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BNYVV-derived dsRNA confers resistance to rhizomania disease of sugar beet as evidenced by a novel transgenic hairy root approach

机译:BNYVV衍生的dsRNA赋予了对甜菜根瘤病的抗性这一点已通过新型转基因毛状根方法得到证实。

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摘要

Agrobacterium rhizogenes-transformed sugar beet hairy roots, expressing dsRNA from the Beet necrotic yellow vein virus replicase gene, were used as a novel approach to assess the efficacy of three intron-hairpin constructs at conferring resistance to rhizomania disease. Genetically engineered roots were similar in morphology to wild type roots but were characterized by a profound abundancy, rapid growth rate and, in some cases, plagiotropic development. Upon challenge inoculation, seedlings showed a considerable delay in symptom development compared to untransformed or vector-transformed seedlings, expressing dsRNA from an unrelated source. The transgenic root system of almost all seedlings contained no or very low virus titer while the non-transformed aerial parts of the same plants were found infected, leading to the conclusion that the hairy roots studied were effectively protected against the virus. This readily applicable novel method forms a plausible approach to preliminarily evaluate transgenic rhizomania resistance before proceeding in transformation and whole plant regeneration of sugar beet, a tedious and time consuming process for such a recalcitrant crop species.
机译:从甜菜坏死黄脉病毒复制酶基因表达dsRNA的发根农杆菌转化的甜菜毛状根被用作评估三种内含子-发夹构建体赋予对根瘤病抗性的功效的新方法。基因改造的根在形态上与野生型根相似,但特征在于其丰度高,生长速度快,在某些情况下还趋于发育。挑战接种后,与未转化或经载体转化的幼苗相比,从无关来源表达dsRNA的幼苗显示出明显的症状发展延迟。几乎所有幼苗的转基因根系都没有或只有极低的病毒滴度,而同一植物的未转化的空中部分却被感染,从而得出结论,所研究的毛根能有效地抵抗病毒。这种易于应用的新方法形成了一种合理的方法,可以在进行甜菜的转化和全植物再生之前,初步评估转基因根瘤菌的抗药性,这对于这种顽it的农作物而言是繁琐且耗时的过程。

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