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  • 11
    Publication Date: 2017-02-11
    Description: Habitat-forming species provide refuges for a variety of associating species; these refuges may mediate interactions between species differently depending on the functional traits of the habitat-forming species. We investigated refuge provisioning by plants with different functional traits for dragonfly and damselfly (Odonata: Anisoptera and Zygoptera) nymphs emerging from water bodies to molt into their adult stage. During this period, nymphs experience high levels of predation by birds. On the shores of a small pond, plants with mechanical defenses (e.g., thorns and prickles) and high structural complexity had higher abundances of odonate exuviae than nearby plants which lacked mechanical defenses and exhibited low structural complexity. To disentangle the relative effects of these two potentially important functional traits on nymph emergence-site preference and survival, we conducted two fully crossed factorial field experiments using artificial plants. Nymphs showed a strong preference for artificial plants with high structural complexity and to a lesser extent, mechanical defenses. Both functional traits increased nymph survival but through different mechanisms. We suggest that future investigations attempt to experimentally separate the elements contributing to structural complexity to elucidate the mechanistic underpinnings of refuge provisioning. We investigated refuge provisioning by two plant traits, mechanical defenses, and structural complexity, for dragonfly and damselfly nymphs emerging from water bodies to molt into their adult stage. To disentangle the relative effects of these two potentially important functional traits on nymph emergence-site preference and survival, we conducted two fully crossed factorial manipulative field experiments using artificial plants. Results from these experiments were consistent with an observational study, where more exuviae—a proxy for a successful molting event—were found on plants with high structural complexity and mechanical defenses.
    Electronic ISSN: 2045-7758
    Topics: Biology
    Published by Wiley-Blackwell
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