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蝾螈(墨西哥钝口螈)多余肢体的细胞贡献

Cellular contribution to supernumerary limbs in the axolotl, Ambystoma mexicanum.

作者信息

Muneoka K, Bryant S V

出版信息

Dev Biol. 1984 Sep;105(1):166-78. doi: 10.1016/0012-1606(84)90272-0.

Abstract

Using the triploid cell marker, the cellular contribution from graft and stump to the supernumerary limbs which result from controlateral grafts of limb buds and regeneration blastemas in the axolotl has been analyzed. Grafts were made so as to appose anterior and posterior limb positions. Overall, the contribution from graft and stump tissue was found to be approximately equal although the position of the boundary between the two was variable from limb to limb. This result is consistent with models which suggest that intercalary regeneration is the driving force for patterning of the vertebrate limb. In addition, the pattern of cellular contribution to supernumerary limbs was consistently found to be asymmetrical in the dorsal-ventral axis. Hence, posterior limb tissue predominantly contributed cells to the posterior and dorsal part of the supernumerary limb whereas anterior limb tissue predominantly contributed cells to the anterior and ventral part of the supernumerary limb. The reason for this asymmetrical pattern remains unknown, but we suggest that it might result from a directional bias in intercalary regeneration, similar to that observed during intercalation in the proximal-distal axis of the urodele limb. Using the triploid cell marker in conjunction with a black/white pigmentation marker, the relationship between the cellular contribution boundary and the pigmentation boundary in supernumerary limbs has also been analyzed. It has been found that the positions of the two boundaries do not coincide, a result which suggests that the eventual location of pigment cells is not a good indicator of the location of nonpigment cells derived from graft and stump.

摘要

利用三倍体细胞标记,分析了蝾螈中肢体芽和再生芽基的对侧移植所产生的多余肢体中移植组织和残端组织的细胞贡献。移植的方式是使前肢和后肢位置相对。总体而言,尽管两个组织之间边界的位置因肢体而异,但发现移植组织和残端组织的贡献大致相等。这一结果与认为间插再生是脊椎动物肢体模式形成驱动力的模型一致。此外,始终发现对多余肢体的细胞贡献模式在背腹轴上是不对称的。因此,后肢组织主要为多余肢体的后部和背侧部分贡献细胞,而前肢组织主要为多余肢体的前部和腹侧部分贡献细胞。这种不对称模式的原因尚不清楚,但我们认为这可能是由于间插再生中的定向偏差导致的,类似于在有尾目动物肢体近端-远端轴的间插过程中观察到的情况。结合使用三倍体细胞标记和黑白色素沉着标记,还分析了多余肢体中细胞贡献边界与色素沉着边界之间的关系。已发现这两个边界的位置不一致,这一结果表明色素细胞的最终位置并不是来自移植组织和残端的非色素细胞位置的良好指标。

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