Department of Biology, Drexel University, Philadelphia, PA, USA.
, Upper Dublin, PA, USA.
J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2021 Jul;207(4):497-504. doi: 10.1007/s00359-021-01492-4. Epub 2021 Jun 6.
Alternative reproductive tactics (ARTs) occur when there is categorical variation in the reproductive strategies of a sex within a population. These different behavioral phenotypes can expose animals to distinct cognitive challenges, which may be addressed through neuroanatomical differentiation. The dramatic phenotypic plasticity underlying ARTs provides a powerful opportunity to study how intraspecific nervous system variation can support distinct cognitive abilities. We hypothesized that conspecific animals pursuing ARTs would exhibit dissimilar brain architecture. Dimorphic males of the bee species Centris pallida and Amegilla dawsoni use alternative mate location strategies that rely primarily on either olfaction (large-morph) or vision (small-morph) to find females. This variation in behavior led us to predict increased volumes of the brain regions supporting their primarily chemosensory or visual mate location strategies. Large-morph males relying mainly on olfaction had relatively larger antennal lobes and relatively smaller optic lobes than small-morph males relying primarily on visual cues. In both species, as relative volumes of the optic lobe increased, the relative volume of the antennal lobe decreased. In addition, A. dawsoni large males had relatively larger mushroom body lips, which process olfactory inputs. Our results suggest that the divergent behavioral strategies in ART systems can be associated with neuroanatomical differentiation.
当一个种群中同一性别存在明显的繁殖策略变化时,就会出现替代性繁殖策略(ARTs)。这些不同的行为表型可能会使动物面临不同的认知挑战,而这些挑战可能会通过神经解剖学的分化来解决。ARTs 所具有的显著表型可塑性为研究种内神经系统变化如何支持不同的认知能力提供了一个有力的机会。我们假设,从事 ART 的同种动物会表现出不同的大脑结构。蜜蜂物种 Centris pallida 和 Amegilla dawsoni 的两性异形雄蜂使用替代性的配偶定位策略,主要依赖嗅觉(大形态)或视觉(小形态)来寻找雌性。这种行为上的变化使我们预测,支持其主要化学感觉或视觉配偶定位策略的大脑区域的体积会增加。主要依赖嗅觉的大形态雄蜂的触角叶相对较大,而主要依赖视觉线索的小形态雄蜂的视神经叶相对较小。在这两个物种中,随着视神经叶的相对体积增加,触角叶的相对体积减小。此外,A. dawsoni 中的大雄性有相对较大的蘑菇体唇,用于处理嗅觉输入。我们的研究结果表明,ART 系统中不同的行为策略可能与神经解剖学的分化有关。