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Strategy for enhanced transgenic strain development for embryonic conditional lethality in Anastrepha suspensa

机译:增强转基因菌株发育的战略性杀伤力

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Here the first reproductive sterility system for the tephritid fruit fly pest, Anastrepha suspensa, is presented, based on lethality primarily limited to embryos heterozygous for a conditional lethal transgene combination. This tetracycline (Tet)-suppressible system uses a driver construct having the promoter from the newly isolated embryo-specific A. suspensa serendipity a gene linked to the Tet-transactivator. This was used to drive expression of a phospho-mutated variant of the pro-apoptotic cell death gene, hid, from A. ludens, that was isolated, based on its identity to A. suspensa hid. The Alhid~(Ala2) variant was shown to have the highest cell death activity in an in vitro A. suspensa cell death assay compared to the orthologous genes Ashid, Dmhid, and the variant Dmhid~(Alil5). These cell death assays also allowed a determination of the most-efficient driver-effector cassette combinations for use in A. suspensa trans-formants, resulting in two hybrid strains exhibiting 100% lethality. One strain was 96% lethal in embryos in the absence of tetracycline, with none surviving past the first larval instar, which is critical for pests that are most damaging in late-larval stages. We demonstrate that the isolation and in vitro validation of species-specific promoters and lethal effector genes can greatly improve the efficiency of creating high-performance conditional lethality strains that may be extended to other insect pest species.
机译:在此,基于主要针对有条件致死转基因组合的杂合性的致死率,提出了第一种对实蝇属实蝇害虫阿纳斯特法·苏斯彭萨(Anastrepha suspensa)的生殖系统。该四环素(Tet)可抑制系统使用一种驱动程序构建体,该驱动程序构建体具有来自新分离的胚胎特异性悬铃木偶然性的启动子,该基因与Tet反式激活因子相连。基于其与悬链假单胞菌hid的同一性,将其用于驱动促凋亡的细胞死亡基因hid的磷酸突变变体hid的表达,该基因是从卢氏假单胞菌分离的。与体外同源基因Ashid,Dmhid和变体Dmhid_(Alil5)相比,Alhid_(Ala2)变体在体外悬念曲霉细胞死亡试验中具有最高的细胞死亡活性。这些细胞死亡试验还可以确定用于悬链曲霉转化子的最有效的驱动子-效应子盒组合,从而导致两种杂种菌株显示出100%的致死率。在没有四环素的情况下,一个菌株在胚胎中具有96%的致死性,没有一个存活到幼虫龄后,这对于在后期幼虫阶段最具破坏性的害虫至关重要。我们证明了物种特异性启动子和致死效应基因的分离和体外验证可以极大地提高创建高性能条件致死菌株的效率,该菌株可以扩展到其他害虫物种。

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