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本文引用的文献

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Efficient gene modulation in mouse epiblast using a Sox2Cre transgenic mouse strain.利用Sox2Cre转基因小鼠品系在小鼠上胚层中进行高效基因调控。
Gene Expr Patterns. 2002 Nov;2(1-2):93-7. doi: 10.1016/s0925-4773(02)00292-7.
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Nodal activity in the node governs left-right asymmetry.结内的节点活动决定左右不对称性。
Genes Dev. 2002 Sep 15;16(18):2339-44. doi: 10.1101/gad.1016202.
3
The Foxh1-dependent autoregulatory enhancer controls the level of Nodal signals in the mouse embryo.依赖Foxh1的自调控增强子控制小鼠胚胎中Nodal信号的水平。
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From fertilization to gastrulation: axis formation in the mouse embryo.从受精到原肠胚形成:小鼠胚胎中的轴形成
Curr Opin Genet Dev. 2001 Aug;11(4):384-92. doi: 10.1016/s0959-437x(00)00208-2.
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Nodal signalling in the epiblast patterns the early mouse embryo.上胚层中的节点信号形成早期小鼠胚胎的模式。
Nature. 2001 Jun 21;411(6840):965-9. doi: 10.1038/35082103.
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Genetic dissection of nodal function in patterning the mouse embryo.小鼠胚胎模式形成中节点功能的遗传学剖析。
Development. 2001 May;128(10):1831-43. doi: 10.1242/dev.128.10.1831.
8
Otx2 is required for visceral endoderm movement and for the restriction of posterior signals in the epiblast of the mouse embryo.Otx2对于小鼠胚胎脏内胚层的移动以及上胚层中后部信号的限制是必需的。
Development. 2001 Mar;128(5):753-65. doi: 10.1242/dev.128.5.753.
9
Visceral endoderm mediates forebrain development by suppressing posteriorizing signals.脏内胚层通过抑制后化信号来介导前脑发育。
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10
The homeobox gene Hex is required in definitive endodermal tissues for normal forebrain, liver and thyroid formation.同源框基因Hex在确定的内胚层组织中是正常前脑、肝脏和甲状腺形成所必需的。
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转化生长因子-β信号通路对小鼠胚胎早期前后模式的调控

Control of early anterior-posterior patterning in the mouse embryo by TGF-beta signalling.

作者信息

Robertson Elizabeth J, Norris Dominic P, Brennan Jane, Bikoff Elizabeth K

机构信息

Department of Molecular and Cellular Biology, Harvard University, 16 Divinity Avenue, Cambridge, MA 02138, USA.

出版信息

Philos Trans R Soc Lond B Biol Sci. 2003 Aug 29;358(1436):1351-7; discussion 1357. doi: 10.1098/rstb.2003.1332.

DOI:10.1098/rstb.2003.1332
PMID:14511481
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1693235/
Abstract

Prior to gastrulation the mouse embryo exists as a symmetrical cylinder consisting of three tissue layers. Positioning of the future anterior-posterior axis of the embryo occurs through coordinated cell movements that rotate a pre-existing proximal-distal (P-D) axis. Overt axis formation becomes evident when a discrete population of proximal epiblast cells become induced to form mesoderm, initiating primitive streak formation and marking the posterior side of the embryo. Over the next 12-24 h the primitive streak gradually elongates along the posterior side of the epiblast to reach the distal tip. The most anterior streak cells comprise the 'organizer' region and include the precursors of the so-called 'axial mesendoderm', namely the anterior definitive endoderm and prechordal plate mesoderm, as well as those cells that give rise to the morphologically patent node. Signalling pathways controlled by the transforming growth factor-beta ligand nodal are involved in orchestrating the process of axis formation. Embryos lacking nodal activity arrest development before gastrulation, reflecting an essential role for nodal in establishing P-D polarity by generating and maintaining the molecular pattern within the epiblast, extraembryonic ectoderm and the visceral endoderm. Using a genetic strategy to manipulate temporal and spatial domains of nodal expression reveals that the nodal pathway is also instrumental in controlling both the morphogenetic movements required for orientation of the final axis and for specification of the axial mesendoderm progenitors.

摘要

在原肠胚形成之前,小鼠胚胎呈对称圆柱体状,由三个组织层组成。胚胎未来前后轴的定位通过协调的细胞运动实现,这些运动使预先存在的近远轴(P-D轴)发生旋转。当离散的近端上胚层细胞群被诱导形成中胚层时,明显的轴形成开始,启动原条形成并标记胚胎的后侧。在接下来的12 - 24小时内,原条沿着上胚层后侧逐渐伸长,直至到达远端。最前端的原条细胞构成“组织者”区域,包括所谓“轴旁中胚层”的前体,即前确定内胚层和脊索前板中胚层,以及那些形成形态学上明显的节点的细胞。由转化生长因子-β配体Nodal控制的信号通路参与协调轴形成过程。缺乏Nodal活性的胚胎在原肠胚形成前停止发育,这反映了Nodal通过在上胚层、胚外外胚层和脏内胚层内产生并维持分子模式来建立P-D极性方面的重要作用。利用遗传策略操纵Nodal表达的时空域表明,Nodal信号通路在控制最终轴定向所需的形态发生运动以及轴旁中胚层祖细胞的特化方面也发挥着作用。