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果蝇胚胎中羊浆膜与背侧外胚层界面处前缘形成的研究。

Investigation of leading edge formation at the interface of amnioserosa and dorsal ectoderm in the Drosophila embryo.

作者信息

Stronach B E, Perrimon N

机构信息

Department of Genetics, Harvard Medical School, 200 Longwood Avenue, Boston, MA 02115, USA.

出版信息

Development. 2001 Aug;128(15):2905-13. doi: 10.1242/dev.128.15.2905.

Abstract

The leading edge (LE) is a single row of cells in the Drosophila embryonic epidermis that marks the boundary between two fields of cells: the amnioserosa and the dorsal ectoderm. LE cells play a crucial role in the morphogenetic process of dorsal closure and eventually form the dorsal midline of the embryo. Mutations that block LE differentiation result in a failure of dorsal closure and embryonic lethality. How LE cells are specified remains unclear. To explore whether LE cells are specified in response to early dorsoventral patterning information or whether they arise secondarily, we have altered the extent of amnioserosa and dorsal ectoderm genetically, and assayed LE cell fate. We did not observe an expansion of LE fate in dorsalized or ventralized mutants. Furthermore, we observed that the LE fate arises as a single row of cells, wherever amnioserosa tissue and dorsal epidermis are physically juxtaposed. Taken together our data indicate that LE formation is a secondary consequence of early zygotic dorsal patterning signals. In particular, proper LE specification requires the function of genes such as u-shaped and hindsight, which are direct transcriptional targets of the early Decapentaplegic/Screw patterning gradient, to establish a competency zone from which LE arises. We propose that subsequent inductive signaling between amnioserosa and dorsal ectoderm restricts the formation of LE to a single row of cells.

摘要

前缘(LE)是果蝇胚胎表皮中的一排细胞,它标志着两个细胞区域之间的边界:羊膜浆膜和背侧外胚层。LE细胞在背侧闭合的形态发生过程中起关键作用,并最终形成胚胎的背中线。阻断LE分化的突变会导致背侧闭合失败和胚胎致死。LE细胞是如何被指定的仍不清楚。为了探究LE细胞是响应早期背腹模式信息而被指定,还是其次级产生,我们通过基因手段改变了羊膜浆膜和背侧外胚层的范围,并检测了LE细胞命运。我们在背化或腹化突变体中未观察到LE命运的扩展。此外,我们观察到,无论羊膜浆膜组织和背侧表皮在何处物理并列,LE命运都以一排细胞的形式出现。综合我们的数据表明,LE的形成是早期合子背侧模式信号的次级结果。特别是,正确的LE指定需要诸如u型和后见之明等基因的功能,这些基因是早期Decapentaplegic/Screw模式梯度的直接转录靶标,以建立一个LE从中产生的能力区。我们提出,随后羊膜浆膜和背侧外胚层之间的诱导信号传导将LE的形成限制为一排细胞。

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