Guillaume Richard, Bressan Michel, Herzlinger Doris
Weill Medical College of Cornell University, Department of Physiology and Biophysics, 1300 York Ave, New York, NY 10065, USA.
Dev Biol. 2009 May 15;329(2):169-75. doi: 10.1016/j.ydbio.2009.02.034. Epub 2009 Mar 6.
The development of most, if not all, tubular organs is dependent on signaling between epithelial and stromal progenitor populations. Most often, these lineages derive from different germ layers that are specified during gastrulation, well in advance of organ condensation. Thus, one of the first stages of organogenesis is the integration of distinct progenitor populations into a single embryonic rudiment. In contrast, the stromal and epithelial lineages controlling renal development are both believed to derive from the intermediate mesoderm and to be specified as the kidney develops. In this study we directly analyzed the lineage of renal epithelia and stroma in the developing chick embryo using two independent fate mapping techniques. Results of these experiments confirm the hypothesis that nephron epithelia derive from the intermediate mesoderm. Most importantly, we discovered that large populations of renal stroma originate in the paraxial mesoderm. Collectively, these studies suggest that the signals that subdivide mesoderm into intermediate and paraxial domains may play a role in specifying nephron epithelia and a renal stromal lineage. In addition, these fate mapping data indicate that renal development, like the development of all other tubular organs, is dependent on the integration of progenitors from different embryonic tissues into a single rudiment.
大多数(即便不是所有)管状器官的发育都依赖于上皮祖细胞群和基质祖细胞群之间的信号传导。通常,这些谱系源自原肠胚形成过程中指定的不同胚层,远在器官凝聚之前。因此,器官发生的最初阶段之一是将不同的祖细胞群整合到单个胚胎原基中。相比之下,人们认为控制肾脏发育的基质和上皮谱系均源自中间中胚层,并在肾脏发育过程中被指定。在本研究中,我们使用两种独立的命运图谱技术直接分析了发育中的鸡胚肾上皮和基质的谱系。这些实验结果证实了肾单位上皮源自中间中胚层的假说。最重要的是,我们发现大量的肾基质起源于轴旁中胚层。总体而言,这些研究表明,将中胚层细分为中间和轴旁区域的信号可能在指定肾单位上皮和肾基质谱系中发挥作用。此外,这些命运图谱数据表明,肾脏发育与所有其他管状器官的发育一样,依赖于将来自不同胚胎组织的祖细胞整合到单个原基中。