Predaceous and Parasitic Lepidoptera
Bibliographic References tagged with Predaceous and Parasitic Lepidoptera
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Espeland M, Chazot N, Condamine FL, Lemmon A, Lemmon EM, Pringle E, Heath A, Collins S, Tiren W, Mutiso M, et al. Rapid radiation of ant parasitic butterflies during the Miocene aridification of Africa. Ecology and Evolution. 2023;13(5):e10046. doi:https://doi.org/10.1002/ece3.10046
Espeland M, Chazot N, Condamine FL, Lemmon A, Lemmon EM, Pringle E, Heath A, Collins S, Tiren W, Mutiso M, et al. Rapid radiation of ant parasitic butterflies during the Miocene aridification of Africa. Ecology and Evolution. 2023;13(5):e10046. doi:https://doi.org/10.1002/ece3.10046
Pierce NE, Dankowicz E. The Natural History of Caterpillar-Ant Associations. In: Marquis RJ, Koptur S, editors. Caterpillars in the Middle. Cham: Springer International Publishing; 2022. pp. 319–391. doi:10.1007/978-3-030-86688-4_11
Pierce NE, Dankowicz E. The Natural History of Caterpillar-Ant Associations. In: Marquis RJ, Koptur S, editors. Caterpillars in the Middle. Cham: Springer International Publishing; 2022. pp. 319–391. doi:10.1007/978-3-030-86688-4_11
Pierce N, Dankowicz E. Behavioral, ecological and evolutionary mechanisms underlying caterpillar-ant symbioses. Current Opinion in Insect Science. 2022;52:100898. doi:10.1016/j.cois.2022.100898
Pierce N, Dankowicz E. Behavioral, ecological and evolutionary mechanisms underlying caterpillar-ant symbioses. Current Opinion in Insect Science. 2022;52:100898. doi:10.1016/j.cois.2022.100898
Braby MF, Espeland M, Müller CJ, Eastwood R, Lohman DJ, Kawahara AY, Maunsell SC, Pierce NE. Molecular phylogeny of the tribe Candalidini (Lepidoptera: Lycaenidae): systematics, diversification and evolutionary history. Systematic Entomology. 2020;45(3):703–722.
Braby MF, Espeland M, Müller CJ, Eastwood R, Lohman DJ, Kawahara AY, Maunsell SC, Pierce NE. Molecular phylogeny of the tribe Candalidini (Lepidoptera: Lycaenidae): systematics, diversification and evolutionary history. Systematic Entomology. 2020;45(3):703–722.
Whitaker MRL, Baker CCM, Salzman SM, Martins DJ, Pierce NE. Combining stable isotope analysis with DNA metabarcoding improves inferences of trophic ecology. PLOS ONE. 2019.
Whitaker MRL, Baker CCM, Salzman SM, Martins DJ, Pierce NE. Combining stable isotope analysis with DNA metabarcoding improves inferences of trophic ecology. PLOS ONE. 2019.
Pohl, Frederickson M, Elgar M, Pierce NE. Colony Diet Influences Ant Worker Foraging and Attendance of Myrmecophilous Lycaenid Caterpillars. Frontiers in Ecology and Evolution. 2016;4(114).
Pohl, Frederickson M, Elgar M, Pierce NE. Colony Diet Influences Ant Worker Foraging and Attendance of Myrmecophilous Lycaenid Caterpillars. Frontiers in Ecology and Evolution. 2016;4(114).
Whitaker M, Salzman, Sanders J, Kaltenpoth, Pierce NE. Microbial communities of lycaenid butterflies do not correlate with larval diet. Frontiers in Microbiology. 2016;7(1920).
Whitaker M, Salzman, Sanders J, Kaltenpoth, Pierce NE. Microbial communities of lycaenid butterflies do not correlate with larval diet. Frontiers in Microbiology. 2016;7(1920).
Dupont S, Zemeitat D, Lohman DJ, Pierce NE. The setae of parasitic Liphyra brassolis butterfly larvae form a flexible armour for resisting attack by their ant hosts (Lycaenidae: Lepidoptera). Biological Journal of the Linnean Society. 2016;117:607–619.
Dupont S, Zemeitat D, Lohman DJ, Pierce NE. The setae of parasitic Liphyra brassolis butterfly larvae form a flexible armour for resisting attack by their ant hosts (Lycaenidae: Lepidoptera). Biological Journal of the Linnean Society. 2016;117:607–619.
Pierce NE. The evolution and biogeography of associations between lycaenid butterflies and ants. In: Oxford Surveys in Evolutionary Biology . Vol. IV. Oxford University Press; 1987. pp. 89–116.
Pierce NE. The evolution and biogeography of associations between lycaenid butterflies and ants. In: Oxford Surveys in Evolutionary Biology . Vol. IV. Oxford University Press; 1987. pp. 89–116.
Mathew, Travassos M, Canfield, Murawski, Kitching R, Pierce NE. The singing reaper: diet, morphology and vibrational signaling in the Nearctic species Feniseca tarquinius. Tropical Lepidoptera Research. 2008;18:24–29.
Mathew, Travassos M, Canfield, Murawski, Kitching R, Pierce NE. The singing reaper: diet, morphology and vibrational signaling in the Nearctic species Feniseca tarquinius. Tropical Lepidoptera Research. 2008;18:24–29.