Kim Kwantae, Orvis Jameson, Stolfi Alberto
School of Biological Sciences, Georgia Institute of Technology, Atlanta, GA, United States.
Front Cell Dev Biol. 2022 Sep 12;10:999511. doi: 10.3389/fcell.2022.999511. eCollection 2022.
Pax3/7 factors play numerous roles in the development of the dorsal nervous system of vertebrates. From specifying neural crest at the neural plate borders, to regulating neural tube closure and patterning of the resulting neural tube. However, it is unclear which of these roles are conserved in non-vertebrate chordates. Here we investigate the expression and function of Pax3/7 in the model tunicate Pax3/7 is expressed in neural plate border cells during neurulation, and in central nervous system progenitors shortly after neural tube closure. We find that separate regulatory elements control the expression in these two distinct lineages. Using CRISPR/Cas9-mediated mutagenesis, we knocked out in F0 embryos specifically in these two separate territories. knockout in the neural plate borders resulted in neural tube closure defects, suggesting an ancient role for Pax3/7 in this chordate-specific process. Furthermore, knocking out in the neural impaired Motor Ganglion neuron specification, confirming a conserved role for this gene in patterning the neural tube as well. Taken together, these results suggests that key functions of Pax3/7 in neural tube development are evolutionarily ancient, dating back at least to the last common ancestor of vertebrates and tunicates.
Pax3/7因子在脊椎动物背侧神经系统的发育中发挥着多种作用。从在神经板边界确定神经嵴,到调节神经管闭合以及由此产生的神经管的模式形成。然而,目前尚不清楚这些作用中哪些在非脊椎动物脊索动物中是保守的。在这里,我们研究了Pax3/7在模式被囊动物中的表达和功能。Pax3/7在神经胚形成期间在神经板边界细胞中表达,并在神经管闭合后不久在中枢神经系统祖细胞中表达。我们发现不同的调控元件控制着这两个不同谱系中的表达。使用CRISPR/Cas9介导的诱变,我们在F0胚胎中专门在这两个独立区域敲除了Pax3/7。在神经板边界敲除Pax3/7导致神经管闭合缺陷,这表明Pax3/7在这个脊索动物特有的过程中具有古老的作用。此外,在神经中敲除Pax3/7会损害运动神经节神经元的特化,这也证实了该基因在神经管模式形成中具有保守作用。综上所述,这些结果表明Pax3/7在神经管发育中的关键功能在进化上是古老的,至少可以追溯到脊椎动物和被囊动物的最后一个共同祖先。