Publicación

Takeoff dynamics are stereotyped across jumping spiders

Erin E. Brandt · Alasdair Hastewell · Lin Yan · Kaci Rose Goldberg · Jacob S. Harrison · Lizbeth Badillo Aguilar · Damian O. Elias · M. Saad Bhamla · Jasmine A. Nirody

Resumen

Abstract Jumping is a challenging locomotive mode, requiring rapid force generation and precise co-ordination of multiple limbs. Many animals meet this challenge using elastic mechanisms that store and rapidly release energy. Jumping spiders (Salticidae), however, rely on a semi-hydraulic system that constrains how their legs can generate propulsion. Much about how these spiders reliably generate jumps within these mechanical constraints remains unknown. Here, we analyze 46 individuals collected from the Peruvian Amazon, spanning 14 genera and significant morphological diversity, and show that this physically constrained system is coupled to a remarkably stereotyped coordination strategy. Whole-body kinematics and novel graph-based analyses of inter-limb coordination reveal a stereotyped two-stage takeoff sequence: a “swing” driven by extension of the fourth legs, followed by a rapid “fling” by the third legs that generates propulsion for takeoff. We further demonstrate that this pattern is preserved beyond Amazonian species, persisting in salticids from North America and Australia. Our results suggest that physical and biomechanical constraints may canalize locomotor evolution toward shared dynamical solutions.

Autores y colaboradores

Authors

Erin E. Brandt
Alasdair Hastewell
Lin Yan
Kaci Rose Goldberg
Jacob S. Harrison
Lizbeth Badillo Aguilar
Damian O. Elias
M. Saad Bhamla
Jasmine A. Nirody