首页> 美国卫生研究院文献>PLoS Clinical Trials >Fitness Cost Implications of PhiC31-Mediated Site-Specific Integrations in Target-Site Strains of the Mexican Fruit Fly, Anastrepha ludens (Diptera: Tephritidae)
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Fitness Cost Implications of PhiC31-Mediated Site-Specific Integrations in Target-Site Strains of the Mexican Fruit Fly, Anastrepha ludens (Diptera: Tephritidae)

机译:墨西哥果蝇Anastrepha ludens(Diptera:Tephritidae)的靶位菌株中PhiC31介导的特定于站点的整合的适应性成本影响。

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摘要

Site-specific recombination technologies are powerful new tools for the manipulation of genomic DNA in insects that can improve transgenesis strategies such as targeting transgene insertions, allowing transgene cassette exchange and DNA mobilization for transgene stabilization. However, understanding the fitness cost implications of these manipulations for transgenic strain applications is critical. In this study independent piggyBac-mediated attP target-sites marked with DsRed were created in several genomic positions in the Mexican fruit fly, Anastrepha ludens. Two of these strains, one having an autosomal (attP_F7) and the other a Y-linked (attP_2-M6y) integration, exhibited fitness parameters (dynamic demography and sexual competitiveness) similar to wild type flies. These strains were thus selected for targeted insertion using, for the first time in mexfly, the phiC31-integrase recombination system to insert an additional EGFP-marked transgene to determine its effect on host strain fitness. Fitness tests showed that the integration event in the int_2-M6y recombinant strain had no significant effect, while the int_F7 recombinant strain exhibited significantly lower fitness relative to the original attP_F7 target-site host strain. These results indicate that while targeted transgene integrations can be achieved without an additional fitness cost, at some genomic positions insertion of additional DNA into a previously integrated transgene can have a significant negative effect. Thus, for targeted transgene insertions fitness costs must be evaluated both previous to and subsequent to new site-specific insertions in the target-site strain.
机译:定点重组技术是用于操纵昆虫基因组DNA的强大新工具,可以改善转基因策略,例如靶向转基因插入,允许转基因盒交换和DNA动员以稳定转基因。但是,了解这些操作对转基因菌株应用的适应性成本影响至关重要。在这项研究中,在墨西哥果蝇Anastrepha ludens的几个基因组位置上创建了带有DsRed标记的独立的piggyBac介导的attP目标位点。这些菌株中的两个,一个具有常染色体(attP_F7)整合型,另一个具有Y连锁(attP_2-M6y)整合型,与野生型苍蝇具有相似的适应性参数(动态人口统计学和性竞争)。因此,首次在mexfly中使用phiC31-整合酶重组系统选择这些菌株进行靶向插入,以插入其他EGFP标记的转基因,以确定其对宿主菌株适应性的影响。适应性测试表明int_2-M6y重组菌株中的整合事件没有显着影响,而int_F7重组菌株相对于原始的attP_F7目标位点宿主菌株显示出明显较低的适应性。这些结果表明,尽管无需额外的适应性费用即可实现靶向转基因整合,但在某些基因组位置,将额外的DNA插入先前整合的转基因中可能会产生重大的负面影响。因此,对于靶向转基因插入,必须在靶位点菌株中新的位点特异性插入之前和之后评估适应性成本。

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