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斑马鱼节点相关基因squint和cyclops在中内胚层模式形成中的作用。

The role of the zebrafish nodal-related genes squint and cyclops in patterning of mesendoderm.

作者信息

Dougan Scott T, Warga Rachel M, Kane Donald A, Schier Alexander F, Talbot William S

机构信息

Department of Developmental Biology, Stanford University School of Medicine, Stanford, CA 94305, USA.

出版信息

Development. 2003 May;130(9):1837-51. doi: 10.1242/dev.00400.

Abstract

Nodal signals, a subclass of the TGFbeta superfamily of secreted factors, induce formation of mesoderm and endoderm in vertebrate embryos. We have examined the possible dorsoventral and animal-vegetal patterning roles for Nodal signals by using mutations in two zebrafish nodal-related genes, squint and cyclops, to manipulate genetically the levels and timing of Nodal activity. squint mutants lack dorsal mesendodermal gene expression at the late blastula stage, and fate mapping and gene expression studies in sqt(-/-); cyc(+/+) and sqt(-/-); cyc(+/-) mutants show that some dorsal marginal cells inappropriately form hindbrain and spinal cord instead of dorsal mesendodermal derivatives. The effects on ventrolateral mesendoderm are less severe, although the endoderm is reduced and muscle precursors are located nearer to the margin than in wild type. Our results support a role for Nodal signals in patterning the mesendoderm along the animal-vegetal axis and indicate that dorsal and ventrolateral mesoderm require different levels of squint and cyclops function. Dorsal marginal cells were not transformed toward more lateral fates in either sqt(-/-); cyc(+/-) or sqt(-/-); cyc(+/+) embryos, arguing against a role for the graded action of Nodal signals in dorsoventral patterning of the mesendoderm. Differential regulation of the cyclops gene in these cells contributes to the different requirements for nodal-related gene function in these cells. Dorsal expression of cyclops requires Nodal-dependent autoregulation, whereas other factors induce cyclops expression in ventrolateral cells. In addition, the differential timing of dorsal mesendoderm induction in squint and cyclops mutants suggests that dorsal marginal cells can respond to Nodal signals at stages ranging from the mid-blastula through the mid-gastrula.

摘要

Nodal信号是分泌因子TGFβ超家族的一个亚类,可诱导脊椎动物胚胎中胚层和内胚层的形成。我们通过利用两条斑马鱼Nodal相关基因squint和cyclops的突变,从基因层面操纵Nodal活性的水平和时间,研究了Nodal信号在背腹和动植物轴模式形成中可能发挥的作用。squint突变体在囊胚晚期缺乏背侧中内胚层基因表达,对sqt(-/-); cyc(+/+)和sqt(-/-); cyc(+/-)突变体进行的命运图谱绘制和基因表达研究表明,一些背侧边缘细胞不恰当地形成了后脑和脊髓,而非背侧中内胚层衍生物。对腹外侧中内胚层的影响相对较轻,尽管内胚层减少,且肌肉前体细胞比野生型更靠近边缘。我们的研究结果支持Nodal信号在沿动植物轴形成中内胚层模式方面发挥作用,并表明背侧和腹外侧中胚层需要不同水平的squint和cyclops功能。在sqt(-/-); cyc(+/-)或sqt(-/-); cyc(+/+)胚胎中,背侧边缘细胞并未向更外侧的命运转变,这表明Nodal信号的梯度作用在中内胚层的背腹模式形成中并不发挥作用。这些细胞中cyclops基因的差异调节导致了这些细胞对Nodal相关基因功能的不同需求。cyclops基因的背侧表达需要Nodal依赖的自动调节,而其他因子则诱导腹外侧细胞中cyclops基因的表达。此外,squint和cyclops突变体中背侧中内胚层诱导的时间差异表明,背侧边缘细胞在从中囊胚期到中胚层期的各个阶段都能对Nodal信号作出反应。

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