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Two different jumping mechanisms of water striders are determined by body size

Title
Two different jumping mechanisms of water striders are determined by body size
Author(s)
Kim, WoojooAmauger, JulietteHa, JungmoonPham, Thai HongTran, Anh DucLee, Jae HongPark, JinseokJablonski, Piotr G.Kim, Ho-YoungLee, Sang-im
Issued Date
2023-07
Citation
Proceedings of the National Academy of Sciences of the United States of America, v.120, no.30
Type
Article
Author Keywords
locomotionwater striderallometryjumpingbiomechanics
Keywords
SURFACEWALKINGCONSTRAINTSLOCOMOTIONALLOMETRYHYDRODYNAMICSKINEMATICSDEPENDENCEMORPHOLOGYSELECTION
ISSN
0027-8424
Abstract
Current theory for surface tension-dominant jumps on water, created for small- and medium-sized water strider species and used in bioinspired engineering, predicts that jumping individuals are able to match their downward leg movement speed to their size and morphology such that they maximize the takeoff speed and minimize the takeoff delay without breaking the water surface. Here, we use empirical observations and theoretical modeling to show that large species (heavier than ~80 mg) could theoretically perform the surface-dominated jumps according to the existing model, but they do not conform to its predictions, and switch to using surface-breaking jumps in order to achieve jumping performance sufficient for evading attacks from underwater predators. This illustrates how natural selection for avoiding predators may break the theoretical scaling relationship between prey size and its jumping performance within one physical mechanism, leading to an evolutionary shift to another mechanism that provides protection from attacking predators. Hence, the results are consistent with a general idea: Natural selection for the maintenance of adaptive function of a specific behavior performed within environmental physical constraints leads to size-specific shift to behaviors that use a new physical mechanism that secure the adaptive function.
URI
http://hdl.handle.net/20.500.11750/46338
DOI
10.1073/pnas.2219972120
Publisher
National Academy of Sciences
Related Researcher
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Appears in Collections:
Department of New Biology Lab of Integrative Animal Ecology 1. Journal Articles

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