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首页> 外文期刊>PLoS Pathogens >Transposon-mediated Chromosomal Integration of Transgenes in the Parasitic Nematode Strongyloides ratti and Establishment of Stable Transgenic Lines
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Transposon-mediated Chromosomal Integration of Transgenes in the Parasitic Nematode Strongyloides ratti and Establishment of Stable Transgenic Lines

机译:转座子介导的寄生线虫Strandyloides ratti转基因的染色体整合和稳定的转基因株系的建立。

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Genetic transformation is a potential tool for analyzing gene function and thereby identifying new drug and vaccine targets in parasitic nematodes, which adversely affect more than one billion people. We have previously developed a robust system for transgenesis in Strongyloides spp. using gonadal microinjection for gene transfer. In this system, transgenes are expressed in promoter-regulated fashion in the F1 but are silenced in subsequent generations, presumably because of their location in repetitive episomal arrays. To counteract this silencing, we explored transposon-mediated chromosomal integration of transgenes in S. ratti. To this end, we constructed a donor vector encoding green fluorescent protein (GFP) under the control of the Ss-act-2 promoter with flanking inverted tandem repeats specific for the piggyBac transposon. In three experiments, free-living Strongyloides ratti females were transformed with this donor vector and a helper plasmid encoding the piggyBac transposase. A mean of 7.9% of F1 larvae were GFP-positive. We inoculated rats with GFP-positive F1 infective larvae, and 0.5% of 6014 F2 individuals resulting from this host passage were GFP-positive. We cultured GFP-positive F2 individuals to produce GFP-positive F3 L3i for additional rounds of host and culture passage. Mean GFP expression frequencies in subsequent generations were 15.6% in the F3, 99.0% in the F4, 82.4% in the F5 and 98.7% in the F6. The resulting transgenic lines now have virtually uniform GFP expression among all progeny after at least 10 generations of passage. Chromosomal integration of the reporter transgenes was confirmed by Southern blotting and splinkerette PCR, which revealed the transgene flanked by S. ratti genomic sequences corresponding to five discrete integration sites. BLAST searches of flanking sequences against the S. ratti genome revealed integrations in five contigs. This result provides the basis for two powerful functional genomic tools in S. ratti: heritable transgenesis and insertional mutagenesis.
机译:遗传转化是分析基因功能,从而确定寄生线虫中新药和疫苗靶标的潜在工具,该方法会对十亿多人造成不利影响。我们以前已经开发出了一个强大的系统,用于在拟杆菌属(Strongyloides spp)中进行转基因。使用性腺显微注射进行基因转移。在该系统中,转基因在F1中以启动子调控的方式表达,但在随后的世代中沉默,大概是因为它们位于重复的游离阵列中。为了抵消这种沉默,我们探索了转座子介导的转座子介导的染色体整合。为此,我们构建了在Ss-act-2启动子控制下编码带有piggyBac转座子侧翼反向串联重复序列的绿色荧光蛋白(GFP)的供体载体。在三个实验中,用该供体载体和编码piggyBac转座酶的辅助质粒转化了雌雄同体的雌性拟南芥。 F1幼虫的平均7.9%为GFP阳性。我们给大鼠接种了GFP阳性的F1感染性幼虫,由该宿主传代产生的6014 F2个体中有0.5%是GFP阳性的。我们培养了GFP阳性F2个体,以产生GFP阳性F3 L3i,用于宿主和培养传代的其他轮次。后续世代的平均GFP表达频率在F3中为15.6%,在F4中为99.0%,在F5中为82.4%,在F6中为98.7%。经过至少十代传代后,所得的转基因品系现在在所有子代中实际上具有均一的GFP表达。通过Southern印迹和splinkerette PCR证实了报告子转基因的染色体整合,其揭示了该转基因的侧翼是对应于五个离散整合位点的鼠链霉菌基因组序列。 BLAST搜索针对鼠链球菌基因组的侧翼序列揭示了在五个重叠群中的整合。该结果为S.ratti中两个强大的功能基因组学工具提供了基础:可遗传转基因和插入诱变。

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