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Simple gene silencing using the trans-acting siRNA pathway

机译:使用反式作用siRNa途径进行简单的基因沉默

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摘要

In plants, particular micro-RNAs (miRNAs) induce the production of a class of small interfering RNAs (siRNA) called trans-acting siRNA (ta-siRNA) that lead to gene silencing. A single miRNA target is sufficient for the production of ta-siRNAs, which target can be incorporated into a vector to induce the production of siRNAs, and ultimately gene silencing. The term miRNAinduced gene silencing (MIGS) has been used to describe such vector systems in Arabidopsis. Several ta-siRNA loci have been identified in soybean, but, prior to this work, few of the inducing miRNAs have been experimentally validated, much less used to silence genes. Nine ta-siRNA loci and their respective miRNA targets were identified, and the abundance of the inducing miRNAs varies dramatically in different tissues. The miRNA targets were experimentally verified by silencing a transgenic GFP gene and two endogenous genes in hairy roots and transgenic plants. Small RNAs were produced in patterns consistent with the utilization of the ta-siRNA pathway. A side-by-side experiment demonstrated that MIGS is as effective at inducing gene silencing as traditional hairpin vectors in soybean hairy roots. Soybean plants transformed with MIGS vectors produced siRNAs and silencing was observed in the T1 generation. These results complement previous reports in Arabidopsis by demonstrating that MIGS is an efficient way to produce siRNAs and induce gene silencing in other species, as shown with soybean. The miRNA targets identified here are simple to incorporate into silencing vectors and offer an effective and efficient alternative to other gene silencing strategies.
机译:在植物中,特定的微小RNA(miRNA)诱导产生一类称为反作用siRNA(ta-siRNA)的小干扰RNA(siRNA),从而导致基因沉默。单个miRNA靶标足以产生ta-siRNA,可将其掺入载体中以诱导siRNA的产生,并最终实现基因沉默。术语miRNA诱导的基因沉默(MIGS)已用于描述拟南芥中的此类载体系统。在大豆中已经鉴定出几个ta-siRNA基因座,但是在进行这项工作之前,很少有诱导性miRNA经过实验验证,而很少用于沉默基因。鉴定了九个ta-siRNA基因座及其各自的miRNA靶标,并且诱导miRNA的丰度在不同组织中差异很大。通过沉默毛根和转基因植物中的转基因GFP基因和两个内源性基因,实验验证了miRNA靶标。小RNA以与ta-siRNA途径的利用一致的模式产生。一项并行实验表明,MIGS与传统大豆发根中的发夹载体一样有效地诱导基因沉默。用MIGS载体转化的大豆植物产生siRNA,在T1代中观察到沉默。这些结果证明了MIGS是产生siRNA并诱导其他物种中的基因沉默的有效方法,从而对拟南芥的先前报道进行了补充,如大豆所示。此处确定的miRNA靶标易于整合到沉默载体中,并提供了其他基因沉默策略的有效替代方案。

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