Division of Evolutionary Biology, Faculty of Biology, Ludwig Maximilian University of Munich, Munich, Germany.
Department of Zoology, University of Cambridge, Cambridge, United Kingdom.
Evolution. 2024 Jul 1;78(7):1338-1346. doi: 10.1093/evolut/qpae073.
When populations experience different sensory conditions, natural selection may favor sensory system divergence, affecting peripheral structures and/or downstream neural pathways. We characterized the outer eye morphology of sympatric Heliconius butterflies from different forest types and their first-generation reciprocal hybrids to test for adaptive visual system divergence and hybrid disruption. In Panama, Heliconius cydno occurs in closed forests, whereas Heliconius melpomene resides at the forest edge. Among wild individuals, H. cydno has larger eyes than H. melpomene, and there are heritable, habitat-associated differences in the visual brain structures that exceed neutral divergence expectations. Notably, hybrids have intermediate neural phenotypes, suggesting disruption. To test for similar effects in the visual periphery, we reared both species and their hybrids in common garden conditions. We confirm that H. cydno has larger eyes and provide new evidence that this is driven by selection. Hybrid eye morphology is more H. melpomene-like despite body size being intermediate, contrasting with neural trait intermediacy. Overall, our results suggest that eye morphology differences between H. cydno and H. melpomene are adaptive and that hybrids may suffer fitness costs due to a mismatch between the peripheral visual structures and previously described neural traits that could affect visual performance.
当种群经历不同的感觉条件时,自然选择可能有利于感觉系统的分歧,影响外围结构和/或下游的神经通路。我们对来自不同森林类型的共生凤蝶和它们的第一代回交杂种的外眼形态进行了描述,以测试适应性视觉系统的分歧和杂种的破坏。在巴拿马,凤蝶 cydno 出现在封闭的森林中,而凤蝶 melpomene 则位于森林边缘。在野生个体中,H. cydno 的眼睛比 H. melpomene 大,并且视觉大脑结构存在可遗传的、与栖息地相关的差异,超过了中性分歧的预期。值得注意的是,杂种具有中间的神经表型,表明存在破坏。为了在视觉外围中测试类似的影响,我们在共同的园林条件下饲养了这两个物种及其杂种。我们证实 H. cydno 的眼睛更大,并提供了新的证据表明这是由选择驱动的。尽管体型居中,但杂种的眼睛形态更像 H. melpomene,与神经特征的中间性形成对比。总的来说,我们的结果表明,H. cydno 和 H. melpomene 之间的眼睛形态差异是适应性的,杂种可能由于外围视觉结构与先前描述的神经特征之间的不匹配而遭受适应性降低,这可能会影响视觉表现。