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首页> 外文期刊>Scientific reports. >Indel locations are determined by template polarity in highly efficient in vivo CRISPR/Cas9-mediated HDR in Atlantic salmon
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Indel locations are determined by template polarity in highly efficient in vivo CRISPR/Cas9-mediated HDR in Atlantic salmon

机译:indel位置由模板极性在大型鲑鱼的体内克里普尔/ Cas9介导的HDR中高效地确定

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摘要

Precise gene editing such as CRISPR/Cas9-mediated homology directed repair (HDR) can increase our understanding of gene function and improve traits of importance for aquaculture. This fine-tuned technology has not been developed for farmed fish including Atlantic salmon. We performed knock-in (KI) of a FLAG element in the slc45a2 gene in salmon using sense (S), anti-sense (AS) and double-stranded (ds) oligodeoxynucleotide (ODN) templates with short (24/48/84?bp) homology arms. We show in vivo ODN integration in almost all the gene edited animals, and demonstrate perfect HDR rates up to 27% in individual F0 embryos, much higher than reported previously in any fish. HDR efficiency was dependent on template concentration, but not homology arm length. Analysis of imperfect HDR variants suggest that repair occurs by synthesis-dependent strand annealing (SDSA), as we show for the first time in any species that indel location is dependent on template polarity. Correct ODN polarity can be used to avoid 5'-indels interrupting the reading frame of an inserted sequence and be of importance for HDR template design in general.
机译:精确的基因编辑如Crispr / Cas9介导的同源定向修复(HDR)可以增加我们对基因功能的理解,并改善水产养殖的重要性。这种微调技术尚未为包括大西洋鲑鱼的养殖鱼开发。我们使用短语(24/48/84)的鲑鱼中的SLC45A2基因中SLC45A2基因中SLC45A2基因中的标志元素的敲入(KI)的标志元素的敲入(ki)。(24/48/84,odn)模板?BP)同源臂。我们在几乎所有基因编辑的动物中展示了体内ODN集成,并证明了单个F0胚胎的完美HDR率高达27%,远高于以前在任何鱼中报道的。 HDR效率依赖于模板浓度,但不是同源臂长度。不完美HDR变体的分析表明,通过合成依赖的链退火(SDSA)进行修复,因为我们在indel位置依赖于模板极性的任何物种中首次表现出来。正确的ODN极性可用于避免5'-indel中断插入序列的读取框架,并且通常是HDR模板设计的重要性。

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