Department of Life Science, National Taiwan University, Taipei, Taiwan, Republic of China.
Department of Bioscience and Biotechnology, National Taiwan Ocean University, Keelung, Taiwan, Republic of China.
Mech Dev. 2020 Mar;161:103598. doi: 10.1016/j.mod.2020.103598. Epub 2020 Feb 13.
Pharyngeal arches are derived from all three germ layers and molecular interactions among the tissue types are required for proper development of subsequent pharyngeal cartilages; however, the mechanisms underlying this process are not fully described. Here we report that in zebrafish, Pax1a and Pax1b have overlapping and essential functions in pharyngeal pouch morphogenesis and subsequent ceratobranchial cartilage development. Both pax1a and pax1b are co-expressed in pharyngeal pouches, and time-lapse imaging of a novel Tg(pax1b:eGFP) enhancer trap line further revealed the sequential segmental development of pharyngeal pouches. Zebrafish pax1a; pax1b double mutant embryos generated by CRISPR-Cas9 mutagenesis exhibit unsegmented pharyngeal pouches 2-5 with small outpocketings. Endodermal expression of fgf3, tbx1 and edn1 is also absent in pharyngeal pouches 2-5 at 36 h post fertilization (hpf). Loss of ceratobranchial cartilage 1-4 and reduced or absent expression of dlx2a and hand2 in the pharyngeal arches 3-6 are observed in CRISPR mutant and morphant embryos that are deficient in both zebrafish pax1a and pax1b at 96 or 36 hpf. These results suggest that zebrafish Pax1a and Pax1b both regulate pharyngeal pouch morphogenesis by modulating expression of fgf3 and tbx1. Furthermore, our data support a model wherein endodermal Pax1a and Pax1b act through Fgf3 and Tbx-Edn1 signaling to non-autonomously regulate the development of ceratobranchial cartilage via expression of dlx2a and hand2.
咽弓由三个胚层衍生而来,组织类型之间的分子相互作用是随后咽软骨正常发育所必需的;然而,这个过程的机制尚未完全描述。在这里,我们报告在斑马鱼中,Pax1a 和 Pax1b 在咽囊形态发生和随后的鳃弓软骨发育中具有重叠且必需的功能。pax1a 和 pax1b 均在咽囊中共同表达,并且对新型 Tg(pax1b:eGFP)增强子陷阱线的延时成像进一步揭示了咽囊的顺序节段发育。通过 CRISPR-Cas9 诱变产生的斑马鱼 pax1a;pax1b 双突变体胚胎表现出无节段性的咽囊 2-5 并带有小的膨出物。在受精后 36 小时(hpf),咽囊 2-5 中的内胚层表达 fgf3、tbx1 和 edn1 也不存在。在 CRISPR 突变体和形态发生胚胎中,观察到 1-4 号鳃弓软骨缺失以及 3-6 号咽弓中 dlx2a 和 hand2 的表达减少或缺失,这些胚胎在 96 或 36 hpf 时缺乏斑马鱼 pax1a 和 pax1b。这些结果表明,斑马鱼 Pax1a 和 Pax1b 均通过调节 fgf3 和 tbx1 的表达来调节咽囊形态发生。此外,我们的数据支持这样一种模型,即内胚层 Pax1a 和 Pax1b 通过 Fgf3 和 Tbx-Edn1 信号传导作用于非自主性地通过表达 dlx2a 和 hand2 来调节鳃弓软骨的发育。