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额外刚毛基因提供感觉器官模式形成的信息。

The extramacrochaetae gene provides information for sensory organ patterning.

作者信息

Cubas P, Modolell J

机构信息

Centro de Biología Molecular, Consejo Superior de Investigaciones Científicas and Universidad Autónoma de Madrid, Spain.

出版信息

EMBO J. 1992 Sep;11(9):3385-93. doi: 10.1002/j.1460-2075.1992.tb05417.x.

Abstract

The Drosophila adult epidermis displays a stereotyped pattern of bristles and other types of sensory organs (SOs). Its generation requires the proneural achaete (ac) and scute (sc) genes. In the imaginal wing disc, the anlage for most of the thoracic and wing epidermis, their products accumulate in groups of cells, the proneural clusters, whose distribution prefigures the adult pattern of SOs. These proteins then induce the emergence of SO mother cells (SMCs). Here, we show that the extramacrochaetae (emc) gene, an antagonist of the proneural function, is another agent that contributes to SO positioning. In the wing disc, emc is expressed in a complex and evolving pattern. SMCs appear not only within proneural clusters but also within minima of emc expression. When one of these spatial restrictions is eliminated, by ubiquitously expressing ac-sc, SMCs still emerge within minima of emc. When in addition, the other spatial restriction is reduced by decreasing emc expression, many ectopic SMCs emerge in a relatively even spaced and less constant pattern. Thus, the heterogeneous distribution of the emc product is one of the elements that define the positions where SMCs arise. emc probably refines SMC (and SO) positioning by reducing both the size of proneural clusters and the number of cells within clusters that can become SMCs.

摘要

果蝇成虫表皮呈现出刚毛和其他类型感觉器官(SOs)的定型模式。其形成需要原神经achaete(ac)和scute(sc)基因。在成虫翅芽(imaginal wing disc)中,成虫大部分胸部和翅部表皮的原基,它们的产物在细胞群即原神经簇中积累,其分布预示着成虫SOs的模式。这些蛋白质随后诱导感觉器官母细胞(SMCs)的出现。在这里,我们表明原神经功能的拮抗剂extra macrochaetae(emc)基因是另一种有助于SO定位的因子。在翅芽中,emc以复杂且不断演变的模式表达。SMCs不仅出现在原神经簇内,也出现在emc表达的最低点内。当通过泛素表达ac-sc消除这些空间限制之一时,SMCs仍在emc的最低点内出现。此外,当通过降低emc表达减少另一个空间限制时,许多异位SMCs以相对均匀间隔且不太恒定的模式出现。因此,emc产物的异质分布是定义SMCs出现位置的要素之一。emc可能通过减小原神经簇的大小以及簇内可成为SMCs的细胞数量来优化SMCs(和SOs)的定位。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bef2/556873/c09a974ec167/emboj00094-0234-a.jpg

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