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Non-transgenic genome modifications in a hemimetabolous insect using zinc-finger and TAL effector nucleases

机译:使用锌指和TAL效应子核酸酶的半代谢昆虫中的非转基因基因组修饰

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摘要

Hemimetabolous, or incompletely metamorphosing, insects are phylogenetically relatively basal and comprise many pests. However, the absence of a sophisticated genetic model system, or targeted gene-manipulation system, has limited research on hemimetabolous species. Here we use zinc-finger nuclease and transcription activator-like effector nuclease technologies to produce genetic knockouts in the hemimetabolous insect Gryllus bimaculatus. Following the microinjection of mRNAs encoding zinc-finger nucleases or transcription activator-like effector nucleases into cricket embryos, targeting of a transgene or endogenous gene results in sequence-specific mutations. Up to 48% of founder animals transmit disrupted gene alleles after zinc-finger nucleases microinjection compared with 17% after microinjection of transcription activator-like effector nucleases. Heterozygous offspring is selected using mutation detection assays that use a Surveyor (Cel-I) nuclease, and subsequent sibling crosses create homozygous knockout crickets. This approach is independent from a mutant phenotype or the genetic tractability of the organism of interest and can potentially be applied to manage insect pests using a non-transgenic strategy.
机译:半代谢的或不完全变态的昆虫在系统发育上是相对基础的,并且包含许多害虫。然而,缺乏复杂的遗传模型系统或靶向基因操纵系统,限制了半代谢物种的研究。在这里,我们使用锌指核酸酶和转录激活因子样效应子核酸酶技术在半代谢昆虫昆虫格里乌斯bimaculatus中产生基因敲除。在将编码锌指核酸酶或转录激活因子样效应核酸酶的mRNA微注射到cket胚中后,靶向转基因或内源基因会导致序列特异性突变。锌指核酸酶显微注射后,多达48%的始祖动物传播破坏的基因等位基因,而显微注射转录激活因子样效应子核酸酶后,则高达17%。杂合子代通过使用Surveyor(Cel-1)核酸酶的突变检测方法进行选择,随后的同胞杂交产生纯合的敲除。这种方法独立于感兴趣的生物的突变表型或遗传易处理性,并且可以潜在地用于使用非转基因策略来管理害虫。

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