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首页> 外文期刊>FEBS letters. >The mechanism of graft transmission of sense and antisense gene silencing in tomato plants.
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The mechanism of graft transmission of sense and antisense gene silencing in tomato plants.

机译:番茄植株有义和反义基因沉默的嫁接传播机制。

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We investigated the effect of target mRNA level on grafting-transmitted gene silencing in tomato plants by using a strong ACC oxidase 1 (ACO1) silencer as the stock and transgenic ACO1 overexpressers as scions. Manifestation of graft transmission of sense gene silencing required a high initial level of target mRNA in the scion. A relatively high level of siRNA, similar to that in the strong ACO1 silencer, was also detected in the silencing-susceptible strong ACO1 overexpressers prior to grafting. After grafting the silencing signal from the stock enhanced the level of the siRNAs in the scion and the ACO1 mRNA level was reduced dramatically. Using stock and scions producing different siRNAs we provided evidence that the transmissible silencing signal does not correspond to the bulk siRNAs in the stock. We also showed, contrary to a previous report, that antisense silencing was graft-transmissible but it took longer to manifest itself. The delay in graft transmission from antisense-silenced plants could be attributed to the difference in the nature or strength of the signal or the mechanism of its amplification, but is further evidence of mechanistic similarities between sense and antisense silencing.
机译:我们通过使用强ACC氧化酶1(ACO1)沉默子作为原种和转基因ACO1过表达子体作为接穗,研究了目标mRNA水平对番茄植株传播基因沉默的影响。表现有义基因沉默的移植物传递需要接穗中高水平的靶mRNA。在移植前,在沉默易感的强ACO1过表达子中也检测到相对较高水平的siRNA,与强ACO1沉默子相似。嫁接后,来自种群的沉默信号增强了接穗中siRNA的水平,而ACO1 mRNA的水平则大大降低。使用产生不同siRNA的原种和接穗,我们提供了证据,表明可传播的沉默信号与原种中的大量siRNA不对应。与先前的报告相反,我们还表明,反义沉默是可移植的,但表达时间更长。来自反义沉默植物的移植物传递的延迟可以归因于信号的性质或强度或其放大机制的差异,但进一步证明了有义和反义沉默之间的机制相似性。

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