Wang Lu-Yi, Rajabi Hamed, Ghoroubi Nima, Lin Chung-Ping, Gorb Stanislav N
Functional Morphology and Biomechanics, Institute of Zoology, Kiel University, Kiel, Germany.
Department of Life Science, National Taiwan Normal University, Taipei, Taiwan.
Front Physiol. 2018 Oct 9;9:1410. doi: 10.3389/fphys.2018.01410. eCollection 2018.
Robust body armor is one of many anti-predator strategies used among animal taxa. The exoskeleton of insects can serve as the secondary defense mechanism in combination with the primary defense such as warning color. Aposematic weevils advertise their unprofitability and use their robust exoskeleton for effective defense against lizard predators. While the mature weevils survive after the predatory attack, the soft teneral ones can easily be consumed. To reveal how the mature weevils achieve such effective protection, we investigated the ontogenetic changes in the microstructure and material properties of the exoskeleton of the adult weevils. We also tested the functional role of a weevil-specific structure, the fibrous ridge, in the robustness of the elytral cuticle of the mature weevils. The results showed that the mature weevils have thicker, stiffer and more sclerotized cuticle than the teneral ones. The fibrous ridges in the endocuticle considerably increase the overall stiffness of their cuticle. Together these biomechanical strategies enable weevils to achieve robust body armor that efficiently protects them from lizard predation.
坚固的体甲是许多动物类群所采用的反捕食策略之一。昆虫的外骨骼可作为二级防御机制,与诸如警戒色等一级防御机制协同作用。具警示色的象鼻虫宣示自身不可食用,并利用其坚固的外骨骼有效抵御蜥蜴捕食者。虽然成年象鼻虫在遭受捕食攻击后能够存活,但柔软的羽化初期个体却很容易被吃掉。为揭示成年象鼻虫如何实现如此有效的保护,我们研究了成年象鼻虫外骨骼微观结构和材料特性的个体发育变化。我们还测试了象鼻虫特有的结构——纤维脊,在成年象鼻虫鞘翅角质层坚固性方面的功能作用。结果表明,成年象鼻虫的角质层比羽化初期个体更厚、更硬且骨化程度更高。内角质层中的纤维脊显著增加了其角质层的整体硬度。这些生物力学策略共同使象鼻虫能够拥有坚固的体甲,从而有效地保护它们免受蜥蜴捕食。