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Molecular breeding of transgenic white clover (Trifolium repens L.) with field resistance to Alfalfa mosaic virus through the expression of its coat protein gene

机译:通过苜蓿花叶病毒外壳蛋白基因的表达对苜蓿花叶病毒具有田间抗性的转基因白三叶草(Trifolium repens L.)的分子育种

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摘要

Viral diseases, such as Alfalfa mosaic virus (AMV), cause significant reductions in the productivity and vegetative persistence of white clover plants in the field. Transgenic white clover plants ectopically expressing the viral coat protein gene encoded by the sub-genomic RNA4 of AMV were generated. Lines carrying a single copy of the transgene were analysed at the molecular, biochemical and phenotypic level under glasshouse and field conditions. Field resistance to AMV infection, as well as mitotic and meiotic stability of the transgene, were confirmed by phenotypic evaluation of the transgenic plants at two sites within Australia. The T0 and T1 generations of transgenic plants showed immunity to infection by AMV under glasshouse and field conditions, while the T4 generation in an agronomically elite ‘Grasslands Sustain’ genetic background, showed a very high level of resistance to AMV in the field. An extensive biochemical study of the T4 generation of transgenic plants, aiming to evaluate the level and composition of natural toxicants and key nutritional parameters, showed that the composition of the transgenic plants was within the range of variation seen in non-transgenic populations.
机译:诸如苜蓿花叶病毒(AMV)等病毒性疾病导致田间白三叶草植物的生产力和营养持久性显着降低。产生异位表达由AMV的亚基因组RNA4编码的病毒外壳蛋白基因的转基因白三叶草植物。在温室和田间条件下,在分子,生化和表型水平上分析了携带单拷贝转基因的品系。通过对澳大利亚两个地点的转基因植物进行表型评估,证实了其对AMV感染的田间抗药性以及转基因的有丝分裂和减数分裂稳定性。转基因植物的T0 和T1 世代在温室和田间条件下均表现出对AMV感染的免疫力,而农学上杰出的“草地维持”遗传背景中的T4 世代表现出非常强的抗性。在现场对AMV具有很高的抵抗力。对转基因植物的T4 世代进行了广泛的生化研究,旨在评估天然毒物的水平和组成以及关键的营养参数,结果表明转基因植物的组成在非转基因植物中观察到的变异范围内人口。

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