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首页> 外文期刊>Plant biology >Gene Stability in Transgenic Aspen-Populus-III. T-DNA Repeats Influence Transgene Expression Differentially among Different Transgenic Lines
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Gene Stability in Transgenic Aspen-Populus-III. T-DNA Repeats Influence Transgene Expression Differentially among Different Transgenic Lines

机译:转基因白杨-杨-III中的基因稳定性。 T-DNA重复在不同转基因品系中对转基因表达的影响不同

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Transgene silencing mechanisms have been confirmed in many crop plants, however, few reports are currently available for long-lived tree species. Three transgenic aspen lines carrying the roIC gene of Agrobacterium rhizogenes, under control of the 35S promoter of the cauliflower mosaic virus, but showing very different types of reversion from roIC-phenotype to wild type are investigated in detail. A complete suppression of roIC phenotype was observed after one year of in vitro culturing in one transgenic line, whereas the second transgenic line showed gradual decrease in roIC expression, and the plants were comparable to control plants after three to four years in the greenhouse. In the third transgenic line, however, transgene inactivation was observed only in some shoots of the green-house-grown plants which reverted to the roIC phenotype in subsequent years. Southern blotting experiments using a roIC probe revealed the integration of one or two tandem copies of the foreign genes into the host genome. All three transgenic lines contain in/complete T-DNA repeats, as indicated by reverse primer (rp) PCR. In the reverted tissues of two transgenic lines loss of roIC protein was observed despite the presence of the roIC transcript. The third transgenic line, showing a completely suppressed roIC phenotype, was found positive for the roIC transcript and protein. On the basis of the molecular data presented for the three unstable lines, including Southern, Northern and Western blotting experiments, as well as a survey of transgenic methylation patterns, new insights were obtained with respect to structure and inactivation of transgenes following their transfer in a host tree species.
机译:在许多农作物中已经证实了转基因沉默机制,但是,目前对于长寿树种的报道很少。在花椰菜花叶病毒的35S启动子的控制下,携带发根农杆菌roIC基因的三个转基因白杨品系进行了详细研究,但显示出从roIC表型到野生型的非常不同的回复类型。在一个转基因品系中体外培养一年后,观察到完全抑制了roIC表型,而第二个转基因品系显示roIC表达逐渐降低,并且在温室中放置三到四年后,这些植物与对照植物相当。然而,在第三种转基因品系中,仅在温室植物的一些芽中观察到转基因失活,这些芽在随后的几年中恢复为roIC表型。使用roIC探针进行的Southern印迹实验揭示了外源基因的一到两个串联拷贝整合到宿主基因组中。如反向引物(rp)PCR所示,所有三个转基因品系均包含完整的T-DNA重复序列。尽管存在roIC转录本,但在两个转基因品系的回复组织中,观察到roIC蛋白的丢失。发现第三转基因株系显示出完全抑制的roIC表型,对roIC转录物和蛋白质呈阳性。根据介绍的三个不稳定系的分子数据,包括Southern,Northern和Western印迹实验,以及对转基因甲基化模式的调查,获得了关于转基因在植物体内转移后的结构和失活的新见解。寄主树种。

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