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在昆虫表皮硬化机制的进化过程中选择功能性表现。

Selection for functional performance in the evolution of cuticle hardening mechanisms in insects.

机构信息

Research Unit of Biodiversity (UO, CSIC, PA), Oviedo University, Mieres, 33600, Spain.

出版信息

Evolution. 2021 May;75(5):1132-1142. doi: 10.1111/evo.14201. Epub 2021 Mar 7.

Abstract

Calcified tissues have repeatedly evolved in many animal lineages and show a tremendous diversity of forms and functions. The cuticle of many insects is enriched with elements other than Calcium, a strategy of hardening that is taxonomically widespread but apparently poorly variable among clades. Here, we investigate the evolutionary potential of the enrichment with metals in insect cuticle at different biological levels. We combined experimental evidence of Zinc content variation in the mandibles of a target species (Chorthippus cazurroi [Bolívar]) with phylogenetic comparative analyses among grasshopper species. We found that mandibular Zinc content was repeatable among related individuals and was associated with an indicator of fitness, so there was potential for adaptive variation. Among species, Zinc enrichment evolved as a consequence of environmental and dietary influences on the physical function of the jaw (cutting and chewing), suggesting a role of natural selection in environmental fit. However, there were also important within and transgenerational environmental sources of similarity among individuals. These environmental influences, along with the tight relationship with biomechanics, may limit the potential for diversification of this hardening mechanism. This work provides novel insights into the diversification of biological structures and the link between evolutionary capacity and intra- and interspecific variation.

摘要

在许多动物谱系中,钙化组织已经反复进化,并表现出形式和功能的巨大多样性。许多昆虫的外骨骼中富含除钙以外的元素,这种硬化策略在分类上广泛存在,但在不同进化枝中显然变化不大。在这里,我们研究了在不同的生物学水平上,昆虫外骨骼中金属富集的进化潜力。我们将目标物种(Chorthippus cazurroi [Bolívar])下颚中锌含量变化的实验证据与蚱蜢物种间的系统发育比较分析相结合。我们发现,下颚中的锌含量在相关个体之间是可重复的,并且与适应度的一个指标相关,因此存在适应变异的潜力。在物种间,锌的富集是环境和饮食对下颚(切割和咀嚼)物理功能的影响的结果,这表明自然选择在环境适应中发挥了作用。然而,个体之间也存在着重要的内部和代际环境相似性来源。这些环境影响,以及与生物力学的紧密关系,可能限制了这种硬化机制多样化的潜力。这项工作为生物结构的多样化以及进化能力与种内和种间变异之间的联系提供了新的见解。

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