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A transgenic embryonic sexing system for the Australian sheep blow fly Lucilia cuprina

机译:澳大利亚绵羊吹蝇Lucilia cuprina的转基因胚胎性别鉴定系统

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摘要

Genetic approaches, including the sterile insect technique (SIT), have previously been considered for control of the Australian sheep blow fly Lucilia cuprina, a major pest of sheep. In an SIT program, females consume 50% of the diet but are ineffective as control agents and compete with females in the field for mating with sterile males, thereby decreasing the efficiency of the program. Consequently, transgenic sexing strains of L. cuprina were developed that produce 100% males when raised on diet that lacks tetracycline. However, as females die mostly at the pupal stage, rearing costs would not be significantly reduced. Here we report the development of transgenic embryonic sexing strains of L. cuprina. In these strains, the Lsbnk cellularization gene promoter drives high levels of expression of the tetracycline transactivator (tTA) in the early embryo. In the absence of tetracycline, tTA activates expression of the Lshid proapoptotic gene, leading to death of the embryo. Sex-specific RNA splicing of Lshid transcripts ensures that only female embryos die. Embryonic sexing strains were also made by combining the Lsbnk-tTA and tetO-Lshid components into a single gene construct, which will facilitate transfer of the technology to other major calliphorid livestock pests.
机译:以前曾考虑采用遗传方法,包括不育昆虫技术(SIT)来控制澳大利亚绵羊吹蝇Lucilia cuprina,这是绵羊的主要害虫。在SIT计划中,雌性会消耗50%的饮食,但不能作为控制剂,并且在野外与雌性竞争与不育雄性交配,从而降低了计划的效率。因此,开发了L. cuprina的转基因性菌株,以缺乏四环素的饮食饲养时可产生100%的雄性。但是,由于雌性多数在the期死亡,因此饲养成本不会显着降低。在这里,我们报告了L. cuprina转基因胚胎性别鉴定菌株的发展。在这些菌株中,Lsbnk细胞化基因启动子驱动早期胚胎中四环素反式激活因子(tTA)的高水平表达。在没有四环素的情况下,tTA激活Lshid促凋亡基因的表达,导致胚胎死亡。 Lshid转录本的性别特异性RNA剪接确保只有雌性胚胎死亡。还通过将Lsbnk-tTA和tetO-Lshid成分组合到单个基因构建体中来制备胚胎性别鉴定菌株,这将有助于将该技术转移到其他主要的书法家畜害虫上。

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