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首页> 外文期刊>Development >pannier acts upstream of wingless to direct dorsal eye disc development in Drosophila.
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pannier acts upstream of wingless to direct dorsal eye disc development in Drosophila.

机译:在无翅的上游起作用,以指导果蝇的背侧眼球发育。

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摘要

The dorsoventral midline of the Drosophila eye disc is a source of signals that stimulate growth of the eye disc, define the point at which differentiation initiates, and direct ommatidial rotation in opposite directions in the two halves of the eye disc. This boundary region seems to be established by the genes of the iroquois complex, which are expressed in the dorsal half of the disc and inhibit fringe expression there. Fringe controls the activation of Notch and the expression of its ligands, with the result that Notch is activated only at the fringe expression boundary at the midline. The secreted protein Wingless activates the dorsal expression of the iroquois genes. We show here that pannier, which encodes a GATA family transcription factor expressed at the dorsal margin of the eye disc from embryonic stages on, acts upstream of wingless to control mirror and fringe expression and establish the dorsoventral boundary. Loss of pannier function leads to the formation of an ectopic eye field and the reorganization of ommatidial polarity, and ubiquitous pannier expression can abolish the eye field. Pannier is thus the most upstream element yet described in dorsoventral patterning of the eye disc.
机译:果蝇眼盘的背腹中线是刺激眼盘生长,定义开始分化的点以及在两半盘中以相反的方向引导盘旋旋转的信号源。这个边界区域似乎是由易洛魁复合物的基因建立的,该基因在椎间盘的背半部表达并抑制那里的条纹表达。边缘控制Notch的激活及其配体的表达,结果是Notch仅在中线的边缘表达边界处被激活。分泌的蛋白质Wingless激活易洛魁人基因的背面表达。我们在这里显示,pan编码从胚胎阶段开始在眼盘背缘表达的GATA家族转录因子,在无翅的上游起作用,以控制镜和边缘表达并建立背腹边界。 pan功能的丧失导致异位眼场的形成和母线极性的重组,并且普遍存在的pan表达可以消除眼场。因此,Panier是眼球背腹图案中所描述的最上游的元素。

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