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同源异型基因超双胸在果蝇平衡棒发育过程中对背腹信号传导的负调控。

Negative regulation of dorsoventral signaling by the homeotic gene Ultrabithorax during haltere development in Drosophila.

作者信息

Shashidhara L S, Agrawal N, Bajpai R, Bharathi V, Sinha P

机构信息

Centre for Cellular and Molecular Biology, Uppal Road, Hyderabad, 500 007, India. shashiccmb.ap.nic.in

出版信息

Dev Biol. 1999 Aug 15;212(2):491-502. doi: 10.1006/dbio.1999.9341.

Abstract

Growth and patterning during Drosophila wing development are mediated by signaling from its dorsoventral (D/V) organizer. In the metathorax, wing development is essentially suppressed by the homeotic selector gene Ultrabithorax (Ubx) to mediate development of a pair of tiny balancing organs, the halteres. Here we show that expression of Ubx in the haltere D/V boundary down-regulates its D/V organizer signaling compared to that of the wing D/V boundary. Somatic loss of Ubx from the haltere D/V boundary thus results in the formation of a wing-type D/V organizer in the haltere field. Long-distance signaling from this organizer was analyzed by assaying the ability of a Ubx(-) clone induced in the haltere D/V boundary to effect homeotic transformation of capitellum cells away from the boundary. The clonally restored wing D/V organizer in mosaic halteres not only enhanced the homeotic transformation of Ubx(-) cells in the capitellum but also caused homeotic transformation of even Ubx(+) cells in a genetic background known to induce excessive cell proliferation in the imaginal discs. In addition to demonstrating a non-cell-autonomous role for Ubx during haltere development, these results reveal distinct spatial roles of Ubx during maintenance of cell fate and patterning in the halteres.

摘要

果蝇翅膀发育过程中的生长和模式形成是由其背腹(D/V)组织者发出的信号介导的。在中胸,翅膀发育基本上被同源异型选择基因超双胸(Ubx)抑制,以介导一对微小的平衡器官——平衡棒的发育。在这里,我们表明,与翅膀D/V边界相比,Ubx在平衡棒D/V边界的表达下调了其D/V组织者信号。因此,从平衡棒D/V边界体细胞性缺失Ubx会导致在平衡棒区域形成翅膀型D/V组织者。通过检测在平衡棒D/V边界诱导的Ubx(-)克隆影响远离边界的小盾片细胞同源异型转化的能力,分析了来自该组织者的长距离信号。镶嵌平衡棒中克隆恢复的翅膀D/V组织者不仅增强了小盾片中Ubx(-)细胞的同源异型转化,而且在已知会诱导成虫盘过度细胞增殖的遗传背景下,甚至导致Ubx(+)细胞的同源异型转化。除了证明Ubx在平衡棒发育过程中的非细胞自主作用外,这些结果还揭示了Ubx在维持平衡棒细胞命运和模式形成过程中的不同空间作用。

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