Comparative Biomedical Sciences, the Royal Veterinary College, London, NW1 0TU, UK.
Genetics and Molecular Medicine, King's College London, London, WC2R 2LS, UK.
Sci Rep. 2017 Feb 6;7:41926. doi: 10.1038/srep41926.
Animals have evolved limb proportions adapted to different environments, but it is not yet clear to what extent these proportions are directly influenced by the environment during prenatal development. The developing skeleton experiences mechanical loading resulting from embryo movement. We tested the hypothesis that environmentally-induced changes in prenatal movement influence embryonic limb growth to alter proportions. We show that incubation temperature influences motility and limb bone growth in West African Dwarf crocodiles, producing altered limb proportions which may, influence post-hatching performance. Pharmacological immobilisation of embryonic chickens revealed that altered motility, independent of temperature, may underpin this growth regulation. Use of the chick also allowed us to merge histological, immunochemical and cell proliferation labelling studies to evaluate changes in growth plate organisation, and unbiased array profiling to identify specific cellular and transcriptional targets of embryo movement. This disclosed that movement alters limb proportions and regulates chondrocyte proliferation in only specific growth plates. This selective targeting is related to intrinsic mTOR (mechanistic target of rapamycin) pathway activity in individual growth plates. Our findings provide new insights into how environmental factors can be integrated to influence cellular activity in growing bones and ultimately gross limb morphology, to generate phenotypic variation during prenatal development.
动物的肢体比例是为适应不同环境而进化的,但目前尚不清楚这些比例在胚胎发育过程中在多大程度上受到环境的直接影响。发育中的骨骼会受到胚胎运动产生的机械负荷的影响。我们验证了一个假设,即环境引起的产前运动变化会影响胚胎肢体生长,从而改变比例。我们发现,西非矮鳄的孵化温度会影响其活动能力和肢骨生长,从而产生改变的肢比例,这可能会影响孵化后的表现。胚胎鸡的药理学固定化表明,独立于温度的运动变化可能是这种生长调节的基础。使用小鸡还使我们能够合并组织学、免疫化学和细胞增殖标记研究,以评估生长板组织的变化,并进行无偏阵列分析,以鉴定胚胎运动的特定细胞和转录靶标。这表明运动改变了肢体比例,并调节了仅在特定生长板中的软骨细胞增殖。这种有针对性的作用与个体生长板中内在的 mTOR(雷帕霉素的作用靶点)途径活性有关。我们的发现提供了新的见解,即环境因素如何能够整合起来影响生长骨骼中的细胞活动,并最终影响肢体形态的整体形态,从而在产前发育过程中产生表型变异。