Department of Biology, Boston University, Boston, Massachusetts, USA.
J Comp Neurol. 2023 Jun;531(8):853-865. doi: 10.1002/cne.25469. Epub 2023 Mar 9.
Concerted developmental programming may constrain changes in component structures of the brain, thus limiting the ability of selection to form an adaptive mosaic of size-variable brain compartments independent of total brain size or body size. Measuring patterns of gene expression underpinning brain scaling in conjunction with anatomical brain atlases can aid in identifying influences of concerted and/or mosaic evolution. Species exhibiting exceptional size and behavioral polyphenisms provide excellent systems to test predictions of brain evolution models by quantifying brain gene expression. We examined patterns of brain gene expression in a remarkably polymorphic and behaviorally complex social insect, the leafcutter ant Atta cephalotes. The majority of significant differential gene expression observed among three morphologically, behaviorally, and neuroanatomically differentiated worker size groups was attributable to body size. However, we also found evidence of differential brain gene expression unexplained by worker morphological variation and transcriptomic analysis identified patterns not linearly correlated with worker size but sometimes mirroring neuropil scaling. Additionally, we identified enriched gene ontology terms associated with nucleic acid regulation, metabolism, neurotransmission, and sensory perception, further supporting a relationship between brain gene expression, brain mosaicism, and worker labor role. These findings demonstrate that differential brain gene expression among polymorphic workers underpins behavioral and neuroanatomical differentiation associated with complex agrarian division of labor in A. cephalotes.
协同发育编程可能会限制大脑成分结构的变化,从而限制选择形成独立于大脑总体积或身体大小的大小可变脑区适应性镶嵌体的能力。结合解剖大脑图谱测量支持大脑缩放的基因表达模式,可以帮助识别协同进化和/或镶嵌进化的影响。表现出异常大小和行为多态性的物种提供了极好的系统,可以通过量化大脑基因表达来测试大脑进化模型的预测。我们研究了一种非常多态和行为复杂的社会性昆虫,切叶蚁 Atta cephalotes 中的大脑基因表达模式。在三个形态、行为和神经解剖学上分化的工蚁大小群体中,大多数显著的差异基因表达是由于体型差异造成的。然而,我们也发现了一些证据表明,大脑基因表达存在与工人形态变化无关的差异,转录组分析确定的模式与工人大小没有线性相关,但有时与神经突缩放相呼应。此外,我们还确定了与核酸调节、代谢、神经传递和感觉感知相关的富集基因本体术语,这进一步支持了大脑基因表达、大脑镶嵌性和工人劳动角色之间的关系。这些发现表明,多态工蚁之间的大脑基因表达差异是与复杂的农业劳动分工相关的行为和神经解剖学分化的基础。