首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Identification through fine mapping and verification using CRISPR/Cas9-targeted mutagenesis for a minor QTL controlling grain weight in rice
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Identification through fine mapping and verification using CRISPR/Cas9-targeted mutagenesis for a minor QTL controlling grain weight in rice

机译:通过使用CRISPR / CAS9靶向诱变进行微量映射和验证识别米饭中的小QTL控制粒度的次要QTL

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Key message A minor QTL for grain weight in rice,qTGW1.2b, was fine-mapped. Its casual geneOsVQ4was confirmed through CRISPR/Cas9-targeted mutagenesis, exhibiting an effect that was larger than the original QTL effect. The CRISPR/Cas system exhibits a great potential for rice improvement, but the application was severely hindered due to insufficient target genes, especial the lack of validated genes underlying quantitative trait loci having small effects. In this study, a minor QTL for grain weight,qTGW1.2b, was fine-mapped into a 44.0 kb region using seven sets of near isogenic lines (NILs) developed from theindicarice cross (Zhenshan 97)(3)/Milyang 46, followed by validation of the causal gene using CRISPR/Cas9-targeted mutagenesis. In the NIL populations, 1000-grain weight of the Zhenshan 97 homozygous lines decreased by 0.9-2.0% compared with the Milyang 46 homozygous lines. A gene encoding VQ-motif protein,OsVQ4, was identified as the candidate gene based on parental sequence differences. The effect ofOsVQ4was confirmed by creating CRISPR/Cas9 knockout lines, whose 1000-grain weight decreased by 2.8-9.8% compared with the wild-type transgenic line and the recipient. These results indicate that applying genome editing system could create novel alleles with large phenotypic variation at minor QTLs, which is an effective way to validate causal genes of minor QTLs. Our study establishes a strategy for cloning minor QTLs, which could also be used to identify a large number of potential target genes for the application of CRISPR/Cas system.
机译:关键信息:水稻粒重的一个小QTL,qTGW1。2b,绘制得很好。通过CRISPR/Cas9靶向突变证实了其偶然基因OSVq4,其效应大于原始QTL效应。CRISPR/Cas系统在水稻改良方面表现出巨大的潜力,但由于目标基因不足,尤其是缺乏有效的数量性状基因座,其应用受到严重阻碍。在本研究中,一个与粒重相关的小QTL qTGW1。2b,通过七组近等基因系(NILs)精细定位到44.0 kb区域,这些近等基因系是从印度杂交种(珍山97)(3)/Milyang 46发展而来的,随后通过CRISPR/Cas9靶向突变验证了致病基因。在NIL群体中,珍汕97纯合系的千粒重比泌阳46纯合系下降了0.9-2.0%。根据亲本序列差异,一个编码VQ基序蛋白的基因OsVQ4被确定为候选基因。通过创建CRISPR/Cas9基因敲除系证实了OsVq4的效果,与野生型转基因系和受体相比,其千粒重降低了2.8-9.8%。这些结果表明,应用基因组编辑系统可以在小qtl上产生具有较大表型变异的新等位基因,这是验证小qtl因果基因的有效方法。我们的研究建立了一个克隆次要QTL的策略,该策略还可以用于识别大量潜在的目标基因,为CRISPR/Cas系统的应用奠定基础。

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