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Predator–prey interactions of terrestrial invertebrates are determined by predator body size and species identity

Ana Miller‐ter Kuile; Austen Apigo; An Bui; Bartholomew DiFiore; Elizabeth S. Forbes; Michelle Lee; Devyn Orr; Daniel L. Preston; Rachel Behm; Taylor Bogar; Jasmine Childress; Rodolfo Dirzo; Maggie Klope; Kevin D. Lafferty; John McLaughlin; Marisa Morse; Carina Motta; Kevin Park; Katherine Plummer; David Weber; Ronny Young; Hillary Young
Ecology · Vol. 103, Issue 5 · 2022

Abstract

Predator–prey interactions shape ecosystems and can help maintain biodiversity. However, for many of the earth's most biodiverse and abundant organisms, including terrestrial arthropods, these interactions are difficult or impossible to observe directly with traditional approaches. Based on previous theory, it is likely that predator–prey interactions for these organisms are shaped by a combination of predator traits, including body size and species‐specific hunting strategies. In this study, we combined diet DNA metabarcoding data of 173 individual invertebrate predators from nine species (a total of 305 individual predator–prey interactions) with an extensive community body size data set of a well‐described invertebrate community to explore how predator traits and identity shape interactions. We found that (1) mean size of prey families in the field usually scaled with predator size, with species‐specific variation to a general size‐scaling relationship (exceptions likely indicating scavenging or feeding on smaller life stages). We also found that (2) although predator hunting traits, including web and venom use, are thought to shape predator–prey interaction outcomes, predator identity more strongly influenced our indirect measure of the relative size of predators and prey (predator:prey size ratios) than either of these hunting traits. Our findings indicate that predator body size and species identity are important in shaping trophic interactions in invertebrate food webs and could help predict how anthropogenic biodiversity change will influence terrestrial invertebrates, the earth's most diverse animal taxonomic group.

Bibliographic Information

JournalEcology
PublisherWiley
Publication Date2022-05-01
Publication Year2022
Volume103
Issue5
Document TypeJournal Article
Print ISSN0012-9658
eISSN1939-9170
DOI10.1002/ecy.3634
SubjectEcology & Organismal Biology

Access Information

NARA Access Coverage1997-01-01~Current
Journal Homepagehttps://esajournals.onlinelibrary.wiley.com/loi/19399170
Publisher PageOpen Publisher Page
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