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首页> 外文期刊>Developmental biology >The presumptive floor plate (notoplate) induces behaviors associated with convergent extension in medial but not lateral neural plate cells of Xenopus.
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The presumptive floor plate (notoplate) induces behaviors associated with convergent extension in medial but not lateral neural plate cells of Xenopus.

机译:推定的底板(notoplate)在非洲爪蟾的内侧而非外侧神经板细胞中诱导与会聚延伸相关的行为。

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In previous work (Elul, T., Keller, R., 2000. Monopolar protrusive activity: a new morphogenic cell behavior in the neural plate dependent on vertical interactions with the mesoderm in Xenopus. Dev. Biol. 224, 3-19; Ezin, A.M., Skoglund, P. Keller, R. 2003. The midline (notochord and notoplate) patterns the cell motility underlying convergence and extension of the Xenopus neural plate. Dev. Biol. 256, 100-114), the midline tissues of notochord and overlying notoplate were found to induce the monopolar, medially directed protrusive activity of deep neural cells. This behavior is thought to drive the mediolateral intercalation and convergent extension of the neural plate in Xenopus. Here we address the issue of whether the notochord, the notoplate, or both is essential for this induction. Our strategy was to remove the notochord, leaving the overlying notoplate intact, and determine whether it alone can induce the monopolar, medially directed cell behavior. We first establish that the notoplate (presumptive floor plate), when separated from the underlying notochord in the early neurula (stages 13-14), will independently mature into a floor plate as assayed three criteria: (1) continued expression of an early marker, sonic hedgehog, and a later, marker, F-spondin; (2) the display of the notoplate/floor plate-specific randomly oriented protrusive activity; (3) the characteristic lack of mixing of cells between the notoplate and lateral neural plate. Under these conditions, in the presence of a mature notoplate/floor plate and in the absence of the notochord, the characteristic monopolar, medially directed behavior occurred, but only locally near the midline. These results show that the notoplate/floor plate capacity to induce the medially directed motility is limited in range, and they suggest that the notochord is necessary for the normally observed longer range induction in lateral neural plate cells. This work helps to further the understanding of molecular and tissue interactions required for convergent extension.
机译:在以前的工作中(Elul,T.,Keller,R.,2000.单极性突出活动:神经板中新的形态发生细胞行为,取决于与爪蟾中皮的垂直相互作用。Dev。Biol。224,3-19; Ezin ,AM,Skoglund,P。Keller,R.,2003年。中线(脊索和Notoplate)模拟了非洲爪蟾神经板收敛和延伸的细胞运动(Dev。Biol。256,100-114),脊索的中线组织。发现上覆的三叶草和上覆的三孔板可诱导深层神经细胞的单极,向内定向的突出活动。这种行为被认为是驱动非洲爪蟾的神经板的中外侧插入和会聚延伸的原因。在这里,我们讨论的是,脊索,斜板或两者对于此感应必不可少的问题。我们的策略是去除脊索,使上面的刻板保持完整,并确定它是否单独可以诱导单极,中间定向的细胞行为。我们首先确定,当与早期神经元中的下脊索分离时(第13-14阶段),notoplate(推定的底板)将独立地成熟为地板,如以下三个标准所示:(1)继续表达早期标记,声音刺猬和后来的标记F-spondin; (2)展示Notoplate / floor plate-specific随机定向的突出活动; (3)缺刻板和侧神经板之间缺乏混合的特征。在这些条件下,在存在成熟的Notoplate / Floor板的情况下,在没有Notochord的情况下,会发生特征性的单极,中间指向的行为,但仅在中线附近发生。这些结果表明,Notoplate / Floor Plate诱导内侧定向运动的能力在范围上受到限制,并且它们表明Notochord对于在外侧神经板细胞中正常观察到的更长范围的诱导是必需的。这项工作有助于进一步了解收敛延伸所需的分子和组织相互作用。

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