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Engineered selective plant male sterility through pollen-specific expression of the EcoRI restriction endonuclease

机译:通过对EcoRI限制性内切核酸酶的花粉特异性表达设计了选择性植物雄性不育

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Unintended gene flow from transgenic plants via pollen, seed and vegetative propagation is a regulatory concern because of potential admixture in food and crop systems, as well as hybridization and introgression to wild and weedy relatives. Bioconfinement of transgenic pollen would help address some of these concerns and enable transgenic plant production for several crops where gene flow is an issue. Here, we demonstrate the expression of the restriction endonuclease EcoRI under the control of the tomato pollen-specific LAT52 promoter is an effective method for generating selective male sterility in Nicotiana tabacum (tobacco). Of nine transgenic events recovered, four events had very high bioconfinement with tightly controlled EcoRI expression in pollen and negligible-to-no expression other plant tissues. Transgenic plants had normal morphology wherein vegetative growth and reproductivity were similar to nontransgenic controls. In glasshouse experiments, transgenic lines were hand-crossed to both male-sterile and emasculated nontransgenic tobacco varieties. Progeny analysis of 16000-40000 seeds per transgenic line demonstrated five lines approached (>99.7%) or attained 100% bioconfinement for one or more generations. Bioconfinement was again demonstrated at or near 100% under field conditions where four transgenic lines were grown in close proximity to male-sterile tobacco, and 900-2100 seeds per male-sterile line were analysed for transgenes. Based upon these results, we conclude EcoRI-driven selective male sterility holds practical potential as a safe and reliable transgene bioconfinement strategy. Given the mechanism of male sterility, this method could be applicable to any plant species.
机译:由于食品和作物系统潜在的含量,种子和营养繁殖,从转基因植物,种子和营养繁殖,以及野生和杂草亲属的杂交和迟发,从转基因植物中流出来自转基因植物的基因流动是一种监管问题。转基因花粉的生物罚化将有助于解决这些问题的一些问题,并使转基因植物产生用于基因流动是一个问题的几个作物。在这里,我们证明了在番茄花粉特异性LAT52启动子的控制下的限制性内切核酸酶EcoRI的表达是一种有效的方法,用于在尼古利尼塔塔巴蟾(烟草)中产生选择性雄性不育。在氢收回的九个转基因事件中,四个事件具有非常高的生物罚,在花粉中具有严密控制的生态学表达,并且可忽略的植物组织。转基因植物具有正常的形态,其中营养生长和繁殖性类似于非转基因对照。在Glasshouse实验中,转基因素被交叉到雄性无菌和阉割的非致癌烟草品种。每种转基因线16000-40000种子的后代分析证明了五条线(> 99.7%)或达到100%的一代或多代生物罚。在野外条件下再次在100%处再次证明生物杀菌剂,其中四种转基因系在紧邻雄性无菌烟草上,分析了每种雄性无菌线的900-2100种子,用于转基因。基于这些结果,我们得出结论生态驱动的选择性雄性不育,作为一种安全可靠的转基因生物排序策略。鉴于雄性不育的机制,这种方法可以适用于任何植物物种。

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