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脊椎动物和果蝇中 Fezf 的保守发育表达及 Zona Limitans Intrathalamica(ZLI)脑组织者的起源。

Conserved developmental expression of Fezf in chordates and Drosophila and the origin of the Zona Limitans Intrathalamica (ZLI) brain organizer.

机构信息

Departament de Genètica and Institut de Biomedicina (IBUB), Universitat de Barcelona, Barcelona, Spain.

出版信息

Evodevo. 2010 Sep 1;1(1):7. doi: 10.1186/2041-9139-1-7.

Abstract

BACKGROUND

The zona limitans intrathalamica (ZLI) and the isthmus organizer (IsO) are two major secondary organizers of vertebrate brain development. These organizers are located at the interface of the expression domains of key patterning genes (Fezf-Irx and Otx-Gbx, respectively). To gain insights into the evolutionary origin of the ZLI, we studied Fezf in bilaterians.

RESULTS

In this paper, we identified a conserved sequence motif (Fezf box) in all bilaterians. We report the expression pattern of Fezf in amphioxus and Drosophila and compare it with those of Gbx, Otx and Irx. We found that the relative expression patterns of these genes in vertebrates are fully conserved in amphioxus and flies, indicating that the genetic subdivisions defining the location of both secondary organizers in early vertebrate brain development were probably present in the last common ancestor of extant bilaterians. However, in contrast to vertebrates, we found that Irx-defective flies do not show an affected Fezf expression pattern.

CONCLUSIONS

The absence of expression of the corresponding morphogens from cells at these conserved genetic boundaries in invertebrates suggests that the organizing properties might have evolved specifically in the vertebrate lineage by the recruitment of key morphogens to these conserved genetic locations.

摘要

背景

限带区组织(ZLI)和峡部组织者(IsO)是脊椎动物脑发育的两个主要次级组织者。这些组织者位于关键模式基因表达域的交界处(分别为 Fezf-Irx 和 Otx-Gbx)。为了深入了解 ZLI 的进化起源,我们研究了扁虫中的 Fezf。

结果

在本文中,我们在所有扁虫中鉴定出一个保守的序列基序(Fezf 盒)。我们报告了 Fezf 在文昌鱼和果蝇中的表达模式,并将其与 Gbx、Otx 和 Irx 的表达模式进行了比较。我们发现,这些基因在脊椎动物中的相对表达模式在文昌鱼和果蝇中是完全保守的,这表明在现存扁虫的最后共同祖先中,可能存在定义早期脊椎动物脑发育中这两个次级组织者位置的遗传细分。然而,与脊椎动物不同的是,我们发现 Irx 缺陷的果蝇不会显示受影响的 Fezf 表达模式。

结论

无脊椎动物中这些保守遗传边界处的相应形态发生素的缺失表达表明,在脊椎动物谱系中,这些关键形态发生素可能通过被招募到这些保守的遗传位置,从而专门进化出了组织特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2af9/2942887/596d64f0ba60/2041-9139-1-7-1.jpg

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