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<Emphasis Type="Italic">Lioptilodes friasi</Emphasis> (Lepidoptera: Pterophoridae) Niche Breadth in the Chilean Mediterranean Matorral Biome: Trophic and Altitudinal Dimensions
Authors:Héctor A Vargas  Sergio Rasmann  Pamela Ramirez-Verdugo  Cristian A Villagra
Institution:1.Depto de Recursos Ambientales, Facultad de Ciencias Agronómicas,Univ de Tarapacá,Arica,Chile;2.Institute of Biology,Univ of Neuchatel,Neuchatel,Switzerland;3.Herbario VALPL-Lab de Botánica,Univ de Playa Ancha,Valparaiso,Chile;4.Instituto de Entomología, Facultad de Ciencias Básicas,Univ Metropolitana de Ciencias de la Educación,Santiago,Chile
Abstract:Understanding the factors driving the diet breadth of phytophagous insects remains one of the main questions in ecological research. In this study we explored the diet breadth and plant-insect associations in the plume moth Lioptilodes friasi Vargas & Parra (Lepidoptera: Pterophoridae). This phytophagous insect was originally described in association with a single host species, Haplopappus foliosus (Asteraceae), a native shrub of the Chilean Mediterranean matorral. In order to address the breadth of host plant choice, we surveyed other Haplopappus species growing along the elevation gradient of central Chile from sea level to 2600 m. We were able to obtain L. friasi adults from five additional Haplopappus species: Haplopappus chrysantemifolius and Haplopappus decurrens from the coastal zone, Haplopappus multifolius and Haplopappus schumanii from the mid-elevation zone, and Haplopappus scrobiculatus at high elevation. Our results demonstrate that the genus-specialized endophagous herbivore L. friasi has a wider distribution and climatic tolerance than previously described. Its biogeographical range extends from the lowland coastal habitats up to the Andean subnival level. We propose that shared flower phenotypic traits such as morphology and chemical composition may have allowed the colonization of closely related Haplopappus species in central Chile, the expansion of which is limited by the harsh high elevation conditions.
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