Mechanics of wood boring by beetle mandibles

Author:

Kundanati Lakshminath,Chahare Nimesh R.,Jaddivada Siddhartha,Karkisaval Abhijith G.,Pugno Nicola M.,Gundiah Namrata

Abstract

AbstractWood boring is a feature of several insect species and is a major cause of severe and irreparable damage to trees. Adult females typically deposit their eggs on the stem surface under bark scales. The emerging hatchlings live within hard wood during their larval phase, avoiding possible predation, whilst continually boring and tunneling through wood until pupation. A study of wood boring by insects offers unique insights into the bioengineering principles that drive evolutionary adaptations. We show that larval mandibles of the coffee wood stem borer beetle (Xylotrechus quadripes: Cerambycidae) have a highly sharp cusp edge to initiate fractures in Arabica wood and a suitable shape to generate small wood chips that are suitable for digestion. Cuticle hardness at the tip is significantly enhanced through zinc-enrichment. Finite element model of the mandible, based on the differential material properties at the tip, intermediate and base regions of the mandible, showed highest stresses in the tip region; these decreased to significantly lower values at the start of the hollow section. A hollow architecture significantly reduces bending stresses at mandibular base without compromising the structural integrity. A scaling model based on a fracture mechanics framework shows the importance of the mandible shape in generating optimal chip sizes. These findings contain general principles in tool design and put in focus interactions of insects and their woody hosts.

Publisher

Cold Spring Harbor Laboratory

Reference38 articles.

1. E2F1 Regulates Cellular Growth by mTORC1 Signaling

2. The biology and survival rate of the Coffee Stem Borer, Xylotrechus quadripes Chevlorat (Coleoptera, Cerambycidae) in northern Thailand;Japanese J. Entomol,1994

3. Evolution of insect morphology in relation to plants

4. Tooth hardness increases with zinc-content in mandibles of young adult leaf-cutter ants

5. S. A. Wainwright 1982 Mechanical design in organisms (Princeton University Press).

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