Gaunt S J
AFRC Institute of Animal Physiology and Genetics Research, Department of Molecular Embryology, Babraham, Cambridge, UK.
Development. 1987 Sep;101(1):51-60.
We showed earlier (Gaunt, Miller, Powell & Duboule, 1986) that the mouse homoeobox gene Hox-1.5 is expressed in posterior ectoderm and mesoderm of 7 1/2- and 7 3/4-day embryos, and in the 9 1/2-day nervous system posterior to a discrete boundary within the hindbrain. In further in situ hybridization experiments, it is now shown that restriction of Hox-1.5 expression to the posterior regions of the embryo can be detected at stages of development between 7 1/2 and 9 1/2 days. During this period, the intensity of transcription in presomitic and somitic mesoderm declines relative to that in the overlying neural ectoderm, and the transcription boundary within the presumptive hindbrain region sharpens. Hox-1.5 expression posterior to the hindbrain boundary is detected in the 10 1/2- and 12 1/2-day embryo, but this is no longer found in newborn mice. Embryos of ages 3 1/2, 6 1/2 and 7 1/4 days showed no evidence of Hox-1.5 transcripts. It is concluded that embryos undergoing gastrulation (at 7 1/2 days) are the earliest stage at which Hox-1.5 transcripts can be detected by the in situ hybridization technique. In discussion, it is shown how this lies within the period of development during which tissues become determined along the anteroposterior axis of the mouse. Since there may be anterior-to-posterior variation in the time of determination along the body axis, it is suggested that homoeobox genes expressed more posteriorly, such as Hox-3 (Awgulewitsch et al. 1986), might start expression at times later in development.
我们先前已表明(冈特、米勒、鲍威尔和杜布勒,1986年),小鼠同源框基因Hox - 1.5在7.5天和7.75天胚胎的后外胚层和中胚层中表达,并且在9.5天的神经系统中,在后脑内一个离散边界之后的区域表达。在进一步的原位杂交实验中,现已表明,在7.5天至9.5天的发育阶段,可以检测到Hox - 1.5的表达仅限于胚胎的后部区域。在此期间,前体节和体节中胚层的转录强度相对于覆盖其上的神经外胚层有所下降,并且假定后脑区域内的转录边界变得更加清晰。在10.5天和12.5天的胚胎中检测到后脑边界之后的Hox - 1.5表达,但在新生小鼠中不再发现这种表达。3.5天、6.5天和7.25天的胚胎未显示Hox - 1.5转录本的迹象。得出的结论是,原肠胚形成期(7.5天)的胚胎是通过原位杂交技术能够检测到Hox - 1.5转录本的最早阶段。在讨论中,表明了这如何处于小鼠沿前后轴组织确定的发育时期内。由于沿身体轴确定的时间可能存在从前到后的变化,因此有人提出,在更靠后的位置表达的同源框基因,如Hox - 3(奥古列维奇等人,1986年),可能在发育后期开始表达。