National Centre for Biological Sciences, Tata Institute of Fundamental Research, India; Stem Cell Program and Division of Hematology/Oncology, Children's Hospital Boston, Howard Hughes Medical Institute, Boston, MA 02115, United States.
National Centre for Biological Sciences, Tata Institute of Fundamental Research, India; Department of Molecular and Cellular Biology, Center for Brain Science, Harvard University, Cambridge, MA 02138, United States.
Semin Cell Dev Biol. 2017 Dec;72:56-66. doi: 10.1016/j.semcdb.2017.11.017. Epub 2017 Nov 16.
Myogenesis is a highly orchestrated, complex developmental process by which cell lineages that are mesodermal in origin generate differentiated multinucleate muscle cells as a final product. Considerable insight into the process of myogenesis has been obtained for the embryonic development of the larval muscles of Drosophila. More recently, the postembryonic development of the muscles of the adult fly has become a focus of experimental investigation of myogenesis since specific flight muscles of the fly manifest remarkable similarities to vertebrate muscles in their development and organization. In this review, we catalog some of the milestones in the study of myogenesis in the large adult-specific flight muscles of Drosophila. The identification of mesoderm-derived muscle stem cell lineages, the characterization of the symmetric and asymmetric divisions through which they produce adult-specific myoblasts, the multifaceted processes of myoblast fusion, and the unexpected discovery of quiescent satellite cells that can be activated by injury are discussed. Moreover, the finding that all of these processes incorporate a plethora of signaling interactions with other myogenic cells and with niche-like neighboring tissue is considered. Finally, we briefly point out possible future developments in the area of Drosophila myogenesis that may lead to of new avenues of genetic research into the roles of muscle stem cells in development, disease and aging.
成肌作用是一个高度协调、复杂的发育过程,由中胚层起源的细胞谱系产生分化的多核肌肉细胞作为最终产物。人们对果蝇幼虫肌肉的胚胎发育过程有了相当深入的了解。最近,成蝇肌肉的胚胎后发育成为成肌作用实验研究的焦点,因为果蝇的特定飞行肌肉在其发育和组织方面与脊椎动物肌肉表现出显著的相似性。在这篇综述中,我们列举了在果蝇大型特定飞行肌肉中研究成肌作用的一些里程碑。鉴定中胚层衍生的肌肉干细胞谱系,通过它们产生特定于成虫的成肌细胞的对称和不对称分裂的特征,成肌细胞融合的多方面过程,以及静止的卫星细胞的意外发现,这些细胞可以通过损伤而被激活,都进行了讨论。此外,还考虑了所有这些过程都包含了与其他成肌细胞和类似小生境的邻近组织的大量信号相互作用。最后,我们简要地指出了在果蝇成肌作用领域可能出现的未来发展,这可能会为肌肉干细胞在发育、疾病和衰老中的作用的遗传研究开辟新的途径。