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果蝇中肠中的异位双胸蛋白改变了五个同源异型基因、dpp和无翅基因的表达,导致特定的形态缺陷。

Ectopic decapentaplegic in the Drosophila midgut alters the expression of five homeotic genes, dpp, and wingless, causing specific morphological defects.

作者信息

Staehling-Hampton K, Hoffmann F M

机构信息

McArdle Laboratory for Cancer Research, University of Wisconsin, Madison 53706.

出版信息

Dev Biol. 1994 Aug;164(2):502-12. doi: 10.1006/dbio.1994.1219.

Abstract

The patterns of homeotic gene expression in the Drosophila midgut visceral mesoderm are instrumental in several morphogenetic events, including the formation of the gastric caeca and the positioning of the three midgut constrictions. We demonstrate that a potent regulator of homeotic gene expression in the visceral mesoderm is the secreted growth factor-like molecule encoded by the decapentaplegic (dpp) gene. Ectopic dpp in the visceral mesoderm caused changes in the gene expression of Sex combs reduced, Antennapedia, Ultrabithorax (Ubx), and abdominal-A (abd-A) and disrupted the formation of the gastric caeca and the first and third midgut constrictions. Ectopic dpp also induced expression of teashirt, wingless (wg) and the endogenous dpp gene in the visceral mesoderm and enhanced labial expression in the adjacent endoderm. The patterns of gene expression and the formation of the second midgut constriction in the presence of ectopic dpp are most consistent with a dpp-induced transformation of virtually the entire midgut to cell fates normally seen only in the parasegment (ps)7 and ps8 regions of the midgut. We conclude that dpp is a primary signal in maintaining Ubx expression in the visceral mesoderm in a pattern different from Ubx expression in the embryonic ectoderm and in providing a cell-cell communication mechanism by which Ubx expression influences gene expression across germlayers and across the ps7 to ps8 parasegment boundary in the visceral mesoderm.

摘要

果蝇中肠内脏中胚层同源异型基因的表达模式在多个形态发生事件中发挥作用,包括胃盲囊的形成以及三个中肠收缩环的定位。我们证明,内脏中胚层中同源异型基因表达的一个有效调节因子是由脱翅基因(dpp)编码的分泌型生长因子样分子。内脏中胚层中的异位dpp导致了性梳减少、触角足、超双胸(Ubx)和腹-A(abd-A)的基因表达发生变化,并破坏了胃盲囊以及第一和第三个中肠收缩环的形成。异位dpp还在内脏中胚层中诱导了无尾、翅无(wg)和内源性dpp基因的表达,并增强了相邻内胚层中唇的表达。在存在异位dpp的情况下,基因表达模式和第二个中肠收缩环的形成最符合dpp诱导几乎整个中肠向通常仅在中肠的副节(ps)7和ps8区域中看到的细胞命运转变的情况。我们得出结论,dpp是维持内脏中胚层中Ubx表达模式的主要信号,这种模式不同于胚胎外胚层中Ubx的表达模式,并且dpp提供了一种细胞间通讯机制,通过该机制Ubx表达影响跨胚层以及内脏中胚层中跨ps7至ps8副节边界的基因表达。

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