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作 者:Jacqueline CODRON Nico L AVENANT Corli WIGLEY-COETSEE Daryl CODRON
机构地区:[1]Mammalogy Department,National Museum,Bloemfontein,South Africa [2]Florisbad Quaternary Research Department,National Museum,Bloemfontein,South Africa [3]Centre for Environmental Management,University of the Free State,Bloemfontein,South Africa [4]Scientific Services,SANParks,Skukuza,South Africa [5]School of Natural Resource Management,Nelson Mandela University,George Campus,South Africa [6]Institute for Geosciences,Palaeontology/Sclerochronology Research Group,Johannes Gütenberg University,Mainz,Germany
出 处:《Integrative Zoology》2018年第2期166-179,共14页整合动物学(英文版)
基 金:This research was funded by the NRF-DST Centre of Excellence in Palaoesciences,at the University of the Witwatersrand,Johannesburg and the National Research Foundation’s African Origins Platform(grant no.98836).
摘 要:Predator-prey size relationships are among the most important patterns underlying the structure and function of ecological communities.Indeed,these relationships have already been shown to be important for understanding patterns of macroevolution and differential extinction in the terrestrial vertebrate fossil record.Stable isotope analysis(SIA)is a powerful remote approach to examining animal diets and paleodiets.The approach is based on the principle that isotope compositions of consumer tissues reflect those of their prey.In systems where resource isotope compositions are distributed along a body size gradient,SIA could be used to reconstruct predator-prey size relationships.We analyzed stable carbon isotope distributions amongst mammalian herbivores in extant and Plio-Pleistocene African savanna assemblages,and show that the range ofδ^(13)C values among mammalian prey species(herbivores and rodents)increases with body mass(BM),because C_(4) plant feeding(essentially grazing)is more common among larger taxa.Consequently,δ^(13)C values of mammalian carnivores in these systems are related to species’BM,reflecting a higher average C_(4) prey component in the diets of larger-bodied carnivores.This pattern likely emerges because only the largest carnivores in these systems have regular access to the C_(4) prey base,whereas smaller carnivores do not.Theδ^(13)C-BM relationship observed in mammalian carnivores is a potentially powerful approach for reconstructing and parameterizing predator-prey size relationships in contemporary and fossil savanna assemblages,and for interpreting how various behavioral,ecological and environmental factors influence prey size selection.
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