Department of Neuroscience, University of Arizona, Tucson, AZ, 85721, USA.
Neuroscience Interdisciplinary Graduate Program, University of Arizona, Tucson, AZ, 85721, USA.
J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2019 Feb;205(1):13-32. doi: 10.1007/s00359-019-01315-7. Epub 2019 Jan 17.
Sociality is classified as one of the major transitions in the evolution of complexity and much effort has been dedicated to understanding what traits predispose lineages to sociality. Conversely, studies addressing the role of sociality in brain evolution (e.g., the social brain hypothesis) have not focused on particular traits and instead relied largely on measurements of relative brain composition. Hymenoptera range from solitary to advanced social species, providing enticing comparisons for studying sociality and neural trait evolution. Here we argue that measuring the role of sociality in brain evolution will benefit from attending to recent advances in neuroethology and adopting existing phylogenetic comparative methods employed in analysis of non-neural traits. Such analyses should rely on traits we expect to vary at the taxonomic level used in comparative analyses and include phylogenetic structure. We outline the limits of brain size and volumetric interpretation and advocate closer attention to trait stability and plasticity at different levels of organization. We propose neural traits measured at the cellular, circuit, and molecular levels will serve as more robust variables for evolutionary analyses. We include examples of particular traits and specific clades that are well-suited to answer questions about the role of sociality in nervous system evolution.
社会性被归类为复杂性进化的主要转变之一,人们付出了很大的努力来理解哪些特征使谱系倾向于社会性。相反,研究大脑进化中的社会性作用(例如,社会大脑假说)并没有关注特定的特征,而是主要依赖于相对大脑成分的测量。膜翅目昆虫从独居到高级社会性物种不等,为研究社会性和神经特征进化提供了诱人的比较对象。在这里,我们认为,要了解社会性在大脑进化中的作用,就需要关注神经行为学的最新进展,并采用现有的用于分析非神经特征的系统发育比较方法。这样的分析应该依赖于我们期望在比较分析中使用的分类学水平上变化的特征,并包括系统发育结构。我们概述了脑容量和体积解释的局限性,并主张更密切关注不同组织水平的特征稳定性和可塑性。我们提出,在细胞、回路和分子水平上测量的神经特征将作为进化分析更可靠的变量。我们提供了特定特征和特定进化枝的例子,这些特征和进化枝非常适合回答关于社会性在神经系统进化中的作用的问题。