Pengra Ian G G, Marchaterre Margaret A, Bass Andrew H
Brain Behav Evol. 2018;91(2):82-96. doi: 10.1159/000487793. Epub 2018 Apr 19.
Motivated by studies of speech deficits in humans, several studies over the past two decades have investigated the potential role of a forkhead domain transcription factor, FoxP2, in the central control of acoustic signaling/vocalization among vertebrates. Comparative neuroanatomical studies that mainly include mammalian and avian species have mapped the distribution of FoxP2 expression in multiple brain regions that imply a greater functional significance beyond vocalization that might be shared broadly across vertebrate lineages. To date, reports for teleost fish have been limited in number and scope to nonvocal species. Here, we map the neuroanatomical distribution of FoxP2 mRNA expression in a highly vocal teleost, the plainfin midshipman (Porichthys notatus). We report an extensive overlap between FoxP2 expression and vocal, auditory, and steroid-signaling systems with robust expression at multiple sites in the telencephalon, the preoptic area, the diencephalon, and the midbrain. Label was far more restricted in the hindbrain though robust in one region of the reticular formation. A comparison with other teleosts and tetrapods suggests an evolutionarily conserved FoxP2 phenotype important to vocal-acoustic and, more broadly, sensorimotor function among vertebrates.
受人类言语缺陷研究的启发,在过去二十年里,有几项研究调查了一种叉头框结构域转录因子FoxP2在脊椎动物声学信号/发声的中枢控制中的潜在作用。主要包括哺乳动物和鸟类物种的比较神经解剖学研究已经绘制出FoxP2在多个脑区的表达分布,这意味着其在发声之外可能具有更广泛的功能意义,这种功能意义可能在脊椎动物谱系中广泛共享。迄今为止,关于硬骨鱼的报道在数量和范围上仅限于非发声物种。在这里,我们绘制了高度发声的硬骨鱼——光腹角鲨(Porichthys notatus)中FoxP2 mRNA表达的神经解剖学分布。我们报告了FoxP2表达与发声、听觉和类固醇信号系统之间存在广泛重叠,在端脑、视前区、间脑和中脑的多个部位有强烈表达。虽然在延髓中的标记更为局限,但在网状结构的一个区域中表达强烈。与其他硬骨鱼和四足动物的比较表明,FoxP2表型在进化上是保守的,对脊椎动物的发声-声学以及更广泛的感觉运动功能很重要。