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Directed microspore?¢????specific recombination of transgenic alleles to prevent pollen?¢????mediated transmission of transgenes

机译:指导小孢子转基因等位基因的特异性重组,以防止花粉介导的转基因传递

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A major challenge for future genetically modified (GM) crops is to prevent undesired gene flow of transgenes to plant material intended for another use. Recombinase?¢????mediated auto excision of transgenes directed by a tightly controlled microspore?¢????specific promoter allows efficient removal of either the selectable marker gene or of all introduced transgenes during microsporogenesis. This way, transgene removal becomes an integral part of the biology of pollen maturation, not requiring any external stimulus such as chemical induction by spraying. We here show the feasibility of engineering transgenic plants to produce pollen devoid of any transgene. Highly efficient excision of transgenes from tobacco pollen was achieved with a potential failure rate of at most two out of 16????800 seeds (0.024%). No evidence for either premature activation or absence of activation of the recombinase system was observed under stress conditions in the laboratory. This approach can prevent adventitious presence of transgenes in non?¢????GM crops or related wild species by gene flow. Such biological containment may help the deployment and management of coexistence practices to support consumer choice and will promote clean molecular farming for the production of high?¢????value compounds in plants.
机译:未来转基因作物的主要挑战是防止不希望的转基因基因流向拟用于另一用途的植物材料。重组酶介导的由严格控制的小孢子β特异性启动子指导的转基因的自动切除允许在小孢子发生过程中有效去除选择标记基因或所有引入的转基因。这样,转基因去除成为花粉成熟生物学不可或缺的一部分,不需要任何外部刺激,例如通过喷雾诱导化学作用。我们在这里显示了工程化转基因植物生产不含任何转基因花粉的可行性。从烟草花粉中高效去除了转基因,潜在失败率最高为16≤800粒种子中的2粒(0.024%)。在实验室的压力条件下,未观察到重组酶系统过早激活或不激活的证据。这种方法可以通过基因流动防止转基因在非转基因作物或相关野生物种中偶然出现。这种生物隔离可能有助于部署和管理共存做法,以支持消费者的选择,并将促进清洁分子农业的发展,以在植物中生产高价值的化合物。

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