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

机译:青年成年切叶蚁的下颌骨中牙齿硬度随锌含量的增加而增加

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A wide variety of arthropods and members of other phyla have elevated concentrations of Zn, Mn, other heavy metals and halogens in their jaws, leg claws, and other "tools" for interacting with the environment. While measured Zn concentrations reach 25% of dry mass in scorpion stings, concentrations are often lower than this and the enriched structures are not heavily biomineralized like vertebrate teeth and the radula of mollusks. For this reason, the degree to which the inorganic components of these structures modify their mechanical properties is in question. Here we address this problem by measuring hardness during the development of Zn accumulations in ant mandibles. We found that Zn is incorporated into the mandibular teeth of leaf-cutter ants during early adult life, reaching concentrations of about 16% of dry mass. We show that the hardness of the mandibular teeth increases nearly three-fold as the adults age and that hardness correlates with Zn content (r=0.91). We suggest that young adults rarely cut leaves partly because their mandibles are not yet rich in Zn. Zinc enrichment (along with enrichment by other heavy metals and halogens) may play an unrecognized role in the behavioral ecology and evolution of a wide variety of invertebrates.
机译:各种各样的节肢动物和其他门的成员的颚,腿爪和其他与环境相互作用的“锌”,“锰”,其他重金属和卤素的浓度都升高。当测得的锌浓度达到蝎st的干重的25%时,其浓度通常低于此值,而且富集的结构没有像脊椎动物的牙齿和软体动物的rad一样被大量矿化。由于这个原因,这些结构的无机组分改变其机械性能的程度是有问题的。在这里,我们通过测量蚂蚁下颌骨中锌积累的发展过程中的硬度来解决这个问题。我们发现,在成年早期,锌被掺入切叶蚁的下颌牙齿中,达到干物质重量的16%左右。我们显示,随着成年人的年龄,下颌牙齿的硬度增加了近三倍,并且硬度与锌含量相关(r = 0.91)。我们建议年轻人很少切叶,部分原因是他们的下颌骨还不富含锌。锌的富集(以及其他重金属和卤素的富集)可能在行为生态学和各种无脊椎动物的进化中起着未被认识的作用。

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