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非洲爪蟾肢体芽重组体中的多指形成。

Multiple digit formation in Xenopus limb bud recombinants.

作者信息

Yokoyama H, Endo T, Tamura K, Yajima H, Ide H

机构信息

Graduate School of Science, Tohoku University, Sendai, 980-77, Japan.

出版信息

Dev Biol. 1998 Apr 1;196(1):1-10. doi: 10.1006/dbio.1998.8856.

Abstract

We prepared recombinant limb buds of Xenopus tadpoles by grafting a mesenchyme mass of the hindlimb bud. The Xenopus recombinant limb buds with dissociated and reaggregated mesenchyme developed more than 30 digits with cartilage segmentation, while those with undissociated mesenchyme developed a limb with normal cartilage pattern. Before the formation of multiple digits, a patchy expression pattern of fgf-8, an AER marker, was observed in the distal region of recombinant limb buds. shh, a ZPA (zone of polarizing activity) marker, was expressed broadly in the distal region of recombinants. Recombinant limb buds with the reaggregated mesenchyme of anterior halves formed anterior digits with claws, and those with the mesenchyme of posterior halves formed posterior digits without claws. The temporal and spatial changes in the potency of multiple digit formation are discussed with reference to the regenerative capacity of Xenopus limb buds.

摘要

我们通过移植后肢芽的间充质团来制备非洲爪蟾蝌蚪的重组肢芽。具有解离和重新聚集间充质的非洲爪蟾重组肢芽发育出了30多个带有软骨节段的指,而具有未解离间充质的肢芽则发育出具有正常软骨模式的肢体。在多个指形成之前,在重组肢芽的远端区域观察到了AER标记物fgf-8的斑片状表达模式。shh,一种ZPA(极化活性区)标记物,在重组体的远端区域广泛表达。具有前半部分重新聚集间充质的重组肢芽形成了带有爪的前指,而具有后半部分间充质的重组肢芽形成了没有爪的后指。结合非洲爪蟾肢芽的再生能力,讨论了多指形成潜能的时空变化。

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