconnected nests with hundreds of reproductive queens, where individuals move freely between nests, cooperate across nest boundaries and show little aggression towards non-nestmates. The combination of high queen numbers and free mixing of workers, queens and brood between nests results in extremely low nestmate relatedness. In such low-relatedness societies, cooperative worker behaviour appears maladaptive because it may aid random individuals instead of relatives. Here, we provide a comprehensive picture of genetic substructure in supercolonies of the native wood ant Formica aquilonia using traditional population genetic as well as network analysis methods. Specifically, we test for spatial and temporal variation in genetic structure of different classes of individuals within supercolonies and analyse the role of worker movement in determining supercolony genetic networks. We find that relatedness within supercolonies is low but positive when viewed on a population level, which may be due to limited dispersal of individuals and/or ecological factors such as nest site limitation and competition against conspecifics. Genetic structure of supercolonies varied with both sample class and sampling time point, which indicates that mobility of individuals varies according to both caste and season and suggests that generalizing has to be carried out with caution in studies of supercolonial species. Overall, our analysis provides novel evidence that native wood ant supercolonies exhibit fine-scale genetic substructure, which may explain the maintenance of cooperation in these low-relatedness societies."},"field_of_science":[{"id":"cfd80611-c263-4bde-bab8-11502ec390b5","url":"http://www.yso.fi/onto/okm-tieteenala/ta113","in_scheme":"http://www.yso.fi/onto/okm-tieteenala/conceptscheme","pref_label":{"en":"Computer and information sciences","fi":"Tietojenkäsittely ja informaatiotieteet","sv":"Data- och informationsvetenskap"}},{"id":"5ff2e521-ce62-40e6-8801-473b135adf80","url":"http://www.yso.fi/onto/okm-tieteenala/ta1184","in_scheme":"http://www.yso.fi/onto/okm-tieteenala/conceptscheme","pref_label":{"en":"Genetics, developmental biology, physiology","fi":"Genetiikka, kehitysbiologia, fysiologia","sv":"Genetik, utvecklingsbiologi, fysiologi"}}],"infrastructure":[],"issued":"2016-11-09","keyword":[],"language":[],"metadata_owner":{"id":"829302c3-f5d4-4d20-9ec3-5148bcf385cc","organization":"aalto.fi","admin_organization":"aalto.fi"},"other_identifiers":[],"persistent_identifier":"doi:10.5061/dryad.c682f","pid_generated_by_fairdata":false,"projects":[],"provenance":[],"relation":[],"remote_resources":[{"title":{"en":"Data in remote location","fi":"Aineisto ulkoisessa palvelussa","sv":"Material i en extern tjänst","und":"Data in remote location"},"use_category":{"id":"1ad1b146-d147-45db-a2fd-1096abc94984","url":"http://uri.suomi.fi/codelist/fairdata/use_category/code/source","in_scheme":"http://uri.suomi.fi/codelist/fairdata/use_category","pref_label":{"en":"Source material","fi":"Lähdeaineisto"}},"download_url":"https://datadryad.org/resource/doi:10.5061/dryad.c682f"}],"spatial":[],"state":"published","temporal":[],"theme":[],"title":{"en":"Data from: Genetic structure of native ant supercolonies varies in space and time","fi":"Data from: Genetic structure of native ant supercolonies varies in space and time","sv":"Data from: Genetic structure of native ant supercolonies varies in space and time"},"created":"2025-12-04T07:48:18Z","modified":"2026-03-26T06:30:51Z","dataset_versions":[{"id":"ab70c193-ff70-41c9-a754-6de4f54d1193","title":{"en":"Data from: Genetic structure of native ant supercolonies varies in space and time","fi":"Data from: Genetic structure of native ant supercolonies varies in space and time","sv":"Data from: Genetic structure of native ant supercolonies varies in space and time"},"persistent_identifier":"doi:10.5061/dryad.c682f","state":"published","created":"2025-12-04T07:48:18Z","version":1}],"published_revision":2,"version":1,"api_version":3,"metadata_repository":"Fairdata"},{"id":"58e5183d-68a2-4517-b65b-38d42a677e3b","access_rights":{"id":"13c946aa-ca18-4b40-b58a-31777d118de3","license":[{"id":"edc3e7d1-0e14-490e-a7dd-6ace3dcb3673","url":"http://uri.suomi.fi/codelist/fairdata/license/code/CC0-1.0","in_scheme":"http://uri.suomi.fi/codelist/fairdata/license","pref_label":{"en":"Creative Commons CC0 1.0 Universal (CC0 1.0) Public Domain Dedication","fi":"Creative Commons Yleismaailmallinen (CC0 1.0) Public Domain -lausuma"}}],"access_type":{"id":"b41462f7-00bf-4e50-935b-2bf1184453a7","url":"http://uri.suomi.fi/codelist/fairdata/access_type/code/open","in_scheme":"http://uri.suomi.fi/codelist/fairdata/access_type","pref_label":{"en":"Open","fi":"Avoin"}},"restriction_grounds":[]},"actors":[{"id":"6cc9640e-0e7e-4064-b2e8-0e2cce309781","roles":["contributor"],"person":{"id":"3be50753-6ade-4410-90e7-6e378ea56e1d","name":"Heini Törnqvist"},"organization":{"id":"a5f4935c-4c0e-44f6-a7d6-71b946913649","pref_label":{"en":"University of Helsinki","fi":"Helsingin yliopisto","sv":"Helsingfors universitet","und":"Helsingin yliopisto"},"url":"http://uri.suomi.fi/codelist/fairdata/organization/code/01901","in_scheme":"http://uri.suomi.fi/codelist/fairdata/organization"}},{"id":"d4691584-0621-4392-8b61-228c71f5b35d","roles":["contributor"],"person":{"id":"a571512e-a856-4210-b28f-d9f0f4d47e1f","name":"Sanni Somppi"},"organization":{"id":"a5f4935c-4c0e-44f6-a7d6-71b946913649","pref_label":{"en":"University of Helsinki","fi":"Helsingin yliopisto","sv":"Helsingfors universitet","und":"Helsingin yliopisto"},"url":"http://uri.suomi.fi/codelist/fairdata/organization/code/01901","in_scheme":"http://uri.suomi.fi/codelist/fairdata/organization"}},{"id":"94218335-4626-4757-95fb-ad9b820fe4d5","roles":["contributor"],"person":{"id":"f27d804d-ddfd-4099-b90b-625363f3b8e9","name":"Aija Koskela"},"organization":{"id":"a5f4935c-4c0e-44f6-a7d6-71b946913649","pref_label":{"en":"University of Helsinki","fi":"Helsingin yliopisto","sv":"Helsingfors universitet","und":"Helsingin yliopisto"},"url":"http://uri.suomi.fi/codelist/fairdata/organization/code/01901","in_scheme":"http://uri.suomi.fi/codelist/fairdata/organization"}},{"id":"df69c4c4-dcde-4688-a62a-afe0cdebf940","roles":["contributor"],"person":{"id":"329551f9-f47c-40a4-8b56-8bce865d9520","name":"Christina M. 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Kennel dogs viewed images less than family dogs, but otherwise their gazing behaviour did not differ, indicating that the basic processing of social stimuli remains similar regardless of social experiences.","fi":"Previous studies have demonstrated similarities in gazing behaviour of dogs and humans, but comparisons under similar conditions are rare, and little is known about dogs' visual attention to social scenes. Here, we recorded the eye gaze of dogs while they viewed images containing two humans or dogs either interacting socially or facing away: the results were compared with equivalent data measured from humans. Furthermore, we compared the gazing behaviour of two dog and two human populations with different social experiences: family and kennel dogs; dog experts and non-experts. Dogs' gazing behaviour was similar to humans: both species gazed longer at the actors in social interaction than in non-social images. However, humans gazed longer at the actors in dog than human social interaction images, whereas dogs gazed longer at the actors in human than dog social interaction images. Both species also made more saccades between actors in images representing non-conspecifics, which could indicate that processing social interaction of non-conspecifics may be more demanding. Dog experts and non-experts viewed the images very similarly. Kennel dogs viewed images less than family dogs, but otherwise their gazing behaviour did not differ, indicating that the basic processing of social stimuli remains similar regardless of social experiences.","sv":"Previous studies have demonstrated similarities in gazing behaviour of dogs and humans, but comparisons under similar conditions are rare, and little is known about dogs' visual attention to social scenes. 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Kennel dogs viewed images less than family dogs, but otherwise their gazing behaviour did not differ, indicating that the basic processing of social stimuli remains similar regardless of social experiences."},"field_of_science":[{"id":"28378de2-1ffe-4f39-9572-9d969b2cf773","url":"http://www.yso.fi/onto/okm-tieteenala/ta3112","in_scheme":"http://www.yso.fi/onto/okm-tieteenala/conceptscheme","pref_label":{"en":"Neurosciences","fi":"Neurotieteet","sv":"Neurovetenskaper"}}],"infrastructure":[],"issued":"2015-08-31","keyword":[],"language":[],"metadata_owner":{"id":"829302c3-f5d4-4d20-9ec3-5148bcf385cc","organization":"aalto.fi","admin_organization":"aalto.fi"},"other_identifiers":[],"persistent_identifier":"doi:10.5061/dryad.9rn92","pid_generated_by_fairdata":false,"projects":[],"provenance":[],"relation":[],"remote_resources":[{"title":{"en":"Data in remote location","fi":"Aineisto ulkoisessa palvelussa","sv":"Material i en extern tjänst","und":"Data in remote 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