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腹足纲软体动物笠贝(Patella vulgata)中两个蜗牛基因的表征。对理解两侧对称动物中蜗牛相关基因的祖先功能的启示。

Characterisation of two snail genes in the gastropod mollusc Patella vulgata. Implications for understanding the ancestral function of the snail-related genes in Bilateria.

作者信息

Lespinet Olivier, Nederbragt Alexander J, Cassan Michel, Dictus Wim J A G, van Loon André E, Adoutte André

机构信息

Centre de Génétique Moléculaire, CNRS UPR 2167, 91198 Gif-sur-Yvette, France.

出版信息

Dev Genes Evol. 2002 May;212(4):186-95. doi: 10.1007/s00427-002-0228-1. Epub 2002 Apr 18.

Abstract

Snail genes have been found to play a role in mesoderm formation in two of the three clades of bilaterians, deuterostomes (comprising the chordates) and ecdysozoans (comprising the arthropods). No clear data are available on the role these genes play in development of the mesoderm in the third clade, that of lophotrochozoans (comprising annelids and molluscs). We identified two new members of the snail gene family in the gastropod mollusc Patella vulgata. Phylogenetic analysis showed that the two genes clearly belong to the snail sub-family. Their expression patterns do not indicate a role during early mesoderm formation. In fact, contrary to expectations, the snail genes of Patella were mostly expressed in the ectoderm. In view of the location of their expression sites, we suggest that these genes could be involved in regulating epithelial-mesenchymal transitions (EMT) and cell motility, as has recently been demonstrated for snail genes in vertebrates. This may well correspond to the ancestral function of these genes. The results are discussed in the light of the evolutionary origin of the mesoderm. Electronic supplementary material to this paper can be obtained by using the Springer LINK server located at http://dx.doi.org/10.1007/s00427-002-0228-1.

摘要

在两侧对称动物的三个进化分支中的两个分支,即后口动物(包括脊索动物)和蜕皮动物(包括节肢动物)中,已发现蜗牛基因在中胚层形成过程中发挥作用。关于这些基因在第三个分支,即触手冠动物(包括环节动物和软体动物)的中胚层发育中所起的作用,尚无明确数据。我们在腹足纲软体动物笠贝中鉴定出蜗牛基因家族的两个新成员。系统发育分析表明,这两个基因明显属于蜗牛亚家族。它们的表达模式并未显示在早期中胚层形成过程中发挥作用。事实上,与预期相反,笠贝的蜗牛基因大多在外胚层中表达。鉴于其表达位点的位置,我们认为这些基因可能参与调节上皮 - 间质转化(EMT)和细胞运动,正如最近在脊椎动物的蜗牛基因中所证实的那样。这很可能与这些基因的原始功能相对应。根据中胚层的进化起源对结果进行了讨论。可通过位于http://dx.doi.org/10.1007/s00427-002-0228-1的施普林格LINK服务器获取本文的电子补充材料。

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