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Host-Derived Artificial MicroRNA as an Alternative Method to Improve Soybean Resistance to Soybean Cyst Nematode

机译:宿主衍生的人工MicroRNA作为提高大豆对大豆囊肿线虫抗性的替代方法

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The soybean cyst nematode (SCN), Heterodera glycines , is one of the most important pests limiting soybean production worldwide. Novel approaches to managing this pest have focused on gene silencing of target nematode sequences using RNA interference (RNAi). With the discovery of endogenous microRNAs as a mode of gene regulation in plants, artificial microRNA (amiRNA) methods have become an alternative method for gene silencing, with the advantage that they can lead to more specific silencing of target genes than traditional RNAi vectors. To explore the application of amiRNAs for improving soybean resistance to SCN, three nematode genes (designated as J15 , J20 , and J23 ) were targeted using amiRNA vectors. The transgenic soybean hairy roots, transformed independently with these three amiRNA vectors, showed significant reductions in SCN population densities in bioassays. Expression of the targeted genes within SCN eggs were downregulated in populations feeding on transgenic hairy roots. Our results provide evidence that host-derived amiRNA methods have great potential to improve soybean resistance to SCN. This approach should also limit undesirable phenotypes associated with off-target effects, which is an important consideration for commercialization of transgenic crops.
机译:大豆孢囊线虫(SCN),异戊二烯甘氨酸,是限制全世界大豆生产的最重要害虫之一。处理这种害虫的新方法集中在使用RNA干扰(RNAi)的靶线虫序列的基因沉默上。随着发现内源性microRNA作为植物基因调控的一种方式,人工microRNA(amiRNA)方法已成为基因沉默的另一种方法,其优点是与传统的RNAi载体相比,它们可以导致靶基因更特异性的沉默。为了探索amiRNA在提高大豆对SCN抗性中的应用,使用amiRNA载体靶向了三个线虫基因(分别命名为J15,J20和J23)。用这三种amiRNA载体独立转化的转基因大豆毛状根在生物测定中显示SCN种群密度显着降低。在以转基因有毛根为食的种群中,SCN卵中靶基因的表达被下调。我们的结果提供了证据,证明宿主来源的amiRNA方法具有极大的潜力来改善大豆对SCN的抗性。这种方法还应限制与脱靶效应相关的不良表型,这是转基因作物商业化的重要考虑因素。

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