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Production of bean yellow mosaic virus resistant subterranean clover (Trifolium subterraneum) plants by transformation with the virus coat protein gene

机译:通过病毒外壳蛋白基因转化生产豆黄花叶病毒抗性地下三叶草(Trifolium subterraneum)植物

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Transgenic lines of subterranean clover were constructed that contained 3 different bean yellow mosaic virus (BYMV) coat protein (CP) gene constructs; full-length CP, the core region of the CP, and full-length CP plus the 3' untranslated region of the viral genome. Transgenic plants containing the full length and core CP gene constructs showed high and moderate levels of BYMV resistance. Resistance was measured as a lack or amelioration of viral disease symptoms, which was correlated with a reduction in virus levels and yield loss. A range of different resistance phenotypes was observed. They included reduced infection rates, delay and reduction in local lesion development, and delay and reduction in severity of systemic symptom development. Resistance levels were not correlated with transgene mRNA levels and no transgene-encoded protein was detected in any of the transgenic lines. This is the first example of genetically engineered virus resistance in a clover.
机译:构建了地下三叶草的转基因品系,其中包含3种不同的豆黄花叶病毒(BYMV)外壳蛋白(CP)基因构建体;全长CP,CP的核心区域,全长CP加上病毒基因组的3'非翻译区。含有全长和核心CP基因构建体的转基因植物表现出高水平和中等水平的BYMV抗性。抗药性被测量为病毒疾病症状的缺乏或改善,这与病毒水平的降低和产量损失相关。观察到一系列不同的抗性表型。它们包括降低感染率,延迟和减少局部病变的发展,以及延迟和减少全身症状的发展。抗性水平与转基因mRNA水平无关,在任何转基因品系中均未检测到转基因编码的蛋白。这是三叶草中基因工程病毒抗性的第一个例子。

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