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节肢动物中 Wnt 基因的功能和进化。

The function and evolution of Wnt genes in arthropods.

机构信息

Institut für Populationsgenetik, Veterinärmedizinische Universität Wien, Veterinärplatz 1, Vienna, Austria.

出版信息

Arthropod Struct Dev. 2010 Nov;39(6):446-52. doi: 10.1016/j.asd.2010.05.007. Epub 2010 Sep 17.

Abstract

Wnt signalling is required for a wide range of developmental processes, from cleavage to patterning and cell migration. There are 13 subfamilies of Wnt ligand genes and this diverse repertoire appeared very early in metazoan evolution. In this review, we first summarise the known Wnt gene repertoire in various arthropods. Insects appear to have lost several Wnt subfamilies, either generally, such as Wnt3, or in lineage specific patterns, for example, the loss of Wnt7 in Anopheles. In Drosophila and Acyrthosiphon, only seven and six Wnt subfamilies are represented, respectively; however, the finding of nine Wnt genes in Tribolium suggests that arthropods had a larger repertoire ancestrally. We then discuss what is currently known about the expression and developmental function of Wnt ligands in Drosophila and other insects in comparison to other arthropods, such as the spiders Achaearanea and Cupiennius. We conclude that studies of Wnt genes have given us much insight into the developmental roles of some of these ligands. However, given the frequent loss of Wnt genes in insects and the derived development of Drosophila, further studies of these important genes are required in a broader range of arthropods to fully understand their developmental function and evolution.

摘要

Wnt 信号通路对于广泛的发育过程至关重要,包括卵裂、模式形成和细胞迁移。Wnt 配体基因有 13 个亚家族,这个多样化的基因库在后生动物进化的早期就已经出现。在这篇综述中,我们首先总结了各种节肢动物中已知的 Wnt 基因库。昆虫似乎已经丢失了几个 Wnt 亚家族,要么是普遍丢失,比如 Wnt3,要么是特定谱系丢失,例如在疟蚊中丢失了 Wnt7。在果蝇和豌豆蚜中,分别只存在 7 个和 6 个 Wnt 亚家族;然而,在三化螟中发现了 9 个 Wnt 基因,表明节肢动物的祖先具有更大的基因库。然后,我们讨论了与其他节肢动物(如蜘蛛 Achaearanea 和金蛛 Cupiennius)相比,在果蝇和其他昆虫中,Wnt 配体的表达和发育功能目前已知的情况。我们得出的结论是,对 Wnt 基因的研究使我们对这些配体的一些发育作用有了更深入的了解。然而,鉴于昆虫中 Wnt 基因经常丢失,以及果蝇的衍生发育,需要在更广泛的节肢动物中进一步研究这些重要基因,以全面了解它们的发育功能和进化。

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