Stowers Institute for Medical Research, Kansas City, Missouri.
Division of Developmental Neurobiology, National Institute for Medical Research, London, UK.
Dev Dyn. 2020 Mar;249(3):354-368. doi: 10.1002/dvdy.101. Epub 2019 Aug 22.
The basic ground plan of vertebrate hindbrain is established through a process of segmentation, which generates eight transient lineage-restricted cellular compartments called rhombomeres (r). The segments adopt distinct individual identities in response to axial patterning signals. It is unclear whether signaling between rhombomeres plays a conserved role in regulating segmental patterning during hindbrain development.
Using tissue manipulations of rhombomeres in chicken embryos, we have uncovered roles for r2 and r4 in regulating the expression of EphA4 in r3 and r5. Perturbations of signaling pathways reveal that these regulatory inputs from r2 and r4 into EphA4 expression are mediated independent of inputs from Krox20 through cues involving fibroblast growth factor (FGF) signaling. These interactions are stage dependent and are set up in embryos with <10 somites.
We show that r2 and r4 function as temporally dynamic signaling centers in the early patterning of adjacent hindbrain segments and this activity is dependent upon the FGF pathway. These results reveal that inter-rhombomeric signaling is a conserved feature of the regulatory networks that control the specification of individual rhombomere identities in vertebrate hindbrain segmentation. However, the timing of when restricted domains of FGF signaling are coupled to formation of r4 may vary between the species.
脊椎动物后脑的基本基础蓝图是通过分割过程建立的,该过程产生了八个短暂的、限于谱系的细胞区室,称为菱脑节(r)。这些节段通过对轴模式信号的反应而获得独特的个体身份。目前尚不清楚菱脑节之间的信号是否在调节后脑发育过程中的节段模式形成中发挥保守作用。
通过对鸡胚菱脑节的组织操作,我们发现 r2 和 r4 在调节 EphA4 在 r3 和 r5 中的表达中起作用。信号通路的干扰表明,这些来自 r2 和 r4 的对 EphA4 表达的调节输入是通过涉及成纤维细胞生长因子(FGF)信号的线索独立于来自 Krox20 的输入来介导的。这些相互作用是阶段依赖性的,并且在具有<10 个体节的胚胎中建立。
我们表明 r2 和 r4 在相邻后脑节段的早期模式形成中充当暂时动态的信号中心,并且这种活性依赖于 FGF 途径。这些结果表明,菱脑节之间的信号是调节网络的保守特征,该网络控制脊椎动物后脑分割中单个菱脑节身份的指定。然而,当 FGF 信号的受限域与 r4 的形成耦合时的时间可能在物种之间有所不同。