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Preferential spreading of RNA silencing into the 3 ' downstream region of the transgene in tobacco

机译:RNA沉默在烟草中转基因3'下游区域的优先传播

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The amplification mechanism of short interfering RNAs (siRNAs) along the transgene sequence exists in RNA interference (RNAi). The RNA-dependent RNA polymerase synthesizes complementary RNAs by using the transgene mRNA as a template, and the secondary siRNAs are generated from the outside of primary RNAi target. Four independent RNAi vectors which produced primary siRNAs against distinct regions of the tobacco endoplasmic reticulum omega-3 fatty acid desaturase gene (NtFAD3) were transiently expressed in leaves of the NtFAD3-overexpressed transgenic plants. Regardless of the RNAi vector used, the secondary NtFAD3 siRNAs were generated preferentially from the 3' downstream region of the transgene. Secondary siRNAs from the 5' upstream region adjacent to the annealing site of primary siRNAs accumulated under the detection level. Our results suggest that different regulatory mechanisms are involved in the spreading of RNA silencing into 5' upstream and 3' downstream regions of the target sequence, respectively.
机译:沿着转基因序列的短干扰RNA(siRNA)的扩增机制存在于RNA干扰(RNAi)中。 RNA依赖性RNA聚合酶通过使用转基因mRNA作为模板来合成互补RNA,并且从主要RNAi靶标的外部生成次要siRNA。四个独立的RNAi载体在烟草内质网omega-3脂肪酸去饱和酶基因(NtFAD3)的不同区域产生了主要的siRNA,它们在NtFAD3过表达的转基因植物的叶片中瞬时表达。无论使用哪种RNAi载体,优先从转基因的3'下游区域生成次要NtFAD3 siRNA。来自邻近于初级siRNA退火位点的5'上游区域的次级siRNA在检测水平下积累。我们的结果表明,不同的调控机制分别涉及RNA沉默在靶序列5'上游和3'下游区域的传播。

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