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首页> 外文期刊>Development >Nuclear beta-catenin and the development of bilateral symmetry in normal and LiCl-exposed chick embryos.
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Nuclear beta-catenin and the development of bilateral symmetry in normal and LiCl-exposed chick embryos.

机译:正常和LiCl暴露的鸡胚中的核β-连环蛋白和双侧对称的发展。

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Studies in Xenopus laevis and zebrafish suggest a key role for beta-catenin in the specification of the axis of bilateral symmetry. In these organisms, nuclear beta-catenin demarcates the dorsalizing centers. We have asked whether beta-catenin plays a comparable role in the chick embryo and how it is adapted to the particular developmental constraints of chick development. The first nuclear localization of beta-catenin is observed in late intrauterine stages of development in the periphery of the blastoderm, the developing area opaca and marginal zone. Obviously, this early, radially symmetric domain does not predict the future organizing center of the embryo. During further development, cells containing nuclear beta-catenin spread under the epiblast and form the secondary hypoblast. The onset of hypoblast formation thus demarcates the first bilateral symmetry in nuclear beta-catenin distribution. Lithium chloride exposure also causes ectopic nuclear localization of beta-catenin in cells of the epiblast in the area pellucida. Embryos treated before primitive streak formation become completely radialized, as shown by the expression of molecular markers, CMIX and GSC. Lithium treatments performed during early or medium streak stages cause excessive development of the anterior primitive streak, node and notochord, and lead to a degeneration of prospective ventral and posterior structures, as shown by the expression of the molecular markers GSC, CNOT1, BMP2 and Ch-Tbx6L. In summary, we found that in spite of remarkable spatiotemporal differences, beta-catenin acts in the chick in a manner similar to that in fish and amphibia.
机译:对非洲爪蟾和斑马鱼的研究表明,β-连环蛋白在双边对称轴的规范中起着关键作用。在这些生物中,核β-连环蛋白划定了背心中心。我们问过β-连环蛋白在雏鸡胚胎中是否起类似的作用,以及如何适应雏鸡发育的特定发育限制。 β-catenin的第一个核定位是在胚盘,发育区opaca和边缘区外围的子宫内晚期发育中观察到的。显然,这种早期的径向对称结构无法预测胚胎的未来组织中心。在进一步发育过程中,含有核β-catenin的细胞在表皮细胞下扩散并形成次生的成纤维细胞。因此,亚胚层形成的开始界定了核β-catenin分布中的第一个双边对称性。氯化锂暴露还会在透明质区域的上皮细胞中引起β-catenin的异位核定位。如分子标记CMIX和GSC的表达所示,在原始条纹形成之前经过处理的胚胎会完全放射状化。如分子标记GSC,CNOT1,BMP2和Ch的表达所示,在早期或中等条纹阶段进行的锂治疗会导致前部原始条纹,结节和脊索的过度发育,并导致预期的腹侧和后部结构退化。 -Tbx6L。总而言之,我们发现尽管时空差异很大,但β-catenin在小鸡中的作用类似于在鱼类和两栖动物中的作用。

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