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Bertone, M. A.

Publications and source records attributed to Bertone, M. A..

2 recordsLinked to original sources

Understanding spatiotemporal effects of food supplementation on host-parasite interactions using community-based science

O_LISupplemental feeding can increase the overall health of animals but also can have variable effects on how animals defend themselves against parasites. However, the spatiotemporal effects of food supplementation on host-parasite interactions remain poorly understood, likely because large-scale, coordinated efforts are difficult. C_LIO_LIHere, we introduce the Nest Parasite Community Science Project, which is a community-based science project that coordinates studies with bird nest box "stewards" from the public and scientific community. This project was established to understand broad ecological patterns between hosts and their parasites. C_LIO_LIThe goal of this study was to determine the effect of food supplementation on eastern bluebirds (Sialia sialis) and their nest parasite community across the geographic range of the bluebirds from 2018-2021. We received 646 nests from 68 stewards in 26 states in the eastern United States. Nest box stewards reported whether or not they fed their bluebirds mealworms or suet, then followed the nesting success of the birds (number of eggs laid and hatched, percent hatched, number and percent fledged). We then identified and quantified parasites in the nests. C_LIO_LIWe found that food supplementation increased fledgling numbers and proportional fledging success. The main nest parasite taxa were parasitic blow flies (Protocalliphora sialia), but a few nests contained fleas (Ceratophyllus idius, C. gallinae, Orchopeas leucopus) and mites (Dermanyssus spp. and Ornithonyssus spp.). Blow flies were primarily found at northern latitudes, where food supplementation affected blow fly abundance. However, the direction of this effect varied substantially in direction and magnitude across years. More stewards fed bluebirds at southern latitudes than at northern latitudes, which contradicted the findings of other community-based science projects. C_LIO_LIOverall, food supplementation of birds was associated with increased host fitness but did not appear to play a consistent role in defense against these parasites across all years. Our study demonstrates the importance of coordinated studies across years and locations to understand the effects of environmental heterogeneity, including human-based food supplementation, on host-parasite dynamics. Studies during a single year or considering only a single population might not provide the necessary data to develop management strategies for species. C_LI

ecology↗

A Novel Power-Amplified Jumping Behavior in Larval Beetles (Coleoptera: Laemophloeidae)

Larval insects use many methods for locomotion. Here we describe a previously unknown jumping behavior in a group of beetle larvae (Coleoptera: Laemophloeidae). We analyze and describe this behavior in Laemophloeus biguttatus and provide information on similar observations for another laemophloeid species, Placonotus testaceus. Laemophloeus biguttatus larvae prelude jumps by arching their body while gripping the substrate with their legs over a period of 0.22 {+/-} 0.17s. This is followed by a rapid ventral curling of the body after the larvae releases its grip that launches them into the air. Larvae reached takeoff velocities of 0.47 {+/-} 0.15 m s-1 and traveled 11.2 {+/-} 2.8 mm (1.98 {+/-} 0.8 body lengths) horizontally and 7.9 {+/-} 4.3 mm (1.5 {+/-} 0.9 body lengths) vertically during their jumps. Conservative estimates of power output revealed that not all jumps can be explained by direct muscle power alone, suggesting Laemophloeus biguttatus uses a latch-mediated spring actuation mechanism (LaMSA) in which interaction between the larvaes legs and the substrate serves as the latch. MicroCT scans and SEM imaging of larvae did not reveal any notable modifications that would aid in jumping. Although more in-depth experiments could not be performed to test hypotheses on the function of these jumps, we posit that this behavior is used for rapid locomotion which is energetically more efficient than crawling the same distance to disperse from their ephemeral habitat. We also summarize and discuss jumping behaviors among insect larvae for additional context of this behavior in laemophloeid beetles.

animal behavior and cognition↗