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Taylor, D. S.

Publications and source records attributed to Taylor, D. S..

2 recordsLinked to original sources

The geometry of prey capture in praying mantis forelegs

The form of an animals limbs has to balance multiple functions: locomotion, grasping, climbing, and jumping, among others. For cryptic animals, especially those that resemble elements of their habitat like sticks or grasses, the limbs may also be modified to enhance the camouflage. The performance of a limb in one category may require a tradeoff, reducing performance in another category. Praying mantises provide a diverse group of insects who all use their forelegs for one function, capturing prey, while some species use them as part of their camouflage. Here we use a large database of images of mantis species to capture the variation in morphology across the order, and to calculate the largest prey that their forelegs can hold. We find that the length and thickness of the femur and the length of the tibia comprise most of the variability across species. The majority of species have similar foreleg morphology, with two large groups extending into areas of the morphospace with thicker or thinner forelegs. A geometric relationship between dimensions of the foreleg and the optimal prey diameter maps directly onto the variability across species determined by principal components analysis; legs with thinner femurs and shorter tibia cant hold large prey, and the distribution of the species across the morphospace follows the gradient of optimum prey size. These results suggest that some species trade ability to grasp larger prey for benefits including crypsis, and the praying mantises are an ideal system for studying morphological and functional variation in limbs.

zoology↗

A new leaf sensing organ in a predatory insect group, the praying mantises (Mantodea)

Animals sensory systems enable them to navigate and interact with their environments. Adaptive specializations of these systems can generate novel structures or organs that support highly unique niche adaptations. We report the discovery of a novel sensory organ in a group of praying mantises (Insecta, Mantodea, Nanomantoidea), which have an unusual "leaf-planking" ecomorphic life strategy, laying against the undersides of broadleaf vegetation. Histology, scanning electron microscopy, and x-ray computed tomography all support the novelty of this distinct morphology while electrophysiology reveals that the sensory organ, herein designated the gustifolium organ, detects plant volatiles. The location of the gustifolium organon the ventral thoracic surface of these mantises appears to facilitate the chemical detection of the leaves on which it resides. The gustifolium is a novel plant volatile-detecting sensory structure in an obligate predatory insect, directly linked to a newly-identified, highly-adapted life strategy.

zoology↗