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蚂蚁螫针形状的进化及其功能意义

Evolution and functional implications of stinger shape in ants.

作者信息

Casadei-Ferreira Alexandre, Procópio Camacho Gabriela, van de Kamp Thomas, Lattke John E, Machado Feitosa Rodrigo, Economo Evan P

机构信息

Biodiversity and Biocomplexity Unit, Okinawa Institute of Science and Technology Graduate University, Onna, Okinawa, Japan.

Museu de Zoologia da Universidade de São Paulo, São Paulo, São Paulo, Brazil.

出版信息

Evolution. 2024 Dec 22;79(1):80-99. doi: 10.1093/evolut/qpae142.

Abstract

Trait diversification is often driven by underlying performance tradeoffs in the context of different selective pressures. Evolutionary changes in task specialization may influence how species respond to tradeoffs and alter diversification. We conducted this study to investigate the functional morphology, evolutionary history, and tempo and mode of evolution of the Hymenoptera stinger using Ectatomminae ants as a model clade. We hypothesized that a performance tradeoff surface underlies the diversity of stinger morphology and that shifts between predatory and omnivorous diets mediate the diversification dynamics of the trait. Shape variation was characterized by X-ray microtomography, and the correlation between shape and average values of von Mises stress, as a measure of yield failure criteria under loading conditions typical of puncture scenarios, was determined using finite element analysis. We observed that stinger elongation underlies most of the shape variation but found no evidence of biomechanical tradeoffs in the performance characteristics measured. In addition, omnivores have increased phenotypic shifts and accelerated evolution in performance metrics, suggesting the evolution of dietary flexibility releases selection pressure on a specific function, resulting in a greater phenotypic evolutionary rate. These results increase our understanding of the biomechanical basis of stinger shape, indicate that shape diversity is not the outcome of simple biomechanical optimization, and reveal connections between diet and trait diversification.

摘要

在不同的选择压力背景下,性状多样化通常由潜在的性能权衡驱动。任务专业化的进化变化可能会影响物种对权衡的反应方式并改变多样化。我们进行这项研究,以蚁亚科蚂蚁作为一个模型分支,来研究膜翅目螫针的功能形态、进化历史以及进化的节奏和模式。我们假设一个性能权衡表面是螫针形态多样性的基础,并且捕食性和杂食性饮食之间的转变介导了该性状的多样化动态。通过X射线显微断层扫描对形状变化进行表征,并使用有限元分析确定形状与冯·米塞斯应力平均值之间的相关性,以此作为穿刺场景典型加载条件下屈服失效准则的一种度量。我们观察到螫针伸长是大多数形状变化的基础,但在所测量的性能特征中未发现生物力学权衡的证据。此外,杂食性蚂蚁在性能指标上有更多的表型变化和加速进化,这表明饮食灵活性进化减轻了对特定功能的选择压力,从而导致更高的表型进化速率。这些结果增进了我们对螫针形状生物力学基础的理解,表明形状多样性不是简单生物力学优化的结果,并揭示了饮食与性状多样化之间的联系。

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