England Samantha J, Campbell Paul C, Banerjee Santanu, Bates Richard L, Grieb Ginny, Fancher William F, Lewis Katharine E
Department of Biology, Syracuse University, 107 College Place, Syracuse, NY 13244, USA.
Biological Sciences Department, SUNY-Cortland, Cortland, NY 13045, USA.
bioRxiv. 2024 May 19:2024.02.14.580357. doi: 10.1101/2024.02.14.580357.
The spinal cord is a crucial part of the vertebrate CNS, controlling movements and receiving and processing sensory information from the trunk and limbs. However, there is much we do not know about how this essential organ develops. Here, we describe expression of 21 transcription factors and one transcriptional regulator in zebrafish spinal cord.
We analyzed the expression of , and in wild-type and zebrafish embryos. While all of these genes are broadly expressed in spinal cord, they have distinct expression patterns from one another. Some are predominantly expressed in progenitor domains, and others in subsets of post-mitotic cells. Given the conservation of spinal cord development, and the transcription factors and transcriptional regulators that orchestrate it, we expect that these genes will have similar spinal cord expression patterns in other vertebrates, including mammals and humans.
Our data identify 22 different transcriptional regulators that are strong candidates for playing different roles in spinal cord development. For several of these genes, this is the first published description of their spinal cord expression.
脊髓是脊椎动物中枢神经系统的关键部分,控制运动并接收和处理来自躯干及四肢的感觉信息。然而,关于这个重要器官如何发育,我们还有很多未知之处。在此,我们描述了21种转录因子和一种转录调节因子在斑马鱼脊髓中的表达情况。
我们分析了野生型和[具体突变型]斑马鱼胚胎中[相关基因名称]的表达。虽然所有这些基因在脊髓中广泛表达,但它们彼此具有不同的表达模式。一些主要在祖细胞区域表达,另一些在有丝分裂后细胞亚群中表达。鉴于脊髓发育的保守性以及协调其发育的转录因子和转录调节因子,我们预计这些基因在包括哺乳动物和人类在内的其他脊椎动物中会有类似的脊髓表达模式。
我们的数据确定了22种不同的转录调节因子,它们很可能在脊髓发育中发挥不同作用。对于其中几个基因,这是首次发表的关于它们在脊髓中表达的描述。