Institute of Toxicology and Genetics, Karlsruhe Institute of Technology (KIT), 76021 Karlsruhe, Germany.
State Key Laboratory of Environmental Criteria and Risk Assessment, Chinese Research Academy of Environmental Sciences, 100012 Beijing, China.
Development. 2019 Feb 20;146(4):dev172510. doi: 10.1242/dev.172510.
Specification of neurons in the spinal cord relies on extrinsic and intrinsic signals, which in turn are interpreted by expression of transcription factors. V2 interneurons develop from the ventral aspects of the spinal cord. We report here a novel neuronal V2 subtype, named V2s, in zebrafish embryos. Formation of these neurons depends on the transcription factors and They develop from common - and -dependent precursors co-expressing markers of V2b and V2s interneurons. Chemical blockage of Notch signalling causes a decrease in V2s and an increase in V2b cells. Our results are consistent with the existence of at least two types of precursor arranged in a hierarchical manner in the V2 domain. V2s neurons grow long ipsilateral descending axonal projections with a short branch at the ventral midline. They acquire a glycinergic neurotransmitter type during the second day of development. Unilateral ablation of V2s interneurons causes a delay in touch-provoked escape behaviour, suggesting that V2s interneurons are involved in fast motor responses.
脊髓神经元的特化依赖于外在和内在信号,这些信号反过来又通过转录因子的表达来解读。V2 中间神经元起源于脊髓的腹侧部位。我们在这里报告了一种新型的神经元 V2 亚型,称为 V2s,存在于斑马鱼胚胎中。这些神经元的形成依赖于转录因子 和 。它们由共同的和依赖的前体细胞发育而来,这些前体细胞共同表达 V2b 和 V2s 中间神经元的标志物。Notch 信号化学阻断会导致 V2s 减少和 V2b 细胞增加。我们的结果与至少两种类型的前体细胞以层级方式排列在 V2 区域的存在一致。V2s 神经元生长出长的同侧下行轴突投射,在腹中线有一个短的分支。它们在发育的第二天获得甘氨酸能神经递质类型。单侧 V2s 中间神经元消融会导致触发性逃避行为延迟,表明 V2s 中间神经元参与快速运动反应。