Department of Biology, Duke University, Durham, NC 27708, USA.
Evol Dev. 2012 Jan-Feb;14(1):93-103. doi: 10.1111/j.1525-142X.2011.00524.x.
Marsupial newborns are highly altricial and also show a wide array of shifts in the rate or timing of developmental events so that certain neonatal structures are quite mature. One particularly notable feature is the steep gradient in development along the anterior-posterior axis such that anterior structures are generally well developed relative to posterior ones. Here, we study somitogenesis in the marsupial, Monodelphis domestica, and document two heterochronies that may be important in generating the unusual body plan of the newborn marsupial. First, we demonstrate a 4-fold change in somitogenesis rate along the anterior-posterior axis, which appears to be due to somitogenesis slowing posteriorly. Second, we show that somitogenesis, particularly in the cervical region, initiates earlier in Monodelphis relative to other developmental events in the embryo. The early initiation of somitogenesis may contribute to the early development of the cervical region and forelimbs. Other elements of somitogenesis appear to be conserved. When compared to mouse, we see similar expression of genes involved in the clock and wavefront, and genes of the Wnt, Notch, and fibroblast growth factor (FGF) pathways also cycle in Monodelphis. Further, we could not discern differences in somite maturation rate along the anterior-posterior axis in Monodelphis, and thus rate of maturation of the somites does not appear to contribute to the steep anterior-posterior gradient.
有袋动物的新生幼崽高度早产,并且在发育事件的速度或时间上也表现出广泛的变化,以至于某些新生儿结构非常成熟。一个特别值得注意的特征是沿前后轴的发育急剧梯度,使得前体结构相对于后体结构通常发育良好。在这里,我们研究了有袋动物 Monodelphis domestica 的体节发生,并记录了两个可能在产生新生有袋动物异常身体计划中很重要的异时性。首先,我们证明了沿前后轴的体节发生速度发生了 4 倍的变化,这似乎是由于体节发生向后减慢。其次,我们表明,体节发生,特别是在颈部区域,在 Monodelphis 中相对于胚胎中的其他发育事件更早开始。体节发生的早期开始可能有助于颈部区域和前肢的早期发育。体节发生的其他要素似乎是保守的。与小鼠相比,我们看到参与时钟和波前的基因以及 Wnt、Notch 和成纤维细胞生长因子 (FGF) 途径的基因在 Monodelphis 中也呈周期性表达。此外,我们无法在 Monodelphis 中沿前后轴辨别体节成熟速度的差异,因此体节的成熟速度似乎不会导致前后轴的陡峭梯度。