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在早期背侧组织者缺失的情况下斑马鱼神经外胚层前后模式的正确形成

Correct anteroposterior patterning of the zebrafish neurectoderm in the absence of the early dorsal organizer.

作者信息

Varga Máté, Maegawa Shingo, Weinberg Eric S

机构信息

Department of Biology, University of Pennsylvania, Philadelphia, 19104, USA.

出版信息

BMC Dev Biol. 2011 May 16;11:26. doi: 10.1186/1471-213X-11-26.

Abstract

BACKGROUND

The embryonic organizer (i.e., Spemann organizer) has a pivotal role in the establishment of the dorsoventral (DV) axis through the coordination of BMP signaling. However, as impaired organizer function also results in anterior and posterior truncations, it is of interest to determine if proper anteroposterior (AP) pattern can be obtained even in the absence of early organizer signaling.

RESULTS

Using the ventralized, maternal effect ichabod (ich) mutant, and by inhibiting BMP signaling in ich embryos, we provide conclusive evidence that AP patterning is independent of the organizer in zebrafish, and is governed by TGFβ, FGF, and Wnt signals emanating from the germ-ring. The expression patterns of neurectodermal markers in embryos with impaired BMP signaling show that the directionality of such signals is oriented along the animal-vegetal axis, which is essentially concordant with the AP axis. In addition, we find that in embryos inhibited in both Wnt and BMP signaling, the AP pattern of such markers is unchanged from that of the normal untreated embryo. These embryos develop radially organized trunk and head tissues, with an outer neurectodermal layer containing diffusely positioned neuronal precursors. Such organization is reflective of the presumed eumetazoan ancestor and might provide clues for the evolution of centralization in the nervous system.

CONCLUSIONS

Using a zebrafish mutant deficient in the induction of the embryonic organizer, we demonstrate that the AP patterning of the neuroectoderm during gastrulation is independent of DV patterning. Our results provide further support for Nieuwkoop's "two step model" of embryonic induction. We also show that the zebrafish embryo can form a radial diffuse neural sheath in the absence of both BMP signaling and the early organizer.

摘要

背景

胚胎组织者(即施佩曼组织者)在通过协调骨形态发生蛋白(BMP)信号来建立背腹(DV)轴方面起着关键作用。然而,由于组织者功能受损也会导致前后部截断,因此确定即使在缺乏早期组织者信号的情况下是否能获得正常的前后(AP)模式是很有意义的。

结果

利用腹化的母源效应伊卡博德(ich)突变体,并通过抑制ich胚胎中的BMP信号,我们提供了确凿的证据,证明在斑马鱼中AP模式的形成独立于组织者,并且受来自胚环的转化生长因子β(TGFβ)、成纤维细胞生长因子(FGF)和Wnt信号调控。BMP信号受损的胚胎中神经外胚层标记物的表达模式表明,这些信号的方向性沿动物 - 植物轴定向,这与AP轴基本一致。此外,我们发现,在Wnt和BMP信号均被抑制的胚胎中,这些标记物的AP模式与未处理的正常胚胎相比没有变化。这些胚胎发育出径向组织的躯干和头部组织,其外部神经外胚层含有分散定位的神经元前体。这种组织反映了假定的真后生动物祖先,可能为神经系统集中化的进化提供线索。

结论

利用缺乏胚胎组织者诱导的斑马鱼突变体,我们证明了原肠胚形成期间神经外胚层的AP模式形成独立于DV模式形成。我们的结果为Nieuwkoop的胚胎诱导“两步模型”提供了进一步的支持。我们还表明,在缺乏BMP信号和早期组织者的情况下,斑马鱼胚胎可以形成径向弥散的神经鞘。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4f28/3120780/e5baeb631679/1471-213X-11-26-1.jpg

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