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冈比亚按蚊中背腹模式化网络的进化

Evolution of the dorsal-ventral patterning network in the mosquito, Anopheles gambiae.

作者信息

Goltsev Yury, Fuse Naoyuki, Frasch Manfred, Zinzen Robert P, Lanzaro Gregory, Levine Mike

机构信息

Department MCB, Division of GGD, Center for Integrative Genomics, University of California, Berkeley, CA 94720, USA.

出版信息

Development. 2007 Jul;134(13):2415-24. doi: 10.1242/dev.02863. Epub 2007 May 23.

Abstract

The dorsal-ventral patterning of the Drosophila embryo is controlled by a well-defined gene regulation network. We wish to understand how changes in this network produce evolutionary diversity in insect gastrulation. The present study focuses on the dorsal ectoderm in two highly divergent dipterans, the fruitfly Drosophila melanogaster and the mosquito Anopheles gambiae. In D. melanogaster, the dorsal midline of the dorsal ectoderm forms a single extra-embryonic membrane, the amnioserosa. In A. gambiae, an expanded domain forms two distinct extra-embryonic tissues, the amnion and serosa. The analysis of approximately 20 different dorsal-ventral patterning genes suggests that the initial specification of the mesoderm and ventral neurogenic ectoderm is highly conserved in flies and mosquitoes. By contrast, there are numerous differences in the expression profiles of genes active in the dorsal ectoderm. Most notably, the subdivision of the extra-embryonic domain into separate amnion and serosa lineages in A. gambiae correlates with novel patterns of gene expression for several segmentation repressors. Moreover, the expanded amnion and serosa anlage correlates with a broader domain of Dpp signaling as compared with the D. melanogaster embryo. Evidence is presented that this expanded signaling is due to altered expression of the sog gene.

摘要

果蝇胚胎的背腹模式形成由一个定义明确的基因调控网络控制。我们希望了解该网络的变化如何在昆虫原肠胚形成过程中产生进化多样性。本研究聚焦于两种高度分化的双翅目昆虫,果蝇黑腹果蝇和冈比亚按蚊的背侧外胚层。在黑腹果蝇中,背侧外胚层的背中线形成单一的胚外膜,即羊浆膜。在冈比亚按蚊中,一个扩展的区域形成两种不同的胚外组织,即羊膜和浆膜。对大约20种不同的背腹模式形成基因的分析表明,中胚层和腹侧神经源性外胚层的初始特化在果蝇和蚊子中高度保守。相比之下,在背侧外胚层中活跃的基因表达谱存在许多差异。最显著的是,冈比亚按蚊中胚外区域细分为单独的羊膜和浆膜谱系与几种分割抑制因子的新基因表达模式相关。此外,与黑腹果蝇胚胎相比,扩展的羊膜和浆膜原基与更广泛的Dpp信号传导区域相关。有证据表明,这种扩展的信号传导是由于sog基因表达的改变所致。

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