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多指畸形的talpid2、双足畸形1和双足畸形4突变鸡胚肢芽发育过程中Shh、HoxD、Bmp - 2和Fgf - 4基因的表达

Shh, HoxD, Bmp-2, and Fgf-4 gene expression during development of the polydactylous talpid2, diplopodia1, and diplopodia4 mutant chick limb buds.

作者信息

Rodriguez C, Kos R, Macias D, Abbott U K, Izpisúa Belmonte J C

机构信息

Gene Expression Laboratories, Salk Institute, La Jolla, California 92307, USA.

出版信息

Dev Genet. 1996;19(1):26-32. doi: 10.1002/(SICI)1520-6408(1996)19:1<26::AID-DVG3>3.0.CO;2-2.

Abstract

Several polydactylous mutants affect the pattern of asymmetry along the anteroposterior axis of the vertebrate limb. In talpid2, diplopodia1, and diplopodia4 chick limb mutants, there is a preaxial extension that results in broader limb buds. Talpid2 shows reduction of the long bones and 9-10 syndactylous digits, none of which are specifically recognizable as members of the normal digit complement. In diplopodia1 and diplopodia4 extra digits are present preaxially in addition to the normal digits. This phenotype resembles the duplications obtained by grafting a polarizing region to the anterior margin of the limb bud. The abnormal skeletal pattern along the anteroposterior limb axis in both mutants suggests alterations in the signaling pathways that mediate growth and patterning of the limb. In situ hybridization studies reveal that whereas shh transcripts are restricted to the posterior limb margins, HoxD, Bmp-2, and Fgf-4 genes are ectopically expressed in the anterior region of the talpid2, diplopodia1, and diplopodia4 limb buds. The results obtained give insights into the molecular basis of talpid2 and diplopodia mutations and also into the possible roles of shh, Bmp-2, HoxD, and Fgf-4 genes in vertebrate limb morphogenesis.

摘要

几种多指突变体影响脊椎动物肢体前后轴上的不对称模式。在鸡的talpid2、双足畸形1和双足畸形4肢体突变体中,存在前轴延伸,导致肢体芽更宽。Talpid2表现出长骨减少和9至10个并指,其中没有一个能明确识别为正常指的组成部分。在双足畸形1和双足畸形4中,除了正常的指外,前轴还存在额外的指。这种表型类似于通过将极化区域移植到肢体芽前缘而获得的重复。两个突变体中沿肢体前后轴的异常骨骼模式表明介导肢体生长和模式形成的信号通路发生了改变。原位杂交研究表明,虽然shh转录本局限于肢体后缘,但HoxD、Bmp - 2和Fgf - 4基因在talpid2、双足畸形1和双足畸形4肢体芽的前部区域异位表达。所获得的结果有助于深入了解talpid2和双足畸形突变的分子基础,以及shh、Bmp - 2、HoxD和Fgf - 4基因在脊椎动物肢体形态发生中的可能作用。

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