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在果蝇眼睛发育过程中需要Rab11。

Rab11 is required during Drosophila eye development.

作者信息

Alone Debasmita P, Tiwari Anand K, Mandal Lolitika, Li Mingfa, Mechler Bernard M, Roy Jagat K

机构信息

Cytogenetics Laboratory, Department of Zoology, Banaras Hindu University, Varanasi, India.

出版信息

Int J Dev Biol. 2005;49(7):873-9. doi: 10.1387/ijdb.051986da.

Abstract

In an effort to identify the role of Rab11, a small GTP binding protein, during Drosophila differentiation, phenotypic manifestations associated with different alleles of Rab11 were studied. The phenotypes ranged from eye-defects, bristle abnormalities and sterility to lethality during various developmental stages. In this paper, our focus is targeted on eye defects caused by Rab11 mutations. A novel P-element insertion in the Rab11 locus, Rab11mo, displayed characteristic retinal anomalies, which could be reverted by P-element excision and expression of Rab11+ transgenes. During larval development, Rab11 is widely synthesized in photoreceptor cells and localizes to the rhabdomeres and lamina neuropil in adult eyes. Photoreceptors and associated bristles failed to be formed in homozygous clones generated in Rab11EP(3)3017 eyes. Decreased levels of Rab11 protein and increased cell death in Rab11mo third-instar larval eye-antennal discs suggest that the retinal defects originate during larval development. Our data indicate a requirement for Rab11 in ommatidial differentiation during Drosophila eye development.

摘要

为了确定小GTP结合蛋白Rab11在果蝇分化过程中的作用,研究了与Rab11不同等位基因相关的表型表现。这些表型从眼睛缺陷、刚毛异常、不育到不同发育阶段的致死性不等。在本文中,我们重点关注由Rab11突变引起的眼睛缺陷。Rab11基因座中的一个新的P元素插入突变体Rab11mo表现出特征性的视网膜异常,这种异常可通过P元素切除和Rab11 +转基因的表达得以恢复。在幼虫发育过程中,Rab11在光感受器细胞中广泛合成,并定位于成虫眼睛的视杆和板层神经毡。在Rab11EP(3)3017眼睛中产生的纯合克隆中,光感受器和相关刚毛未能形成。Rab11mo三龄幼虫眼触角盘中Rab11蛋白水平降低和细胞死亡增加,表明视网膜缺陷起源于幼虫发育阶段。我们的数据表明,在果蝇眼睛发育过程中,Rab11对小眼分化是必需的。

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