Barbero Francesca, Mannino Giuseppe, Casacci Luca Pietro
Department of Life Sciences and Systems Biology, University of Turin, Via Accademia Albertina 13, 10123 Turin, Italy.
Department of Life Sciences and Systems Biology, University of Turin, Via Gioacchino Quarello 15/A, 10135 Turin, Italy.
Insects. 2023 Apr 16;14(4):386. doi: 10.3390/insects14040386.
Eusociality represents the higher degree of interaction in insects. This complex social structure is maintained through a multimodal communication system that allows colony members to be flexible in their responses, fulfilling the overall society's needs. The colony plasticity is supposedly achieved by combining multiple biochemical pathways through the neuromodulation of molecules such as biogenic amines, but the mechanisms through which these regulatory compounds act are far from being fully disentangled. Here, we review the potential function of major bioamines (dopamine, tyramine, serotine, and octopamine) on the behavioral modulation of principal groups of eusocial Hymenoptera, with a special focus on ants. Because functional roles are species- and context-dependent, identifying a direct causal relationship between a biogenic amine variation and behavioral changes is extremely challenging. We also used a quantitative and qualitative synthesis approach to summarize research trends and interests in the literature related to biogenic amines of social insects. Shedding light on the aminergic regulation of behavioral responses will pave the way for an entirely new approach to understanding the evolution of sociality in insects.
真社会性代表了昆虫中更高程度的互动。这种复杂的社会结构通过多模态通讯系统得以维持,该系统使群体成员能够灵活应对,满足整个社会的需求。群体可塑性据推测是通过诸如生物胺等分子的神经调节来结合多种生化途径实现的,但这些调节化合物发挥作用的机制远未完全弄清楚。在这里,我们综述了主要生物胺(多巴胺、酪胺、血清素和章鱼胺)对真社会性膜翅目主要类群行为调节的潜在作用,特别关注蚂蚁。由于功能作用因物种和环境而异,确定生物胺变化与行为变化之间的直接因果关系极具挑战性。我们还采用了定量和定性综合方法来总结文献中与社会性昆虫生物胺相关的研究趋势和兴趣点。阐明行为反应的胺能调节将为理解昆虫社会性进化开辟全新的途径。