Division of Biological Science, Graduate School of Science, Nagoya University, Nagoya, 464-8602, Japan.
Evolutionary Morphology Laboratory, Kobe, 650-0047, Japan.
Nat Ecol Evol. 2017 Sep;1(9):1392-1399. doi: 10.1038/s41559-017-0247-y. Epub 2017 Jul 31.
Elucidating how body parts from different primordia are integrated during development is essential for understanding the nature of morphological evolution. In tetrapod evolution, while the position of the hindlimb has diversified along with the vertebral formula, the mechanism responsible for this coordination has not been well understood. However, this synchronization suggests the presence of an evolutionarily conserved developmental mechanism that coordinates the positioning of the hindlimb skeleton derived from the lateral plate mesoderm with that of the sacral vertebrae derived from the somites. Here we show that GDF11 secreted from the posterior axial mesoderm is a key factor in the integration of sacral vertebrae and hindlimb positioning by inducing Hox gene expression in two different primordia. Manipulating the onset of GDF11 activity altered the position of the hindlimb in chicken embryos, indicating that the onset of Gdf11 expression is responsible for the coordinated positioning of the sacral vertebrae and hindlimbs. Through comparative analysis with other vertebrate embryos, we also show that each tetrapod species has a unique onset timing of Gdf11 expression, which is tightly correlated with the anteroposterior levels of the hindlimb bud. We conclude that the evolutionary diversity of hindlimb positioning resulted from heterochronic shifts in Gdf11 expression, which led to coordinated shifts in the sacral-hindlimb unit along the anteroposterior axis.
阐明不同原基的体节如何在发育过程中整合对于理解形态进化的本质至关重要。在四足动物进化中,虽然后肢的位置随着椎骨公式的变化而多样化,但负责这种协调的机制尚未得到很好的理解。然而,这种同步性表明存在一个进化上保守的发育机制,它协调了来自侧板中胚层的后肢骨骼与来自体节的荐椎的定位。在这里,我们表明 GDF11 从后轴中胚层分泌,通过在两个不同的原基中诱导 Hox 基因表达,是整合荐椎和后肢定位的关键因素。操纵 GDF11 活性的起始改变了鸡胚后肢的位置,表明 Gdf11 表达的起始负责协调荐椎和后肢的定位。通过与其他脊椎动物胚胎的比较分析,我们还表明,每个四足动物物种都有独特的 Gdf11 表达起始时间,这与后肢芽的前后水平紧密相关。我们的结论是,后肢定位的进化多样性是由于 Gdf11 表达的异时性变化导致的,这导致了荐-后肢单元沿着前后轴的协调变化。