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Density-dependent network structuring within and across wild animal systems

  • Gregory F Albery
  • , Daniel J Becker
  • , Josh A Firth
  • , Delphine De Moor
  • , Sanjana Ravindran
  • , Matthew Silk
  • , Amy R Sweeny
  • , Eric Vander Wal
  • , Quinn Webber
  • , Bryony Allen
  • , Simon A Babayan
  • , Sahas Barve
  • , Mike Begon
  • , Richard J Birtles
  • , Theadora A Block
  • , Barbara A Block
  • , Janette E Bradley
  • , Sarah Budischak
  • , Christina Buesching
  • , Sarah J Burthe
  • Aaron B Carlisle, Jennifer E Caselle, Ciro Cattuto, Alexis S Chaine, Taylor K Chapple, Barbara J Cheney, Timothy Clutton-Brock, Melissa Collier, David J Curnick, Richard J Delahay, Damien R Farine, Andy Fenton, Francesco Ferretti, Laura Feyrer, Helen Fielding, Vivienne Foroughirad, Celine Frere, Michael G Gardner, Eli Geffen, Stephanie S Godfrey, Andrea L Graham, Phil S Hammond, Maik Henrich, Marco Heurich, Paul Hopwood, Amiyaal Ilany, Joseph A Jackson, Nicola Jackson, David M P Jacoby, Ann-Marie Jacoby, Miloš Ježek, Lucinda Kirkpatrick, Alisa Klamm, James A Klarevas-Irby, Sarah Knowles, Lee Koren, Ewa Krzyszczyk, Jillian M Kusch, Xavier Lambin, Jeffrey E Lane, Herwig Leirs, Stephan T Leu, Bruce E Lyon, David W Macdonald, Anastasia E Madsen, Janet Mann, Marta Manser, Joachim Mariën, Apia Massawe, Robbie A McDonald, Kevin Morelle, Johann Mourier, Chris Newman, Kenneth Nussear, Brendah Nyaguthii, Mina Ogino, Laura Ozella, Craig Packer, Yannis P Papastamatiou, Steve Paterson, Eric Payne, Amy B Pedersen, Josephine M Pemberton, Noa Pinter-Wollman, Serge Planes, Aura Raulo, Rolando Rodríguez-Muñoz, Lauren Rudd, Christopher Sabuni, Pratha Sah, Robert J Schallert, Ben C Sheldon, Daizaburo Shizuka, Andrew Sih, David L Sinn, Vincent Sluydts, Orr Spiegel, Sandra Telfer, Courtney A Thomason, David M Tickler, Tom Tregenza, Kimberley VanderWaal, Sam Walmsley, Eric L Walters, Klara M Wanelik, Hal Whitehead, Elodie Wielgus, Jared Wilson-Aggarwal, Caroline Wohlfeil, Shweta Bansal
  • Trinity College Dublin
  • The University of Oklahoma
  • University of Oxford
  • Max Planck Institute for Evolutionary Anthropology
  • University of Edinburgh
  • Memorial University of Newfoundland
  • University of Guelph, Ontario
  • Department of Molecular and Clinical Pharmacology, University of Liverpool
  • Institute of Health and Wellbeing, University of Glasgow, Glasgow, Scotland
  • Old Dominion University
  • University of Salford
  • University of California
  • Stanford University
  • University of Nottingham
  • Pitzer and Scripps Colleges
  • University of British Columbia
  • Centre for Ecology and Hydrology, Wallingford, UK
  • University of Delaware
  • ISI Foundation
  • Evolutionary Ecology Group
  • Marine Mammal Institute, Hatfield Marine Science Center, Oregon State University, Newport, Oregon
  • University of Aberdeen
  • Institute of Criminology, University of Cambridge, Cambridge
  • Georgetown University
  • ZSL Institute of Zoology, London.
  • National Wildlife Management Centre
  • Max Planck Institute for Animal Behavior
  • Virginia Tech, Blacksburg
  • Dalhousie University
  • University of Queensland
  • Flinders University, Adelaide
  • University of Tel Aviv, Istael
  • University of Otago
  • Ecology and Evolutionary Biology, Princeton University
  • University of St. Andrews
  • Department of Visitor Management and National Park Monitoring
  • College of Life and Environmental Sciences, University of Exeter, Penryn Campus, Penryn, 9 TR10 9EZ, UK.
  • Bar Ilan University
  • Lancaster University
  • Duke University Marine Laboratory
  • Czech University of Life Sciences Prague
  • Department of Nature Conservation and Research
  • University of Saskatchewan
  • Evolutionary Ecology Group-EVECO
  • University of Adelaide
  • University of Nebraska-Lincoln
  • University of Zurich
  • Sokoine University of Agriculture
  • Biodiversité Marine
  • University of Nevada
  • Department of Ornithology
  • University of Turin
  • University of Minnesota, USA
  • Florida International University
  • PSL Research University
  • California Polytechnic State University
  • University of Western Australia

Allbwn ymchwil: Cyfraniad at gyfnodolynErthygladolygiad gan gymheiriaid

2 Wedi eu Llwytho i Lawr (Pure)

Crynodeb

Theory predicts that high population density leads to more strongly connected spatial and social networks, but how local density drives individuals' positions within their networks is unclear. This gap reduces our ability to understand and predict density-dependent processes. Here we show that density drives greater network connectedness at the scale of individuals within wild animal populations. Across 36 datasets of spatial and social behaviour in >58,000 individual animals, spanning 30 species of fish, reptiles, birds, mammals and insects, 80% of systems exhibit strong positive relationships between local density and network centrality. However, >80% of relationships are nonlinear and 75% are shallower at higher values, indicating saturating trends that probably emerge as a result of demographic and behavioural processes that counteract density's effects. These are stronger and less saturating in spatial compared with social networks, as individuals become disproportionately spatially connected rather than socially connected at higher densities. Consequently, ecological processes that depend on spatial connections are probably more density dependent than those involving social interactions. These findings suggest fundamental scaling rules governing animal social dynamics, which could help to predict network structures in novel systems.

Iaith wreiddiolSaesneg
Tudalennau (o-i)2002-2013
Nifer y tudalennau12
CyfnodolynNature Ecology and Evolution
Cyfrol9
Rhif cyhoeddi11
Dynodwyr Gwrthrych Digidol (DOIs)
StatwsCyhoeddwyd - 4 Medi 2025

Ôl bys

Gweld gwybodaeth am bynciau ymchwil 'Density-dependent network structuring within and across wild animal systems'. Gyda’i gilydd, maen nhw’n ffurfio ôl bys unigryw.

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