Functional Genetics, The Roslin Institute R(D)SVS, CMVM, University of Edinburgh, Edinburgh EH25 9RG, UK.
Genetics and Genomics, The Roslin Institute R(D)SVS, CMVM, University of Edinburgh, Edinburgh EH25 9RG, UK.
Development. 2024 Jul 1;151(13). doi: 10.1242/dev.202340. Epub 2024 Jun 28.
The cellular and genetic networks that contribute to the development of the zeugopod (radius and ulna of the forearm, tibia and fibula of the leg) are not well understood, although these bones are susceptible to loss in congenital human syndromes and to the action of teratogens such as thalidomide. Using a new fate-mapping approach with the Chameleon transgenic chicken line, we show that there is a small contribution of SHH-expressing cells to the posterior ulna, posterior carpals and digit 3. We establish that although the majority of the ulna develops in response to paracrine SHH signalling in both the chicken and mouse, there are differences in the contribution of SHH-expressing cells between mouse and chicken as well as between the chicken ulna and fibula. This is evidence that, although zeugopod bones are clearly homologous according to the fossil record, the gene regulatory networks that contribute to their development and evolution are not fixed.
尽管这些骨骼容易在先天性人类综合征和沙利度胺等致畸剂的作用下丢失,但对于导致掌骨(前臂的桡骨和尺骨、腿的胫骨和腓骨)发育的细胞和遗传网络,我们还了解得并不清楚。通过使用具有变色龙转基因鸡系的新命运图谱方法,我们表明,在后尺骨、后腕骨和第 3 指中有少量表达 SHH 的细胞。我们确定,尽管大多数尺骨的发育是对鸡和鼠中旁分泌 SHH 信号的反应,但在鼠和鸡之间以及鸡的尺骨和腓骨之间,表达 SHH 的细胞的贡献存在差异。这表明,尽管掌骨骨骼根据化石记录显然是同源的,但导致其发育和进化的基因调控网络并不是固定的。