Okayama University, Research Core for Interdisciplinary Sciences (RCIS), 3-1-1, Tsushimanaka, Kitaku, Okayama, 700-8530, Japan.
Okayama University, Research Core for Interdisciplinary Sciences (RCIS), 3-1-1, Tsushimanaka, Kitaku, Okayama, 700-8530, Japan.
Dev Biol. 2019 Aug 15;452(2):104-113. doi: 10.1016/j.ydbio.2019.04.011. Epub 2019 Apr 26.
Gill regeneration has not been well studied compared to regeneration of other appendages, such as limb and tail regeneration. Here, we focused on axolotl gill regeneration and found that Fgf- and Bmp-signaling are involved in their gill regeneration mechanism. Axolotls have three pairs of gill rami, and each gill ramus has multiple gill filaments. The gills consist of mesenchyme rich in extracellular matrix and epidermis. The gill nerves are supplied from the trigeminal ganglia located in the head. Denervation resulted in no gill regeneration responses. Nerves and gills express Bmp and Fgf genes, and treating animals with Fgf- and Bmp-signaling inhibitors results in phenotypes similar to those seen in denervated gills. Inducing an accessory appendage is a standard assay in amphibian regeneration research. In our study, an accessory gill could be induced by lateral wounding, suggesting that thin axon fibers and mesenchymal Fgfs and Bmps contributed to the induction of the accessory structure. Such accessory gill induction was inhibited by the denervation. Exogenous Fgf2+Fgf8+Bmp7, which have been determined to function as a regeneration inducer in urodele amphibians, could compensate for the effects denervation has on accessory blastema formation. Our findings suggest that regeneration of appendages in axolotls is regulated by common Fgf- and Bmp-signaling cascades.
与肢体和尾巴等其他附肢的再生相比,蝾螈的鳃再生研究还不够充分。在这里,我们专注于蝾螈的鳃再生,并发现 Fgf 和 Bmp 信号在其鳃再生机制中起作用。蝾螈有三对鳃支,每对鳃支有多个鳃丝。鳃由富含细胞外基质的间充质和表皮组成。鳃神经由位于头部的三叉神经节供应。去神经支配导致没有鳃再生反应。神经和鳃表达 Bmp 和 Fgf 基因,用 Fgf 和 Bmp 信号抑制剂处理动物会导致与去神经支配的鳃相似的表型。诱导副附肢是两栖动物再生研究中的标准检测方法。在我们的研究中,通过侧向创伤可以诱导副鳃,这表明细轴突纤维和间充质 Fgfs 和 Bmps 有助于诱导副结构。这种副鳃的诱导被去神经支配所抑制。外源性 Fgf2+Fgf8+Bmp7 已被确定在有尾两栖动物中作为再生诱导剂发挥作用,可补偿去神经支配对副芽形成的影响。我们的研究结果表明,蝾螈的附肢再生受常见的 Fgf 和 Bmp 信号级联调节。