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文昌鱼胚胎中脊索中胚层的形成:利用 Brachyury 和 fork head/HNF-3 基因进行分析。

Formation of the chordamesoderm in the amphioxus embryo: Analysis with Brachyury and fork head/HNF-3 genes.

机构信息

Department of Zoology, Graduate School of Science, Kyoto University, Kyoto 606-01, Japan, , , , , , JP.

出版信息

Dev Genes Evol. 1997 May;207(1):1-11. doi: 10.1007/s004270050086.

Abstract

The embryonic development of amphioxus (cephalochordates) has much in common with that of vertebrates, suggesting a close phylogenetic relationship between the two chordate groups. To gain insight into alterations in the genetic cascade that accompanied the evolution of vertebrate embryogenesis, we investigated the formation of the chordamesoderm in amphioxus embryos using the genes Brachyury and fork head/HNF-3 as probes. Am(Bb)Bra1 and Am(Bb)Bra2 are homologues of the mouse Brachyury gene isolated from Branchiostoma belcheri. Molecular phylogenetic analysis suggests that the genes are independently duplicated in the amphioxus lineage. Both genes are initially expressed in the involuting mesoderm of the gastrula, then in the differentiating somites of neurulae, followed by the differentiating notochord and finally in the tail bud of ten-somite stage embryos. On the other hand, Am(Bb)fkh/HNF3-1, an amphioxus (B. belcheri) homologue of the fork head/HNF-3 gene, is initially expressed in the invaginating endoderm and mesoderm, then later in the differentiating notochord and in the tail bud. With respect to these two types of genes, the formation of the notochord and tail bud in amphioxus embryos shows similarity and dissimilarity with that of the notochord and tail bud in vertebrate embryos.

摘要

文昌鱼(头索动物)的胚胎发育与脊椎动物有很多共同之处,这表明这两个脊索动物群之间有密切的系统发育关系。为了深入了解伴随脊椎动物胚胎发生进化的基因级联的变化,我们使用 Brachyury 和 fork head/HNF-3 基因作为探针研究了文昌鱼胚胎的脊索中胚层的形成。Am(Bb)Bra1 和 Am(Bb)Bra2 是从小体文昌鱼(Branchiostoma belcheri)中分离出的小鼠 Brachyury 基因的同源物。分子系统发育分析表明,这些基因在文昌鱼谱系中是独立复制的。这两个基因最初在原肠胚内卷的中胚层中表达,然后在神经胚的分化体节中表达,接着在分化的脊索中表达,最后在 10 体节胚胎的尾芽中表达。另一方面,Am(Bb)fkh/HNF3-1,叉头/HNF-3 基因的文昌鱼(B. belcheri)同源物,最初在内胚层和中胚层的内陷中表达,然后在分化的脊索中和尾芽中表达。关于这两种类型的基因,文昌鱼胚胎中脊索和尾芽的形成与脊椎动物胚胎中脊索和尾芽的形成具有相似性和差异性。

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