Pyati Ujwal J, Cooper Mark S, Davidson Alan J, Nechiporuk Alexei, Kimelman David
University of Washington Department of Biochemistry, Seattle, 98195-7350, USA.
Development. 2006 Jun;133(11):2275-84. doi: 10.1242/dev.02388. Epub 2006 May 3.
Bone morphogenetic protein (Bmp) signaling has long been known to be important for the early development of the ventral mesoderm, including blood, vasculature and kidney cells. Although Bmp genes are continually expressed in the ventral cells throughout gastrulation and somitogenesis, previous studies in zebrafish have not addressed how the role of Bmp signaling changes over time to regulate ventral mesoderm development. Here, we describe the use of a transgenic inducible dominant-negative Bmp receptor line to examine the temporal roles of Bmp signaling in ventral mesoderm patterning. Surprisingly, we find that Bmp signaling from the mid-gastrula stage through early somitogenesis is important for excluding blood and vascular precursors from the extreme ventral mesoderm, and we show that this domain is normally required for development of the cloaca (the common gut and urogenital opening). Using a novel assay for cloacal function, we find that larvae with reduced mid-gastrula Bmp signaling cannot properly excrete waste. We show that the cloacal defects result from alterations in the morphogenesis of the cloaca and from changes in the expression of genes marking the excretory system. Finally, we show that HrT, a T-box transcription factor, is a Bmp-regulated gene that has an essential function in cloacal development. We conclude that sustained Bmp signaling plays an important role in specification of the zebrafish cloaca by maintaining the fate of extreme ventral cells during the course of gastrulation and early somitogenesis. Furthermore, our data suggest that alterations in Bmp signaling are one possible cause of anorectal malformations during human embryogenesis.
长期以来,人们一直认为骨形态发生蛋白(Bmp)信号对于腹侧中胚层的早期发育很重要,腹侧中胚层包括血细胞、脉管系统和肾细胞。尽管在原肠胚形成和体节形成过程中,Bmp基因在腹侧细胞中持续表达,但之前在斑马鱼中的研究尚未探讨Bmp信号的作用如何随时间变化以调节腹侧中胚层的发育。在这里,我们描述了使用转基因诱导型显性负性Bmp受体系来研究Bmp信号在腹侧中胚层模式形成中的时间作用。令人惊讶的是,我们发现从中胚层中期到体节形成早期的Bmp信号对于将血液和血管前体细胞排除在极端腹侧中胚层之外很重要,并且我们表明这个区域通常是泄殖腔(共同的肠道和泌尿生殖开口)发育所必需的。使用一种新的泄殖腔功能检测方法,我们发现中胚层中期Bmp信号减少的幼虫不能正常排泄废物。我们表明泄殖腔缺陷是由泄殖腔形态发生的改变以及标记排泄系统的基因表达变化引起的。最后,我们表明HrT,一种T盒转录因子,是一个受Bmp调节的基因,在泄殖腔发育中具有重要功能。我们得出结论,持续的Bmp信号通过在原肠胚形成和早期体节形成过程中维持极端腹侧细胞的命运,在斑马鱼泄殖腔的特化中起重要作用。此外,我们的数据表明Bmp信号的改变是人类胚胎发育过程中肛门直肠畸形的一个可能原因。