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转化器基因在食尸蝇科的 Cochliomyia hominivorax、Cochliomyia macellaria 和 Lucilia sericata 中的保守性和性别特异性剪接。

Conservation and sex-specific splicing of the transformer gene in the calliphorids Cochliomyia hominivorax, Cochliomyia macellaria and Lucilia sericata.

机构信息

Department of Genetics, North Carolina State University, Raleigh, North Carolina, United States of America.

出版信息

PLoS One. 2013;8(2):e56303. doi: 10.1371/journal.pone.0056303. Epub 2013 Feb 7.

Abstract

Transformer (TRA) promotes female development in several dipteran species including the Australian sheep blowfly Lucilia cuprina, the Mediterranean fruit fly, housefly and Drosophila melanogaster. tra transcripts are sex-specifically spliced such that only the female form encodes full length functional protein. The presence of six predicted TRA/TRA2 binding sites in the sex-specific female intron of the L. cuprina gene suggested that tra splicing is auto-regulated as in medfly and housefly. With the aim of identifying conserved motifs that may play a role in tra sex-specific splicing, here we have isolated and characterized the tra gene from three additional blowfly species, L. sericata, Cochliomyia hominivorax and C. macellaria. The blowfly adult male and female transcripts differ in the choice of splice donor site in the first intron, with males using a site downstream of the site used in females. The tra genes all contain a single TRA/TRA2 site in the male exon and a cluster of four to five sites in the male intron. However, overall the sex-specific intron sequences are poorly conserved in closely related blowflies. The most conserved regions are around the exon/intron junctions, the 3' end of the intron and near the cluster of TRA/TRA2 sites. We propose a model for sex specific regulation of tra splicing that incorporates the conserved features identified in this study. In L. sericata embryos, the male tra transcript was first detected at around the time of cellular blastoderm formation. RNAi experiments showed that tra is required for female development in L. sericata and C. macellaria. The isolation of the tra gene from the New World screwworm fly C. hominivorax, a major livestock pest, will facilitate the development of a "male-only" strain for genetic control programs.

摘要

转座因子(TRA)在包括澳大利亚绵羊蕈蝇 Lucilia cuprina、地中海实蝇、家蝇和黑腹果蝇在内的几种双翅目物种中促进雌性发育。tra 转录物是性别特异性剪接的,只有雌性形式编码全长功能蛋白。L. cuprina 基因的性别特异性雌性内含子中存在六个预测的 TRA/TR2 结合位点,表明 tra 剪接与 Medfly 和家蝇一样是自动调节的。为了鉴定可能在 tra 性别特异性剪接中发挥作用的保守基序,我们从另外三种蕈蝇物种 L. sericata、Cochliomyia hominivorax 和 C. macellaria 中分离和表征了 tra 基因。蕈蝇成年雄性和雌性转录物在第一内含子的剪接供体位点选择上存在差异,雄性使用雌性使用位点下游的位点。tra 基因在雄性外显子中都含有一个 TRA/TR2 位点,在雄性内含子中含有一个 4 到 5 个位点的簇。然而,在密切相关的蕈蝇中,性别特异性内含子序列总体上保守性较差。最保守的区域是在外显子/内含子交界处、内含子的 3' 末端和靠近 TRA/TR2 位点簇附近。我们提出了一个模型,用于 tra 剪接的性别特异性调节,该模型纳入了本研究中鉴定的保守特征。在 L. sericata 胚胎中,雄性 tra 转录物最早在细胞胚盘形成时检测到。RNAi 实验表明,tra 在 L. sericata 和 C. macellaria 中是雌性发育所必需的。新世界螺旋蝇 C. hominivorax 的 tra 基因的分离,该蝇是一种主要的家畜害虫,将有助于为遗传控制计划开发“仅雄性”菌株。

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