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Morphospace exploration reveals divergent fitness optima between plants and pollinators

机译:形态空间探索揭示了植物与授粉媒介之间的适应度最优值

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摘要

The obligate mutualism and exquisite specificity of many plant-pollinator interactions lead to the expectation that flower phenotypes (e.g., corolla tube length) and corresponding pollinator traits (e.g., hawkmoth proboscis length) are congruent as a result of coevolution by natural selection. However, the effect of variation in flower morphology on the fitness of plants and their pollinators has not been quantified systematically. In this study, we employed the theoretical morphospace paradigm using a combination of 3D printing, electronic sensing, and machine vision technologies to determine the influence of two flower morphological features (corolla curvature and nectary diameter) on the fitness of both parties: the artificial flower and its hawkmoth pollinator. Contrary to the expectation that the same flower morphology maximizes the fitness of both plant and pollinator, we found that the two parties have divergent optima for corolla curvature, with non-overlapping fitness peaks in flower morphospace. The divergent fitness optima between plants and pollinators could lead to evolutionary diversification in both groups.
机译:许多植物-授粉媒介相互作用的专一共生和精妙的特异性导致人们期望,由于自然选择的共同进化,花的表型(例如,花冠筒长度)和相应的授粉媒介性状(例如,鹰蛾长鼻长度)是一致的。但是,花形态的变化对植物及其授粉媒介适应性的影响尚未得到系统的量化。在这项研究中,我们采用了3D打印,电子传感和机器视觉技术相结合的理论形态空间范式,以确定两种花的形态特征(花冠曲率和蜜腺直径)对双方适应性的影响:人造花和它的鹰蛾传粉者。与相同的花形形态使植物和传粉媒介的适合度最大化的预期相反,我们发现双方对于花冠曲率具有不同的最优值,并且在花形空间中具有不重叠的适合度峰。植物和授粉媒介之间的适应度最优差异可能导致这两个群体的进化多样化。

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