Dorsoventral patterning beyond the gastrulation stage: Interpretation of early dorsoventral cues and modular development mediated by zic1/zic4.

IF 2.1 4区 生物学 Q3 DEVELOPMENTAL BIOLOGY
Toru Kawanishi, Hiroyuki Takeda
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引用次数: 0

Abstract

Dorsoventral (DV) patterning is fundamental to vertebrate development, organizing the entire body across different germ layers. Although early DV axis formation, centered on the Spemann-Mangold organizer through the BMP activity gradient, has been extensively studied, the mechanisms shaping DV traits during later development remain largely unexplored. In this review, we highlight recent findings, especially from studies involving the Double anal fin (Da) spontaneous mutant of the small teleost medaka (Oryzias latipes), focusing on the roles of zic1 and zic4 (zic1/zic4) in regulating late DV patterning. These genes establish the dorsal domain of the trunk by converting the initial BMP gradient into distinct on/off spatial compartments within somites and their derivatives, acting as selector genes that define dorsal-specific traits, including myotome structure, body shape, and dorsal fin development. We also discuss how the zic-mediated dorsal domain is established and maintained from embryogenesis through adulthood. Furthermore, we provide evidence that zic-dependent action on the dorsal characteristics is dosage-dependent. We propose that the zic1/zic4-mediated DV patterning mechanism may represent a conserved regulatory framework that has been adapted to support the diverse body plans observed across vertebrate species.

原肠胚期后的背腹侧模式:zic1/zic4介导的早期背腹侧线索和模块化发育的解释。
背腹(DV)模式是脊椎动物发育的基础,横跨不同的胚层组织整个身体。尽管以Spemann-Mangold组织者为中心,通过BMP活性梯度形成的早期DV轴形成已被广泛研究,但在后期发育过程中形成DV特征的机制仍未被探索。在这篇综述中,我们重点介绍了最近的研究结果,特别是涉及小硬骨鱼(Oryzias latipes)双肛鳍(Da)自发突变体的研究,重点介绍了zic1和zic4 (zic1/zic4)在调节晚期DV模式中的作用。这些基因通过将初始BMP梯度转化为体及其衍生物中不同的开/关空间区来建立躯干的背域,并作为选择基因定义背特异性特征,包括肌组结构、体型和背鳍发育。我们还讨论了锌介导的背结构域是如何从胚胎发育到成年建立和维持的。此外,我们提供的证据表明,锌对背侧特征的依赖作用是剂量依赖的。我们提出,zic1/zic4介导的DV模式机制可能代表了一个保守的调节框架,该框架已被适应以支持在脊椎动物物种中观察到的多种身体计划。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Cells & Development
Cells & Development DEVELOPMENTAL BIOLOGY-
CiteScore
3.70
自引率
0.00%
发文量
33
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